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神经形成基因表达PCR芯片可用于研究与神经形成和神经干细胞分化相关的84个关键基因的表达。该芯片包含调控神经形成的基因包括细胞周期,细胞增殖,分化,迁移和运动相关的基因。此外,芯片上还有何神经干细胞相关的生长因子和细胞因子,神经突触功能,细胞凋亡,细胞黏附,神经形成的细胞信号以及转录调控相关的基因。利用该芯片,研究者可以方便并且可信地对与神经形成和神经干细胞分化相关的基因进行同时检测。
Neuronal Migion: ASCL1, CDK5R1, DCX, DRD2, NDN, NEUROG2, NRCAM, NTN1, PAFAH1B1, ROBO1, SLIT2.
Cell Differentiation: Neuronal Differentiation: ASCL1, BDNF, BMP2, BMP4, CDK5R1, CDK5RAP2, HES1, HEYL, MEF2C, NEUROD1, NEUROG1, NEUROG2, NOG, NRCAM, OLIG2, PAFAH1B1, PAX3, POU4F1, RTN4, SOX2.
Neuronal Cell Fate Determination: ASCL1, NTF3, OLIG2, SOX2.
Other Regulators of Cell Differentiation: HDAC4, MDK, NRG1 (HGL), ODZ1, PAX5, PAX6.
Synaptic Functions: Regulation of Synaptic Plasticity: ADORA1, APOE, BDNF, DRD2, GRIN1, NF1, S100B.
Synaptic Transmission: APOE, CHRM2, CREB1, DLG4 (PSD95), DRD2, FGF2 (BFGF), GRIN1, PAFAH1B1, SOD1, TH.
Synaptogenesis: ACHE, NRCAM, POU4F1.
Axonogenesis: APBB1, APP, DCX, DRD2, ERBB2 (HER2), MAP2, NOTCH1, NRCAM, PARD3, POU4F1, S100A6, S100B.
Growth Factors & Cytokines: Growth Factors: ARTN, BDNF, EGF, FGF2 (BFGF), GDNF, GPI, MDK, NDP, NRG1 (HGL), PTN, S100A6, VEGFA.
Cytokines: BMP2, BMP4, BMP8B, CXCL1, GPI, IL3, MDK, PTN, TGFB1.
Apoptosis: ADORA1, ADORA2A, ALK, APOE, BCL2, EP300, GDNF, NOTCH2, NTN1, PAX3, RTN4, S100B, VEGFA.
Cell Adhesion: DLL1, EFNB1, NRCAM, NRP1, NRP2, RAC1, ROBO1, SLIT2, TNR.
Cell Cycle: APBB1, EP300, HDAC4, MDK, MLL, NDN, PARD3, PTN.
Signal Transduction: Notch Signaling: APP, ASCL1, DLL1, HES1, HEY1, HEY2, HEYL, NOTCH1, NOTCH2, NRG1 (HGL).
WNT Signaling: DVL3, NDP, SHH.
TGFß Signaling: BMP2, BMP4, BMP8B, TGFB1.
G-Protein Coupled Receptor Signaling: ADORA1, ADORA2A, CHRM2, CXCL1, DRD2.
Transcription Factors & Cofactors: APBB1, ASCL1, CREB1, EP300, FLNA, HES1, HEY1, HEY2, HEYL, MEF2C, MLL, NDN, NEUROD1, NEUROG1, NEUROG2, NR2E3, PAX3, PAX5, PAX6, POU3F3, POU4F1, SOX2, SOX8, STAT3.
Neuronal Migion: ASCL1, CDK5R1, DCX, DRD2, NDN, NEUROG2, NRCAM, NTN1, PAFAH1B1, ROBO1, SLIT2.
Cell Differentiation: Neuronal Differentiation: ASCL1, BDNF, BMP2, BMP4, CDK5R1, CDK5RAP2, HES1, HEYL, MEF2C, NEUROD1, NEUROG1, NEUROG2, NOG, NRCAM, OLIG2, PAFAH1B1, PAX3, POU4F1, RTN4, SOX2.
Neuronal Cell Fate Determination: ASCL1, NTF3, OLIG2, SOX2.
Other Regulators of Cell Differentiation: HDAC4, MDK, NRG1 (HGL), ODZ1, PAX5, PAX6.
Synaptic Functions: Regulation of Synaptic Plasticity: ADORA1, APOE, BDNF, DRD2, GRIN1, NF1, S100B.
Synaptic Transmission: APOE, CHRM2, CREB1, DLG4 (PSD95), DRD2, FGF2 (BFGF), GRIN1, PAFAH1B1, SOD1, TH.
Synaptogenesis: ACHE, NRCAM, POU4F1.
Axonogenesis: APBB1, APP, DCX, DRD2, ERBB2 (HER2), MAP2, NOTCH1, NRCAM, PARD3, POU4F1, S100A6, S100B.
Growth Factors & Cytokines: Growth Factors: ARTN, BDNF, EGF, FGF2 (BFGF), GDNF, GPI, MDK, NDP, NRG1 (HGL), PTN, S100A6, VEGFA.
Cytokines: BMP2, BMP4, BMP8B, CXCL1, GPI, IL3, MDK, PTN, TGFB1.
Apoptosis: ADORA1, ADORA2A, ALK, APOE, BCL2, EP300, GDNF, NOTCH2, NTN1, PAX3, RTN4, S100B, VEGFA.
Cell Adhesion: DLL1, EFNB1, NRCAM, NRP1, NRP2, RAC1, ROBO1, SLIT2, TNR.
Cell Cycle: APBB1, EP300, HDAC4, MDK, MLL, NDN, PARD3, PTN.
Signal Transduction: Notch Signaling: APP, ASCL1, DLL1, HES1, HEY1, HEY2, HEYL, NOTCH1, NOTCH2, NRG1 (HGL).
WNT Signaling: DVL3, NDP, SHH.
TGFß Signaling: BMP2, BMP4, BMP8B, TGFB1.
G-Protein Coupled Receptor Signaling: ADORA1, ADORA2A, CHRM2, CXCL1, DRD2.
Transcription Factors & Cofactors: APBB1, ASCL1, CREB1, EP300, FLNA, HES1, HEY1, HEY2, HEYL, MEF2C, MLL, NDN, NEUROD1, NEUROG1, NEUROG2, NR2E3, PAX3, PAX5, PAX6, POU3F3, POU4F1, SOX2, SOX8, STAT3.
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文献和实验相关实验
简介:什么是PCR芯片? 实时定量PCR是检测基因表达最灵敏,最可靠的方法。通过在试验过程中,实时监测荧光染料的信号变化,反映样品中的基因拷贝数。实时定量PCR线性范围广(能达到5个数量级),因此可以检测同一样品中表达量极低的基因和表达量很高的基因。但是,由于实时定量PCR需要制备标准曲线和同时分析内参基因,因此,每次实验只能检测少数几个基因的表达水平,若要检测大量基因,则工作量巨大,耗时长久。 通过简单的,经过优化的实时定量PCR体系,如SuperArray的RT2ProfilerTM
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
兄弟出生前,母亲曾有多次男胎自然流产史。成熟红细胞形态呈典型的小细胞低色素性贫血,骨髓铁染色可见大量环形铁粒幼细胞。临床初步诊断遗传性铁粒幼细胞贫血。1.2 PCR基因芯片的设计与制作PCR基因芯片上制备大量微反应室,可以同时进行不同的PCR反应。采用单抛525mm厚硅片作为衬底材料。硅片常规清洗后,在10~50℃下生长800nm厚的湿氧热氧化层,作为第一层掩膜层。然后150nm厚的Si3N4低压化学气相淀积(LPCVD)在硅片表面,形成第二层掩膜。第一次光刻,RIE刻蚀反应室及其流道上的Si3N
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Neurogenesis PCR Array 神经形成基因表达PCR芯片
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