Bone marrow mesenchymal stem cell(BM-MSC)is a early stem cell from the development of mesoblastema.
骨髓间充质干细(BM-MSC)是一种来自中胚层发育的早期干细。
Bone marrow mesenchymal stem cell(BM-MSC)is a early stem cell from the development of mesoblastema.
骨髓间充质干细(BM-MSC)是一种来自中胚层发育的早期干细。
The stem cell leukemia( SCL) gene is a new oncogene related with leukemogenesis.
干细病(CL)因是新发现的与病发生有关的癌基因。
Objective To study the effect of embryo neural stem cell transplantation(SCT) in neuronal ceroid lipofuscinosis(NCL).
目的研究应用神经干细移植治疗神经元蜡样质脂褐质沉积病的效果。
Embryonic stem cells have been the focus in tissue engin eering,dev elopmental biology,drug development and gene research.
胚胎干细已成为组织工、发育生物学、药物开发及基因研究的热点。
Mouse antihuman type 19 keratin monoclona l antibody (McAb) was used to detect epidermal regenerative stem cells.
以小鼠抗人角蛋19的单克隆抗体检测表皮再生干细。
Hemopoietic pro-genitor cells, hematopoietic stem cells, hematopoietic microenvironment etc. show dose related damage after irradiaton, consequently, hematopoietic function is destroyed.
机体受到照射后,造祖细、造干细以及造境等都会产生与照射剂量相关的损伤而影响造机能。
It facilitating the growth of stem cells of marrow hemopoiesis, largely increase the amount of monocells, promoting its particle differentiation.
可促进正常骨髓造干细增殖,明显增加骨髓单细数量,促进其向粒子分化。
It is generally agreed that haematopoietic tissue (HPT) and haematopoietic stem cells are responsible for the production and supply of haemocytes.
造组织和造干细为细的生成、补充和更新提供了保障。
Synergistic effect of Schwann cells and retinoic acid on the neuronal differentiation and synaptogenesis of hippocampal neural stem cells in vitro.
移植神经干细促进脊髓全横断大鼠结构与功能修复的研究。
Donor-cell leukemia after allogeneic hematopoietic stem cell transplantation can be an ideal model to investigate the related events in human leukemogenesis.
异基因造干细移植后供者源复发可能是研究人病发生的适宜模式。
Bone marrow stem cells are multipotential and capable of transdifferentiation to myocardium and regeneration myocardium by bone marrow stem cell transplantartion is investigated worldwide.
骨髓干细具有多向分化潜能,可横向分化为心肌细,现已开展骨髓干细移植再生心肌治疗研究。
OBJECTIVE To observe the effects of fetal bovine serum (FBS) and artificial perilymph (APL) on the differentiation of neural stem cells from newborn fetal guinea pigs.
目的体外定向诱导新生豚鼠海马神经干细分化为内耳毛细。
Previous work from our laboratory reported that aggressive melanoma and breast carcinoma express the embryonic morphogen Nodal, which is essential for human embryonic stem cell (hESC) pluripotency.
然而,癌症相关的境缺乏合适的调控机制来维持一个正常的细表型。
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