FN剪切变异体在调节细胞基质,基质与基质间的相互作用,骨骼发育和四肢骨骼功能及其他方面起到很重要的作用。
FN splice variants play important roles in regulating cell-matrix and matrix-matrix interactions in skeletogenesis and skeletal function in limbs and other sites.
在过去十年中该受体被得到广泛研究,由于其重要性在于在正常和疾病状态调解细胞间和细胞与基质间的相互作用。
The past decade has seen an extensive investigation of this receptor owing to its importance in mediating cell-cell and cell-matrix interactions in both normal and disease states.
目前研究主要集中在胎盘不同部位分离的间充质基质细胞和从羊膜分离的上皮细胞。
Most of the research published in this area focuses on mesenchymal stromal cells isolated from various parts of the placenta or epithelial cells isolated from amniotic membrane.
Well, it's true that it's not stuck to plastic but it is stuck to other materials The other materials that it's stuck to include other cells that surround it and this complex matrix which surrounds all of the cells in our body called extracellular matrix and I'll get to that in just a few moments.
体内的细胞不会贴在塑料片上,但是它们会和别的材料黏联在一起,这些材料包括,细胞和周围细胞间的黏联,细胞同细胞外基质的黏联,我们身体中包围在细胞周围的物质,称为细胞外基质,后面我会详细讲到
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