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- 详细信息
- 文献和实验
- 技术资料
- 服务名称:
PCR芯片
- 提供商:
SABio
肝癌PCR芯片可用于研究与肝癌发生和发展中关键的84个基因的表达。这些基因参与了重要的生物学过程或者信号通路。对这些基因进行研究可以帮助我们了解肝癌发生的分子机制。该芯片中包含有肝癌中经常发生表达变化的基因,关键信号通路中的基因,参与上皮细胞间质转化的基因,细胞周期,调亡以及炎症相关的基因。利用实时定量PCR,研究者可以方便并且可信地对与肝癌发生相关的基因进行同时检测。
Genes Up-Regulated During HCC: BCL2, BIRC5, CCND1, CFLAR (CASPER), FZD7, IGF2, IRS1, LEF1, MCL1, MET, NFKB1, PIN1, PTK2, RAC1, RHOA, SMAD7, STAT3, TCF4, TGFA, TGFB1, TNFSF10 (TRAIL), XIAP. Genes Down-Regulated During HCC: BAX, BID, CASP8 (FLICE), CDKN1A (p21CIP1/WAF1), CDKN2A (p16INK4), DLC1, FADD, FAS (TNFRSF6), HHIP, IGFBP1, IGFBP3, ITGB1, PTEN, RB1, SMAD4, SOCS1, SOCS3, TGFBR2, TNFRSF10B (DR5). Signal Transduction: Classical WNT: CCND1, CDKN2A (p16INK4), CTNNB1, FZD7, LEF1, MTDH, PIN1, RB1, SFRP2, TCF4. TGFß: SMAD4, SMAD7, TGFB1, TGFBR2. PI3K/AKT: AKT1, IRS1, PTEN. IGF/IGFR: IGF2, IGFBP1, IGFBP3, IRS1. Hippo: YAP1. Ras/Raf/MEK/ERK: CDKN1A (p21CIP1/WAF1), CDKN2A (p16INK4), DLC1, HRAS, NRAS, RAC1, RASSF1, RB1, RHOA, TP53. EGFR: ADAM17 (CD156B), CDH13, EGF, EGFR, TGFA, TGFB1. MET/HGF: MET, HGF. Small GTPase-Mediated: CDH13, CDKN1A (p21CIP1/WAF1), CDKN2A (p16INK4), DAB2IP, DLC1, HRAS, NRAS, RAC1, RASSF1, RB1, RELN, RHOA, TP53. Epithelial to Mesenchymal Transition (EMT): CTNNB1, HGF, LEF1, SMAD4, SMAD7, TGFB1. Cell Cycle: BIRC5, CCND1, CCND2, CDKN1A (p21CIP1/WAF1), CDKN1B (p27KIP1), CDKN2A (p16INK4), E2F1, EP300, GADD45B, IGF2, MYC, PTEN, RASSF1, RUNX3. Apoptosis: BAX, BCL2, BCL2L1 (BCL-X), BID, BIRC2 (c-IAP2), BIRC5, CASP8 (FLICE), CFLAR (CASPER), DLC1, E2F1, EP300, FADD, FAS (TNFRSF6), FHIT, GADD45B, GSTP1, MCL1, MSH2, PYCARD (ASC), RUNX3, SOCS3, TERT, TNFRSF10B (DR5), TNFSF10 (TRAIL), WT1. Immune & Inflammatory Response: CCL5 (RANTES), CXCR4, NFKB1, PTGS2 (COX2), RAC1, TGFB1, TLR4. Adhesion & Proteolysis: ADAM17 (CD156B), AKT1, CDH1 (E-Cadherin), CDH13, CFLAR (CASPER), DLC1, EGFR, EP300, HGF, ITGB1, LEF1, OPCML, PTEN, PYCARD (ASC), RAC1, RELN, RHOA, SMAD7, SOCS1, SOCS3, TGFB1. Angiogenesis: ANGPT2, CASP8 (FLICE), CDH13, CTNNB1, EGF, FLT1, KDR, PDGFRA, PTEN, PTK2, TGFBR2, VEGFA. DNA Damage: CCND1, CDKN1A (p21CIP1/WAF1), MSH2, MSH3, TP53, XIAP.
| Product | Species | Technology | Cat. No. |
| Liver Cancer PCR Array | Human | Gene Expression | PAHS-133Z |
| Liver Cancer PCR Array | Mouse | Gene Expression | PAMM-133Z |
| Liver Cancer PCR Array | Rat | Gene Expression | PARN-133Z |
Genes Up-Regulated During HCC: BCL2, BIRC5, CCND1, CFLAR (CASPER), FZD7, IGF2, IRS1, LEF1, MCL1, MET, NFKB1, PIN1, PTK2, RAC1, RHOA, SMAD7, STAT3, TCF4, TGFA, TGFB1, TNFSF10 (TRAIL), XIAP. Genes Down-Regulated During HCC: BAX, BID, CASP8 (FLICE), CDKN1A (p21CIP1/WAF1), CDKN2A (p16INK4), DLC1, FADD, FAS (TNFRSF6), HHIP, IGFBP1, IGFBP3, ITGB1, PTEN, RB1, SMAD4, SOCS1, SOCS3, TGFBR2, TNFRSF10B (DR5). Signal Transduction: Classical WNT: CCND1, CDKN2A (p16INK4), CTNNB1, FZD7, LEF1, MTDH, PIN1, RB1, SFRP2, TCF4. TGFß: SMAD4, SMAD7, TGFB1, TGFBR2. PI3K/AKT: AKT1, IRS1, PTEN. IGF/IGFR: IGF2, IGFBP1, IGFBP3, IRS1. Hippo: YAP1. Ras/Raf/MEK/ERK: CDKN1A (p21CIP1/WAF1), CDKN2A (p16INK4), DLC1, HRAS, NRAS, RAC1, RASSF1, RB1, RHOA, TP53. EGFR: ADAM17 (CD156B), CDH13, EGF, EGFR, TGFA, TGFB1. MET/HGF: MET, HGF. Small GTPase-Mediated: CDH13, CDKN1A (p21CIP1/WAF1), CDKN2A (p16INK4), DAB2IP, DLC1, HRAS, NRAS, RAC1, RASSF1, RB1, RELN, RHOA, TP53. Epithelial to Mesenchymal Transition (EMT): CTNNB1, HGF, LEF1, SMAD4, SMAD7, TGFB1. Cell Cycle: BIRC5, CCND1, CCND2, CDKN1A (p21CIP1/WAF1), CDKN1B (p27KIP1), CDKN2A (p16INK4), E2F1, EP300, GADD45B, IGF2, MYC, PTEN, RASSF1, RUNX3. Apoptosis: BAX, BCL2, BCL2L1 (BCL-X), BID, BIRC2 (c-IAP2), BIRC5, CASP8 (FLICE), CFLAR (CASPER), DLC1, E2F1, EP300, FADD, FAS (TNFRSF6), FHIT, GADD45B, GSTP1, MCL1, MSH2, PYCARD (ASC), RUNX3, SOCS3, TERT, TNFRSF10B (DR5), TNFSF10 (TRAIL), WT1. Immune & Inflammatory Response: CCL5 (RANTES), CXCR4, NFKB1, PTGS2 (COX2), RAC1, TGFB1, TLR4. Adhesion & Proteolysis: ADAM17 (CD156B), AKT1, CDH1 (E-Cadherin), CDH13, CFLAR (CASPER), DLC1, EGFR, EP300, HGF, ITGB1, LEF1, OPCML, PTEN, PYCARD (ASC), RAC1, RELN, RHOA, SMAD7, SOCS1, SOCS3, TGFB1. Angiogenesis: ANGPT2, CASP8 (FLICE), CDH13, CTNNB1, EGF, FLT1, KDR, PDGFRA, PTEN, PTK2, TGFBR2, VEGFA. DNA Damage: CCND1, CDKN1A (p21CIP1/WAF1), MSH2, MSH3, TP53, XIAP.
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文献和实验相关实验
基因芯片技术具有快速多样、微型化和自动化等特点在生物医学领域广泛的应用。但由于其基本原理是基于核酸杂交技术,有着内在的缺陷,实验的敏感性和重复性都存在一定问题。核酸杂交较适合于检测基因的表达,不易检测基因组DNA的基因的重排,突变和缺失。而大多数肿瘤性疾病和一些遗传变异和表型的改变与后者有关。为了解决上述问题,我们将芯片技术与荧光PCR技术相结合,设立设计一种含有大量微反应池的PCR基因芯片,以期能快速、准确的对基因的重排,突变和缺失等基因变异进行检测。常规PCR反应产物的检测是电泳后观察获得
视频要点如下: 1. 荧光定量的基础介绍 2.什么是PCR array 3.PCR array 数据解读
提供的PCR Array产品举例 订制的PCR芯片 如果现有的产品无法满足研究者的特定需要,SuperArray还可以提供从设计到芯片生产的完整服务,为研究者提供使用先进的PCR芯片的便捷服务。客户订制芯片服务为研究者提供以下便利:1)在使用表达谱基因组芯片后,对从基因组水平筛选出来的一组基因进行验证;2)在现有产品的基础上作适当调整以适应特殊需要;3)完全从头设计,适用于在现有的预设计PCR芯片中尚未包括的某个信号通路或者一组基因。若研究基因数目少于84个,还可以将96孔PCR芯片进一步分成
肝癌PCR芯片Liver Cancer PCR Array
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