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重组人体干细胞因子的表达、复性、纯化及其对脐带血干细胞体外扩增作用研究
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作者 范洁 丁欣欣 蒋永平 《实用临床医药杂志》 CAS 2012年第15期20-22,31,共4页
目的对重组人体干细胞因子(rhSCF)蛋白在脐带血干细胞体外扩增中的作用进行研究。方法通过大肠杆菌表达系统,经IPTG诱导表达获取SCF包涵体,经透析复性、纯化后获得蛋白。从脐带血中提取单核细胞(MNC),分选其中具有CD34+抗原表位的细胞,... 目的对重组人体干细胞因子(rhSCF)蛋白在脐带血干细胞体外扩增中的作用进行研究。方法通过大肠杆菌表达系统,经IPTG诱导表达获取SCF包涵体,经透析复性、纯化后获得蛋白。从脐带血中提取单核细胞(MNC),分选其中具有CD34+抗原表位的细胞,使用一定浓度的血小板生成素(TPO)、FLT-3配体(FL)及rhSCF组合对脐带血干细胞进行7 d体外扩增以研究rhSCF的作用。结果成功使用IPTG在大肠杆菌BL21诱导表达rhSCF,包涵体经复性及CM-Sepharose纯化获得高纯度的rhSCF。干细胞体外扩增实验表明rhSCF、FL及TPO联用,具有协同刺激CD34+细胞体外扩增的作用。结论成功建立rhSCF原核表达、复性和纯化体系,为造血干细胞体外扩增体系的优化研究奠定了基础,同时为干细胞因子的临床应用提供了有价值的参考。 展开更多
关键词 重组人干细胞因子 原核表达 脐带血体外扩增
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Ex vivo expansion of hematopoietic stem cells 被引量:1
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作者 XIE JingJing ZHANG ChengCheng 《Science China(Life Sciences)》 SCIE CAS CSCD 2015年第9期839-853,共15页
Ex vivo expansion of hematopoietic stem cells(HSCs) would benefit clinical applications in several aspects, to improve patient survival, utilize cord blood stem cells for adult applications, and selectively propagate ... Ex vivo expansion of hematopoietic stem cells(HSCs) would benefit clinical applications in several aspects, to improve patient survival, utilize cord blood stem cells for adult applications, and selectively propagate stem cell populations after genetic manipulation. In this review we summarize and discuss recent advances in the culture systems of mouse and human HSCs, which include stroma/HSC co-culture, continuous perfusion and fed-batch cultures, and those supplemented with extrinsic ligands, membrane transportable transcription factors, complement components, protein modification enzymes, metabolites, or small molecule chemicals. Some of the expansion systems have been tested in clinical trials. The optimal condition for ex vivo expansion of the primitive and functional human HSCs is still under development. An improved understanding of the mechanisms for HSC cell fate determination and the HSC culture characteristics will guide development of new strategies to overcome difficulties. In the future, development of a combination treatment regimen with agents that enhance self-renewal, block differentiation, and improve homing will be critical. Methods to enhance yields and lower cost during collection and processing should be employed. The employment of an efficient system for ex vivo expansion of HSCs will facilitate the further development of novel strategies for cell and gene therapies including genome editing. 展开更多
关键词 ex vivo expansion hematopoietic stem cells NICHE signal transduction cord blood TRANSPLANTATION SCID-repopulating cell genome ed
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CAPE promotes the expansion of human umbilical cord blood-derived hematopoietic stem and progenitor cells in vitro 被引量:3
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作者 LIU YiMing ZHANG BoWen +7 位作者 ZHANG Jing WANG SiHan YAO HaiLei HE LiJuan CHEN Lin YUE Wen LI YanHua PEI XueTao 《Science China(Life Sciences)》 SCIE CAS 2014年第2期188-194,共7页
Due to the low number of collectable stem cells from single umbilical cord blood(UCB)unit,their initial uses were limited to pediatric therapies.Clinical applications of UCB hematopoietic stem and progenitor cells(HSP... Due to the low number of collectable stem cells from single umbilical cord blood(UCB)unit,their initial uses were limited to pediatric therapies.Clinical applications of UCB hematopoietic stem and progenitor cells(HSPCs)would become feasible if there were a culture method that can effectively expand HSPCs while maintaining their self-renewal capacity.In recent years,numerous attempts have been made to expand human UCB HSPCs in vitro.In this study,we report that caffeic acid phenethyl ester(CAPE),a small molecule from honeybee extract,can promote in vitro expansion of HSPCs.Treatment with CAPE increased the percentage of HSPCs in cultured mononuclear cells.Importantly,culture of CD34+HSPCs with CAPE resulted in a significant increase in total colony-forming units and high proliferative potential colony-forming units.Burst-forming unit-erythroid was the mostly affected colony type,which increased more than 3.7-fold in 1μg mL 1CAPE treatment group when compared to the controls.CAPE appears to induce HSPC expansion by upregulating the expression of SCF and HIF1-α.Our data suggest that CAPE may become a potent medium supplement for in vitro HSPC expansion. 展开更多
关键词 hematopoietic stem and progenitor cells caffeic acid phenethyl ester EXPANSION
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