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个别组织细胞的培养
相关专题 体内组织细胞在体外培养时,所需培养环境基本相似,但由于物种、个体遗传背景及所处发育阶段等的不同,各自要求条件有一定差别,所采取的培养技术措施亦不尽相
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Phylogenomic Resources at the UCSC Genome Browser
The UC Santa Cruz Genome Browser provides a number of resources that can be used
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Cellular Populations Isolated from Newborn Mouse Skin Including Mesenchymal Stem Cells
We developed protocols for isolation and characterization of mesenchymal progeni
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Automated Pattern Ranking in Differential Display Data Analysis
Gene expression analysis by differential display (DD) is limited by the labor-in
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Human Mononuclear Phagocytes in Tissue Culture
Peripheral blood human monocytes (HuMo) are the major source for human mononucle
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Spatiotemporal Regulation of Ras-GTPases During Chemotaxis
Many eukaryotic cells can elicit intracellular signaling relays to produce pseud
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Hepatic Differentiation of Embryonic Stem Cells by Murine Fetal Liver Mesenchymal Cells
Hepatocytes derived from embryonic stem cells (ESCs) are a potential cell source
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Pax3 and Vertebrate Development
Pax3, a transcription factor expressed in the developing embryo, is a critical f
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PNA-FISH Technique for In Situ Assessment of Aneuploidy
Peptide nucleic acid in situ labeling (PNA-FISH) techniques provide an attractiv
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Screening and Selection Strategies for Disulfide Isomerase Activity
Disulfide isomerases (EC 5.3.4.1) were first discovered almost 40 years ago by C
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Relative Reverse Transcription-Polymerase Chain Reaction
A number of methods are available for assessing messenger ribonucleic acid (mRNA
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Detection of Endogenous SOCS1 and SOCS3 Proteins by Immunoprecipitation and Western Blot Analysis
The suppressors of cytokine signalling (SOCS) protein family consist of eight me
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Genetic Manipulation of Human Embryonic Stem Cells in Serum and Feeder-Free Media
Generic methods for genetic manipulation of human embryonic stem cells (hESCs) a
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膜结合蛋白(membrane-binding proteins)
是非肌细胞质膜下方产生收缩的机器。在剧烈活动时,由收缩蛋白作用于质膜产生的力引起质膜向内或向外移动(如吞噬作用和胞质分裂)。这种运动由肌动蛋白纤维直接或间接与质
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Using 32-Cell Stage Xenopus Embryos to Probe PCP Signaling
Use of loss-of function (via antisense Morpholino oligonucleotides (MOs)) or ove