Difference between revisions of "Homo sapiens"
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|align="center"| β-actin | |align="center"| β-actin | ||
| | | | ||
− | *Visceral adipose samples | + | * Visceral adipose samples (were obtained from 10 patients diagnosed with morbid obesity) |
+ | * One of the NAFLD spectrum diseases | ||
+ | * Nine lean patientswith normal liver biopsies | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001101 '''NM_001101'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001101 '''NM_001101'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| RNA polymerase II | |align="center"| RNA polymerase II | ||
| | | | ||
− | * Visceral adipose samples | + | * Visceral adipose samples (were obtained from 10 patients diagnosed with morbid obesity) |
+ | * One of the NAFLD spectrum diseases | ||
+ | * Nine lean patientswith normal liver biopsies | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000937.3 '''NM_000937'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000937.3 '''NM_000937'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| β-actin | |align="center"| β-actin | ||
| | | | ||
− | *PMA-induced THP-1 monocyte-to-macrophage differentiation | + | * PMA-induced THP-1 monocyte-to-macrophage differentiation |
+ | * THP-1 monocytes were obtained from ATCC (Manassas, Virginia, USA) | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001101.3 '''NM_001101'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001101.3 '''NM_001101'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Ribosomal protein L37a | |align="center"| Ribosomal protein L37a | ||
| | | | ||
− | *PMA-induced THP- | + | * PMA-induced THP-1 monocyte-to-macrophage differentiation |
+ | * THP-1 monocytes were obtained from ATCC (Manassas, Virginia, USA) | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000998.4 '''NM_000998.4'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000998.4 '''NM_000998.4'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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*'''Institution''':Institute of Nutrition, Friedrich Schiller University Jena, Dornburger Str. 25, 07743 Jena, Germany | *'''Institution''':Institute of Nutrition, Friedrich Schiller University Jena, Dornburger Str. 25, 07743 Jena, Germany | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by [https://scholar.google.com/scholar?cites=3186517875302726277&as_sdt=2005&sciodt=0,5&hl=en '''48'''](Based on Google Scholar [2017- | + | Cited by [https://scholar.google.com/scholar?cites=3186517875302726277&as_sdt=2005&sciodt=0,5&hl=en '''48'''](Based on Google Scholar [2017-09-01]) |
=='''''Ovarian Cancer'''''== | =='''''Ovarian Cancer'''''== | ||
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|align="center"| Beta-glucuronidase | |align="center"| Beta-glucuronidase | ||
| | | | ||
− | * | + | * The human ovarian cancer cell line [https://www.atcc.org/en/Products/Cells_and_Microorganisms/By_Tissue/Ovary/CRL-3128.aspx '''''UACC-1598'''''] & [https://www.atcc.org/Products/All/HTB-77.aspx '''''SKOV3'''''] |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000181 '''NM_000181'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000181 '''NM_000181'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Peptidylprolyl isomerase A | |align="center"| Peptidylprolyl isomerase A | ||
| | | | ||
− | * | + | * The human ovarian cancer cell line [https://www.atcc.org/en/Products/Cells_and_Microorganisms/By_Tissue/Ovary/CRL-3128.aspx '''''UACC-1598'''''] & [https://www.atcc.org/Products/All/HTB-77.aspx '''''SKOV3'''''] |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_021130 '''NM_021130'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_021130 '''NM_021130'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| TATA box binding protein | |align="center"| TATA box binding protein | ||
| | | | ||
− | * | + | * The human ovarian cancer cell line [https://www.atcc.org/en/Products/Cells_and_Microorganisms/By_Tissue/Ovary/CRL-3128.aspx '''''UACC-1598'''''] & [https://www.atcc.org/Products/All/HTB-77.aspx '''''SKOV3'''''] |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_003194 '''NM_003194'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_003194 '''NM_003194'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Phosphoglycerate kinase 1 | |align="center"| Phosphoglycerate kinase 1 | ||
| | | | ||
− | * | + | * HT-29 human colonic epithelial cells treated with probiotic and pathogenic bacteria. |
+ | |||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000291 '''NM_000291'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000291 '''NM_000291'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Ribosomal protein large P0 | |align="center"| Ribosomal protein large P0 | ||
| | | | ||
− | * | + | * VK2/E6E7 human vaginal epithelial cells treated with probiotic and pathogenic bacteria. |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001002 '''NM_001002'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001002 '''NM_001002'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Signal recognition particle 14 kDa | |align="center"| Signal recognition particle 14 kDa | ||
| | | | ||
− | * | + | * Tissue from the left ventricular free wall of the myocardium (from explanted failed hearts) |
+ | * Non-failed heart tissue | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/827342565 '''NM_003134'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/827342565 '''NM_003134'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Translationally-controlled 1 | |align="center"| Translationally-controlled 1 | ||
| | | | ||
− | * | + | * Tissue from the left ventricular free wall of the myocardium (from explanted failed hearts) |
+ | * Non-failed heart tissue | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/555943846 '''NM_003295'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/555943846 '''NM_003295'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Eukaryotic elongation factor 1A1 | |align="center"| Eukaryotic elongation factor 1A1 | ||
| | | | ||
− | * | + | * Tissue from the left ventricular free wall of the myocardium (from explanted failed hearts) |
+ | * Non-failed heart tissue | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/47419910 '''NM_015905 '''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/47419910 '''NM_015905 '''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| ACTB<ref name="ref14"/> | |align="center"| ACTB<ref name="ref14"/> | ||
|align="center"| β-actin | |align="center"| β-actin | ||
− | | | + | | |
− | * | + | * Different breast cancers and normal breast epithelium from breast cancer patients and epithelium from cancer-free patients. |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001101.3 '''NM_001101'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001101.3 '''NM_001101'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| 40S ribosomal protein S23 | |align="center"| 40S ribosomal protein S23 | ||
| | | | ||
− | * | + | * Different breast cancers and normal breast epithelium from breast cancer patients and epithelium from cancer-free patients. |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001025.4 '''NM_001025'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001025.4 '''NM_001025'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| E3 ubiquitin-protein ligase HUWE1 | |align="center"| E3 ubiquitin-protein ligase HUWE1 | ||
| | | | ||
− | * | + | * Different breast cancers and normal breast epithelium from breast cancer patients and epithelium from cancer-free patients. |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_031407 '''NM_031407'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_031407 '''NM_031407'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Elongation factor 1-alpha 1 | |align="center"| Elongation factor 1-alpha 1 | ||
| | | | ||
− | * | + | * Different breast cancers and normal breast epithelium from breast cancer patients and epithelium from cancer-free patients. |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001402.5 '''NM_001402'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001402.5 '''NM_001402'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Splicing factor 3 subunit 1 | |align="center"| Splicing factor 3 subunit 1 | ||
| | | | ||
− | * | + | * Different breast cancers and normal breast epithelium from breast cancer patients and epithelium from cancer-free patients. |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_005877 '''NM_005877'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_005877 '''NM_005877'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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*'''Institution''':SRC Bioclinicum, Moscow, Russia | *'''Institution''':SRC Bioclinicum, Moscow, Russia | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by ''' | + | Cited by [https://scholar.google.com/scholar?cites=12627318641896437747&as_sdt=2005&sciodt=0,5&hl=en '''42'''] (Based on Google Scholar [2017-09-01]) |
=='''''Prostate Cancer Cells'''''== | =='''''Prostate Cancer Cells'''''== | ||
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*'''Institution''': Universidade Federal do Rio Grande do Sul, Rua Sarmento Leite 500, 28 andar, Porto Alegre, RS 90050-170, Brazil | *'''Institution''': Universidade Federal do Rio Grande do Sul, Rua Sarmento Leite 500, 28 andar, Porto Alegre, RS 90050-170, Brazil | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by ''' | + | Cited by [https://scholar.google.com/scholar?cites=51592710566212111&as_sdt=2005&sciodt=0,5&hl=en '''17'''] (Based on Google Scholar [2017-09-01]) |
=='''''Stomach Cancer'''''== | =='''''Stomach Cancer'''''== | ||
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|align="center"| Beta-2-microglobulin | |align="center"| Beta-2-microglobulin | ||
| | | | ||
− | * | + | * Six stomach tumor cell lines (SNU-216, SNU-638, SNU-719, AGS, MKN-28 and KATOIII) |
− | * | + | * Five non-stomach cancer cell lines (JIMT1, SK-BR-3, SNU-C5, A549, and U87) |
+ | * two normal human cell lines(HDF, HMEC) | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_004048 '''NM_004048'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_004048 '''NM_004048'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Glyceraldehyde-3-phosphate dehydrogenase | |align="center"| Glyceraldehyde-3-phosphate dehydrogenase | ||
| | | | ||
− | * | + | * Six stomach tumor cell lines (SNU-216, SNU-638, SNU-719, AGS, MKN-28 and KATOIII) |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_002046 '''NM_002046'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_002046 '''NM_002046'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Ribosomal protein L29 | |align="center"| Ribosomal protein L29 | ||
| | | | ||
− | * | + | * Six stomach tumor cell lines (SNU-216, SNU-638, SNU-719, AGS, MKN-28 and KATOIII) |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000992 '''NM_000992'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_000992 '''NM_000992'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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*'''Institution''':Research institute, National Cancer Center, 809 Madu-dong, Goyang, Gyeonggi-do 410-769, Republic of Korea | *'''Institution''':Research institute, National Cancer Center, 809 Madu-dong, Goyang, Gyeonggi-do 410-769, Republic of Korea | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by '''56''' (Based on Google Scholar [2017- | + | Cited by [https://scholar.google.com/scholar?cites=17738168846180173643&as_sdt=2005&sciodt=0,5&hl=en '''56'''] (Based on Google Scholar [2017-09-01]) |
=='''''Endometrioid Endometrial Carcinoma Tissues'''''== | =='''''Endometrioid Endometrial Carcinoma Tissues'''''== | ||
Line 1,043: | Line 1,054: | ||
*'''Institution''':''Angelo Nocivelli'' Institute of Molecular Medicine, Division of Gynecologic Oncology, University of Brescia, Brescia, Italy, | *'''Institution''':''Angelo Nocivelli'' Institute of Molecular Medicine, Division of Gynecologic Oncology, University of Brescia, Brescia, Italy, | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by '''5''' (Based on Google Scholar [2017- | + | Cited by [https://scholar.google.com/scholar?cites=14772624487340437287&as_sdt=2005&sciodt=0,5&hl=en '''5'''] (Based on Google Scholar [2017-09-01]) |
=='''''Epicardial Adipose Tissue'''''== | =='''''Epicardial Adipose Tissue'''''== | ||
Line 1,107: | Line 1,118: | ||
*'''Institution''':Centre de Recherche de Universitaire de Cardiologie et de Pneumologie, Canada | *'''Institution''':Centre de Recherche de Universitaire de Cardiologie et de Pneumologie, Canada | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by '''27''' (Based on Google Scholar [2017- | + | Cited by [https://scholar.google.com/scholar?cites=6845269495441518075&as_sdt=2005&sciodt=0,5&hl=en '''27'''] (Based on Google Scholar [2017-09-01]) |
=='''''Cartilage endplate of the lumbar spine'''''== | =='''''Cartilage endplate of the lumbar spine'''''== | ||
Line 1,171: | Line 1,182: | ||
*'''Institution''':Department of Orthopaedic Surgery, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou Zhejiang, China | *'''Institution''':Department of Orthopaedic Surgery, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou Zhejiang, China | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by '''13''' (Based on Google Scholar [2017- | + | Cited by [https://scholar.google.com/scholar?cites=409926487862459985&as_sdt=2005&sciodt=0,5&hl=en '''13'''] (Based on Google Scholar [2017-09-01]) |
=='''''Head and Neck Squamous Cell Carcinoma'''''== | =='''''Head and Neck Squamous Cell Carcinoma'''''== | ||
Line 1,190: | Line 1,201: | ||
| | | | ||
* Head and neck squamous cell carcinoma | * Head and neck squamous cell carcinoma | ||
+ | * All patients were Caucasian and heavy smokers and drinkers | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_002046 '''NM_002046'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_002046 '''NM_002046'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Succinate dehydrogenase complex, subunit A, flavoprotein | |align="center"| Succinate dehydrogenase complex, subunit A, flavoprotein | ||
| | | | ||
− | *Head and neck squamous cell carcinoma | + | * Head and neck squamous cell carcinoma |
+ | * All patients were Caucasian and heavy smokers and drinkers | ||
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_004168 '''NM_004168'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_004168 '''NM_004168'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
Line 1,222: | Line 1,235: | ||
*'''Institution''':Centre National de la Recherche Scientifique, Montpellier F-34094, France | *'''Institution''':Centre National de la Recherche Scientifique, Montpellier F-34094, France | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by '''39''' (Based on Google Scholar [2017- | + | Cited by [https://scholar.google.com/scholar?cites=4966999011134229873&as_sdt=2005&sciodt=0,5&hl=en '''39'''] (Based on Google Scholar [2017-09-01]) |
=='''''Clear Cell Renal Cell Carcinoma'''''== | =='''''Clear Cell Renal Cell Carcinoma'''''== | ||
Line 1,240: | Line 1,253: | ||
|align="center"| Peptidylprolyl isomerase A (cyclophilin A) | |align="center"| Peptidylprolyl isomerase A (cyclophilin A) | ||
| | | | ||
− | * | + | * Clear cell renal cell arcinoma samples & Healthy samples tissues |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_021130 '''NM_021130'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_021130 '''NM_021130'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
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|align="center"| Ribosomal protein S13 | |align="center"| Ribosomal protein S13 | ||
| | | | ||
− | * | + | * Clear cell renal cell arcinoma samples & Healthy samples |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001017.2 '''NM_001017'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001017.2 '''NM_001017'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
Line 1,274: | Line 1,287: | ||
*'''Institution''':CELL Unit, de Duve Institute, Avenue Hippocrate 75, 1200 Brussels, Belgium | *'''Institution''':CELL Unit, de Duve Institute, Avenue Hippocrate 75, 1200 Brussels, Belgium | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by ''' | + | Cited by [https://scholar.google.com/scholar?cites=2556083209952067092&as_sdt=2005&sciodt=0,5&hl=en '''23'''] (Based on Google Scholar [2017-09-01]) |
=='''''Osteoarthritic Articular Cartilage'''''== | =='''''Osteoarthritic Articular Cartilage'''''== | ||
Line 1,283: | Line 1,296: | ||
|align="center"| TBP<ref name="ref22"/> | |align="center"| TBP<ref name="ref22"/> | ||
|align="center"|TATA-box binding protein || | |align="center"|TATA-box binding protein || | ||
− | * | + | * Human articular cartilage (from femoral heads & the femoral condyles & tibial plateaux) |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_003194 '''NM_003194'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_003194 '''NM_003194'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
Line 1,294: | Line 1,307: | ||
|align="center"| RPL13A<ref name="ref22"/> | |align="center"| RPL13A<ref name="ref22"/> | ||
|align="center"| Ribosomal protein S13 || | |align="center"| Ribosomal protein S13 || | ||
− | * | + | * Human articular cartilage (from femoral heads & the femoral condyles & tibial plateaux) |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_012423 '''NM_012423'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_012423 '''NM_012423'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
Line 1,305: | Line 1,318: | ||
|align="center"| B2M<ref name="ref22"/>| | |align="center"| B2M<ref name="ref22"/>| | ||
|align="center"|Beta-2-microglobulin || | |align="center"|Beta-2-microglobulin || | ||
− | * | + | * Human articular cartilage (from femoral heads & the femoral condyles & tibial plateaux) |
|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_004048 '''NM_004048'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_004048 '''NM_004048'''] | ||
|nowrap style="font-size:9pt"| | |nowrap style="font-size:9pt"| | ||
Line 1,327: | Line 1,340: | ||
*'''Institution''': Laboratorio de Investigacion 2 and Rheumatology Unit, Hospital Clinico Universitario de Santiago, Santiago de Compostela, Spain | *'''Institution''': Laboratorio de Investigacion 2 and Rheumatology Unit, Hospital Clinico Universitario de Santiago, Santiago de Compostela, Spain | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by ''' | + | Cited by [https://scholar.google.com/scholar?cites=15105537215980678386&as_sdt=2005&sciodt=0,5&hl=en '''75'''] (Based on Google Scholar [2017-09-01]) |
=='''''Hepatocellular Carcinoma'''''== | =='''''Hepatocellular Carcinoma'''''== | ||
Line 1,405: | Line 1,418: | ||
===Citation Statistics=== | ===Citation Statistics=== | ||
− | Cited by '''92''' (Based on Google Scholar [2017- | + | Cited by [https://scholar.google.com/scholar?cites=12922105542327270557&as_sdt=2005&sciodt=0,5&hl=en '''92'''] (Based on Google Scholar [2017-09-01]) |
=='''References'''== | =='''References'''== |
Latest revision as of 13:47, 6 September 2017
Contents
- 1 Description
- 2 U87MG Cell Line
- 3 Visceral Adipose Samples
- 4 Lung Cancer
- 5 Mesenchymal Stromal Cells
- 6 Glioma
- 7 Metastatic Clear Cell Renal Cell Carcinoma
- 8 Differentiating Human Embryonic Stem Cells
- 9 Umbilical Vein Endothelial Cells
- 10 THP-1 Monocyte Differentiation Into Macrophages
- 11 Ovarian Cancer
- 12 Normal Thyroid & Goiter Tissue
- 13 Colonic and Vaginal Epithelial Cell Lines
- 14 Myocardium
- 15 Breast Cancer
- 16 Prostate Cancer Cells
- 17 Stomach Cancer
- 18 Endometrioid Endometrial Carcinoma Tissues
- 19 Epicardial Adipose Tissue
- 20 Cartilage endplate of the lumbar spine
- 21 Head and Neck Squamous Cell Carcinoma
- 22 Clear Cell Renal Cell Carcinoma
- 23 Osteoarthritic Articular Cartilage
- 24 Hepatocellular Carcinoma
- 25 References
- 26 Categories
Description
- Homo sapiens (Latin: "wise man") is the binomial nomenclature for the only extant human species. Homo is the human genus, which also includes Neanderthals and many other extinct species of hominin. H. sapiens is the only surviving species of the genus Homo. Modern humans are the subspecies Homo sapiens, which differentiates them from what has been argued to be their direct ancestor, Homo sapiens idaltu (Modified from Wikipedia).
- Common Name: Human being, Wise man
- NCBI Taxonomy
U87MG Cell Line
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
DDX5[1] | RNA helicase |
|
NM_004396 |
|
125 | 60 | SYBR |
GAPDH[1] | Glyceraldehyde-3-phosphate dehydrogenase |
|
NM_002046 |
|
138 | 60 | SYBR |
HMBS[1] | Hydroxymethylbilane synthase |
|
NM_000190 |
|
150 | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Iraldo Bello
- Email:dania.vazquez@cigb.edu.cu
- Institution:Department of Genomic, Center for Genetic Engineering and Biotechnology, Ave. 31 e/158 & 190, Playa, 10600 Havana, Cuba
Citation Statistics
Cited by 8 (Based on Google Scholar [2017-09-01])
Visceral Adipose Samples
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
ACTB[2] | β-actin |
|
NM_001101 |
|
NA | 55 | EvaGreen |
RPII[2] | RNA polymerase II |
|
NM_000937 |
|
NA | 60 | EvaGreen |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name: Ancha Baranova
- Email: abaranov@gmu.edu
- Institution:Molecular and Microbiology Department and Center for the Study of Genomics in Liver Diseases, George Mason University, Fairfax, VA, USA
Citation Statistics
Cited by 72 (Based on Google Scholar [2017-09-01])
Lung Cancer
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
ACTB[3] | β-actin | NM_000937 |
|
111 | 58 | SYBR | |
PPIA[3] | Peptidylprolyl isomerase A, cydophilin A, romatase A | NM_021130 |
|
179 | 58 | SYBR | |
PGK1[3] | Phosphoglycerate kinase-1 | NM_000291 |
|
102 | 58 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name:GUIZHEN ZHANG
- Email:zhanguizhenjlu@163.com
- Institution:Department of Central Laboratory, Second Hospital, Jilin University, 9 Ziqiang Street, Changchun, Jilin 130041, P.R. China
Citation Statistics
Cited by 7 (Based on Google Scholar [2017-09-01])
Mesenchymal Stromal Cells
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
TBP[4] | TATA-binding protein |
|
NM_003194 |
|
NA | 60 | SYBR |
YWHAZ[4] | Tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, zeta polypeptide |
|
NM_001135702 |
|
NA | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Mandana Haack
- Email:Mandana.Haack-Soerensen@regionh.dk
- Institution:Cardiology Stem Cell Centre, The Heart Centre, Rigshospitalet, Copenhagen University Hospital, Juliane Maries Vej 20, dept. 9302, 2100 Copenhagen, Denmark
Citation Statistics
Cited by 10 (Based on Google Scholar [2017-09-01])
Glioma
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
GAPDH[5] | Glyceraldehyde-3-phosphate dehydrogenase |
|
NM_002046 |
|
222 | 55 | SYBR |
RPL13A[5] | Ribosomal protein L13a |
|
NM_012423 |
|
126 | 55 | SYBR |
CYC1[5] | Cytochrome c-1 |
|
NM_001916 |
|
160 | 55 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name:Susanne Grube
- Email:susanne.grube@med.uni-jena.de
- Institution:Department of Neurosurgery, Section of Experimental Neurooncology, Jena University Hospital, Friedrich-Schiller-University Jena, Erlanger Allee 101, 07747 Jena, Germany
Citation Statistics
Cited by 6 (Based on Google Scholar [2017-09-01])
Metastatic Clear Cell Renal Cell Carcinoma
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
RPL13[6] | Ribosomal protein L13 |
|
NM_000977 |
|
164 | 59 | SYBR |
GUSB[6] | Glucuronidase, beta |
|
NM_000181 |
|
177 | 59 | SYBR |
RPLP0[6] | Ribosomal protein, large, P0 |
|
NM_001002 |
|
307 | 58.5 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
- ΔCt approach method && Related Reference
Contact
- Name:Zbigniew Kmiec
- Email: pwierzb@gumed.edu.pl
- Institution:Department of Histology, Faculty of Medicine, Medical University of Gdansk, ul. Dębinki 1, PL 80-211 Gdańsk, Poland e-mail: pwierzb@gumed.edu.pl
Citation Statistics
Cited by 10 (Based on Google Scholar [2017-09-01])
Differentiating Human Embryonic Stem Cells
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
B2M[7] | Beta-2-microglobulin |
|
NM_004048 |
|
86 | 60 | SYBR |
RPL13A[7] | Ribosomal protein L13A |
|
NM_012423 |
|
126 | 60 | SYBR |
AluSq[7] | Alu repeats, subfamily Sq |
|
NA |
|
NA | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Dieter Deforce
- Email:Dieter.Deforce@UGent.be
- Institution:Laboratory for Pharmaceutical Biotechnology, Ghent University, Harelbekestraat 72, Ghent 9000, Belgium
Citation Statistics
Cited by 11(Based on Google Scholar [2017-09-01])
Umbilical Vein Endothelial Cells
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
B2M[8] | Beta-2-microglobulin |
|
NM_004048 |
|
106 | 59 | SYBR |
HPRT-1[8] | Hypoxanthine phosphoribosyl-transferase 1 |
|
NM_000194 |
|
195 | 59 | SYBR |
YWHAZ[8] | Tyrosine 3-monooxygenase/tryptophan 5–monooxygenase activation protein, zeta polypeptide |
|
NM_003406 |
|
94 | 59 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
- ΔCt approach method && Related Reference
Contact
- Name:Hong Zhou
- Email:zhouhtt1966@163.com
- Institution:Institute of Transfusion Medicine, Academy of Military Medical Sciences, Beijing, China, 2National Center for Nanoscience and Technology, Beijing, China
Citation Statistics
Cited by 13 (Based on Google Scholar [2017-09-01])
THP-1 Monocyte Differentiation Into Macrophages
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
ACTB[9] | β-actin |
|
NM_001101 |
|
150 | 60 | SYBR |
RPL37A[9] | Ribosomal protein L37a |
|
NM_000998.4 |
|
94 | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name:Stefan Lorkowski
- Email:stefan.lorkowski@uni-jena.de
- Institution:Institute of Nutrition, Friedrich Schiller University Jena, Dornburger Str. 25, 07743 Jena, Germany
Citation Statistics
Cited by 48(Based on Google Scholar [2017-09-01])
Ovarian Cancer
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
GUSB[10] | Beta-glucuronidase | NM_000181 |
|
160 | 60 or 63 | SYBR | |
PPIA[10] | Peptidylprolyl isomerase A | NM_021130 |
|
118 | 61 or 63 | SYBR | |
TBP[10] | TATA box binding protein | NM_003194 |
|
132 | 62 or 63 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Xing Xie
- Email:xiex@mail.hz.zj.cn
- Institution:Reproductive Health Laboratory of Zhejiang Province, Department of Gynecologic Oncology, Women Hospital, School of Medicine, Zhejiang University, Xueshi Rd. No. 2,Hangzhou 310006, China
Citation Statistics
Cited by 81 (Based on Google Scholar [2017-09-01])
Normal Thyroid & Goiter Tissue
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
ACTB[11] | β-actin |
|
NM_001101 |
|
140 | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Tania Weber Furlanetto
- Email:taniafurlanetto@gmail.com
- Institution:UniversidadeFederaldoRioGrandedoSul,RuaRamiroBarcelos2400, 90035-903 Porto Alegre, RS, Brazil
Citation Statistics
Cited by 5 (Based on Google Scholar [2017-09-01])
Colonic and Vaginal Epithelial Cell Lines
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
PGK1[12] | Phosphoglycerate kinase 1 |
|
NM_000291 |
|
NA | 60 | SYBR |
RPLP0[12] | Ribosomal protein large P0 |
|
NM_001002 |
|
NA | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
- ΔCt approach method && Related Reference
Contact
- Name: Nikolai Scherbak
- Email:nikolai.scherbak@oru.se
- Institution:School of Science and Technology, Sweden
Citation Statistics
Cited by 4 (Based on Google Scholar [2017-09-01])
Myocardium
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
SRP14[13] | Signal recognition particle 14 kDa |
|
NM_003134 |
|
181 | 60~61 | SYBR |
TPT1[13] | Translationally-controlled 1 |
|
NM_003295 |
|
164 | 58~61 | SYBR |
EEF1A1[13] | Eukaryotic elongation factor 1A1 |
|
NM_015905 |
|
183 | 60~63 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Vicky A Cameron
- Email:vicky.cameron@otago.ac.nz
- Institution: Christchurch Cardioendocrine Research Group, Department of Medicine, University of Otago-Christchurch, PO Box 4345, Christchurch 8014, New Zealand
Citation Statistics
Cited by 40 (Based on Google Scholar [2017-09-01])
Breast Cancer
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
ACTB[14] | β-actin |
|
NM_001101 |
|
140 | 64 | SYBR |
RPS23[14] | 40S ribosomal protein S23 |
|
NM_001025 |
|
110 | 64 | SYBR |
HUWE1[14] | E3 ubiquitin-protein ligase HUWE1 |
|
NM_031407 |
|
137 | 64 | SYBR |
EEF1A1[14] | Elongation factor 1-alpha 1 |
|
NM_001402 |
|
208 | 64 | SYBR |
SF3A1[14] | Splicing factor 3 subunit 1 |
|
NM_005877 |
|
224 | 64 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Alexander G Tonevitsky
- Email:d.maltseva@bioclinicum.com
- Institution:SRC Bioclinicum, Moscow, Russia
Citation Statistics
Cited by 42 (Based on Google Scholar [2017-09-01])
Prostate Cancer Cells
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
GAPDH[15] | Glyceraldehyde-3-phosphate dehydrogenase |
|
NM_002046 |
|
133 | NA | SYBR |
SDHA[15] | Succinate dehydrogenase complex, subunit A, flavoprotein(Fp) |
|
NM_004168 |
|
85 | NA | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Gisele Branchini
- Email:giseleb@ufcspa.edu.br
- Institution: Universidade Federal do Rio Grande do Sul, Rua Sarmento Leite 500, 28 andar, Porto Alegre, RS 90050-170, Brazil
Citation Statistics
Cited by 17 (Based on Google Scholar [2017-09-01])
Stomach Cancer
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
B2M[16] | Beta-2-microglobulin |
|
NM_004048 |
|
114 | 58 | SYBR |
GAPDH[16] | Glyceraldehyde-3-phosphate dehydrogenase |
|
NM_002046 |
|
177 | 58 | SYBR |
RPL29[16] | Ribosomal protein L29 |
|
NM_000992 |
|
120 | 58 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Sung-Ho Goh
- Email:andrea@ncc.re.kr
- Institution:Research institute, National Cancer Center, 809 Madu-dong, Goyang, Gyeonggi-do 410-769, Republic of Korea
Citation Statistics
Cited by 56 (Based on Google Scholar [2017-09-01])
Endometrioid Endometrial Carcinoma Tissues
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
PPIA[17] | Peptidylprolyl isomerase A (Cyclophilin A) |
|
NM_021130 |
|
113 | 60 | SYBR |
HPRT1[17] | Hypoxanthine phosphoribosyltransferase 1 |
|
NM_000194 |
|
104 | 60 | SYBR |
GAPDH[17] | Glyceraldehyde-3-phosphate dehydrogenase |
|
NM_002046 |
|
115 | 60 | SYBR |
H3F3A[17] | H3 histone, family 3A |
|
NM_002107 |
|
108 | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Eliana Bignotti
- Email:cromani76@gmail.com
- Institution:Angelo Nocivelli Institute of Molecular Medicine, Division of Gynecologic Oncology, University of Brescia, Brescia, Italy,
Citation Statistics
Cited by 5 (Based on Google Scholar [2017-09-01])
Epicardial Adipose Tissue
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
CYCA[18] | Peptidylprolyl isomerase A |
|
NM_021130 |
|
NA | NA | SYBR |
GAPDH[18] | Glycerladehyde 3-phosphate dehydrogenase |
|
NM_002046 |
|
NA | NA | SYBR |
RPL27[18] | Ribosomal protein L27 |
|
NM_000988 |
|
NA | NA | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name:Denis Richard
- Email:Denis.Richard@criucpq.ulaval.ca
- Institution:Centre de Recherche de Universitaire de Cardiologie et de Pneumologie, Canada
Citation Statistics
Cited by 27 (Based on Google Scholar [2017-09-01])
Cartilage endplate of the lumbar spine
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
SDHA[19] | Succinate dehydrogenase complex, subunit A |
|
NM_004168 |
|
175 | 60 | SYBR |
B2M[19] | Beta-2-microglobulin |
|
NM_004048 |
|
150 | 60 | SYBR |
LDHA[19] | Lactate dehydrogenase A |
|
NM_005566 |
|
157 | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name:Shun-Wu Fan
- Email:zzj-0708@163.com
- Institution:Department of Orthopaedic Surgery, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou Zhejiang, China
Citation Statistics
Cited by 13 (Based on Google Scholar [2017-09-01])
Head and Neck Squamous Cell Carcinoma
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
GAPDH[20] | Glyceraldehyde-3-phosphate dehydrogenase |
|
NM_002046 |
|
307 | 60 | SYBR |
SDHA[20] | Succinate dehydrogenase complex, subunit A, flavoprotein |
|
NM_004168 |
|
200 | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name:Jean-Paul Brouillet
- Email:jpbrouillet@gmail.com
- Institution:Centre National de la Recherche Scientifique, Montpellier F-34094, France
Citation Statistics
Cited by 39 (Based on Google Scholar [2017-09-01])
Clear Cell Renal Cell Carcinoma
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
PPIA[21] | Peptidylprolyl isomerase A (cyclophilin A) |
|
NM_021130 |
|
129 | 60 | SYBR |
RPS13[21] | Ribosomal protein S13 |
|
NM_001017 |
|
153 | 60 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name:Christophe E Pierreux
- Email:christophe.pierreux@uclouvain.be
- Institution:CELL Unit, de Duve Institute, Avenue Hippocrate 75, 1200 Brussels, Belgium
Citation Statistics
Cited by 23 (Based on Google Scholar [2017-09-01])
Osteoarthritic Articular Cartilage
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
PCR Size (bp) | Tm | Detection |
---|---|---|---|---|---|---|---|
TBP[22] | TATA-box binding protein |
|
NM_003194 |
|
132 | 56 ℃ | SYBR |
RPL13A[22] | Ribosomal protein S13 |
|
NM_012423 |
|
168 | 56 ℃ | SYBR |
B2M[22]| | Beta-2-microglobulin |
|
NM_004048 |
|
101 | 56 ℃ | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name: Antonio Gonzalez
- Email: Antonio.Gonzalez.Martinez-Pedrayo@sergas.es
- Institution: Laboratorio de Investigacion 2 and Rheumatology Unit, Hospital Clinico Universitario de Santiago, Santiago de Compostela, Spain
Citation Statistics
Cited by 75 (Based on Google Scholar [2017-09-01])
Hepatocellular Carcinoma
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
HMBS[23] | Hydroxymethylbilane synthase |
|
NM_000190.3 |
|
113 | 56.4 | SYBR |
GAPDH[23] | Glyceraldehyde-3-phosphate dehydrogenase |
|
NM_012423 |
|
87 | 56.4 | SYBR |
UBC[23] | Ubiquitin C |
|
NM_021009.3 |
|
124 | 56.4 | SYBR |
SDHA[23] | Succinate dehydrogenase complex, subunit A |
|
NM_004168.2 |
|
86 | 56.4 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name: Susanne Beckebaum
- Email: susanne.beckebaum@uni-due.de
- Institution: Department of Gastroenterology and Hepatology, University Hospital Essen, University of Duisburg-Essen, Essen, Germany.
Citation Statistics
Cited by 92 (Based on Google Scholar [2017-09-01])
References
- ↑ 1.0 1.1 1.2 Vázquez-Blomquist D, Fernández J R, Miranda J, et al. Selection of reference genes for use in quantitative reverse transcription PCR assays when using interferons in U87MG[J]. Molecular biology reports, 2012, 39(12): 11167-11175.
- ↑ 2.0 2.1 Mehta R, Birerdinc A, Hossain N, et al. Validation of endogenous reference genes for qRT-PCR analysis of human visceral adipose samples[J]. BMC Molecular Biology, 2010, 11(1): 39.
- ↑ 3.0 3.1 3.2 Ali H, Du Z, Li X, et al. Identification of suitable reference genes for gene expression studies using quantitative polymerase chain reaction in lung cancer in vitro[J]. Molecular medicine reports, 2015, 11(5): 3767-3773.
- ↑ 4.0 4.1 Tratwal J, Follin B, Ekblond A, Kastrup J, Haack-Sørensen M. Identification of a common reference gene pair for qPCR in human mesenchymal stromal cells from different tissue sources treated with VEGF. BMC Mol Biol. 2014 May 28;15:11. doi: 10.1186/1471-2199-15-11. PubMed PMID: 24885696; PubMed Central PMCID: PMC4045907.
- ↑ 5.0 5.1 5.2 Grube S, Göttig T, Freitag D, Ewald C, Kalff R, Walter J. Selection of suitable reference genes for expression analysis in human glioma using RT-qPCR. J Neurooncol. 2015 May;123(1):35-42. doi: 10.1007/s11060-015-1772-7. Epub 2015 Apr 11. PubMed PMID: 25862007.
- ↑ 6.0 6.1 6.2 Wierzbicki P M, Klacz J, Rybarczyk A, et al. Identification of a suitable qPCR reference gene in metastatic clear cell renal cell carcinoma[J]. Tumor Biology, 2014, 35(12): 12473-12487.
- ↑ 7.0 7.1 7.2 Vossaert L, O’Leary T, Van Neste C, et al. Reference loci for RT-qPCR analysis of differentiating human embryonic stem cells[J]. BMC molecular biology, 2013, 14(1): 21.
- ↑ 8.0 8.1 8.2 Chen G, Zhao L, Feng J, et al. Validation of reliable reference genes for real-time PCR in human umbilical vein endothelial cells on substrates with different stiffness[J]. PLoS One, 2013, 8(6): e67360.
- ↑ 9.0 9.1 Maeß M B, Sendelbach S, Lorkowski S. Selection of reliable reference genes during THP-1 monocyte differentiation into macrophages[J]. BMC molecular biology, 2010, 11(1): 90.
- ↑ 10.0 10.1 10.2 Li Y L, Ye F, Hu Y, et al. Identification of suitable reference genes for gene expression studies of human serous ovarian cancer by real-time polymerase chain reaction[J]. Analytical biochemistry, 2009, 394(1): 110-116.
- ↑ Weber R, Bertoni A P S, Bessestil L W, et al. Validation of reference genes for normalization gene expression in reverse transcription quantitative PCR in human normal thyroid and goiter tissue[J]. BioMed research international, 2014, 2014.
- ↑ 12.0 12.1 Jacobsen A V, Yemaneab B T, Jass J, et al. Reference gene selection for qPCR Is dependent on cell type rather than treatment in colonic and vaginal human epithelial cell lines[J]. PloS one, 2014, 9(12): e115592.
- ↑ 13.0 13.1 13.2 Pilbrow A P, Ellmers L J, Black M A, et al. Genomic selection of reference genes for real-time PCR in human myocardium[J]. BMC medical genomics, 2008, 1(1): 64.
- ↑ 14.0 14.1 14.2 14.3 14.4 Maltseva D V, Khaustova N A, Fedotov N N, et al. High-throughput identification of reference genes for research and clinical RT-qPCR analysis of breast cancer samples[J]. Journal of clinical bioinformatics, 2013, 3(1): 13.
- ↑ 15.0 15.1 Souza A F D, Brum I S, Neto B S, et al. Reference gene for primary culture of prostate cancer cells[J]. Molecular biology reports, 2013, 40(4): 2955-2962.
- ↑ 16.0 16.1 16.2 Rho H W, Lee B C, Choi E S, et al. Identification of valid reference genes for gene expression studies of human stomach cancer by reverse transcription-qPCR[J]. BMC cancer, 2010, 10(1): 240.
- ↑ 17.0 17.1 17.2 17.3 Romani C, Calza S, Todeschini P, et al. Identification of optimal reference genes for gene expression normalization in a wide cohort of endometrioid endometrial carcinoma tissues[J]. PloS one, 2014, 9(12): e113781.
- ↑ 18.0 18.1 18.2 Chechi K, Gelinas Y, Mathieu P, et al. Validation of reference genes for the relative quantification of gene expression in human epicardial adipose tissue[J]. PloS one, 2012, 7(4): e32265.
- ↑ 19.0 19.1 19.2 Zhou Z J, Zhang J F, Xia P, et al. Selection of suitable reference genes for normalization of quantitative real-time polymerase chain reaction in human cartilage endplate of the lumbar spine[J]. PLoS One, 2014, 9(2): e88892.
- ↑ 20.0 20.1 Lallemant B, Evrard A, Combescure C, et al. Reference gene selection for head and neck squamous cell carcinoma gene expression studies[J]. BMC Molecular Biology, 2009, 10(1): 78.
- ↑ 21.0 21.1 Dupasquier S, Delmarcelle A S, Marbaix E, et al. Validation of housekeeping gene and impact on normalized gene expression in clear cell renal cell carcinoma: critical reassessment of YBX3/ZONAB/CSDA expression[J]. BMC molecular biology, 2014, 15(1): 9.
- ↑ 22.0 22.1 22.2 Pombo-Suarez M, Calaza M, Gomez-Reino J J, et al. Reference genes for normalization of gene expression studies in human osteoarthritic articular cartilage[J]. BMC molecular biology, 2008, 9(1): 17.
- ↑ 23.0 23.1 23.2 23.3 Cicinnati V R, Shen Q, Sotiropoulos G C, et al. Validation of putative reference genes for gene expression studies in human hepatocellular carcinoma using real-time quantitative RT-PCR[J]. BMC cancer, 2008, 8(1): 350.