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靶向内皮细胞的Delta样蛋白1可促进造血干细胞在体外的扩增以及在体内造血组织中的植入。

Endothelium-targeted Delta-like 1 promotes hematopoietic stem cell expansion ex vivo and engraftment in hematopoietic tissues in vivo.

作者信息

Tian Deng-Mei, Liang Liang, Zhao Xing-Cheng, Zheng Min-Hua, Cao Xiu-Li, Qin Hong-Yan, Wang Chun-Mei, Liang Ying-Min, Han Hua

机构信息

Department of Hematology, Tangdu Hospital, Fourth Military Medical University, Xi'an, China.

出版信息

Stem Cell Res. 2013 Sep;11(2):693-706. doi: 10.1016/j.scr.2013.04.008. Epub 2013 Apr 30.

Abstract

BACKGROUND

Notch ligands enhance ex vivo expansion of hematopoietic stem cells (HSCs). But to use Notch ligands in HSC therapies of human diseases, efforts are required to improve ex vivo expansion efficiency and in vivo transplant engraftment.

DESIGN AND METHODS

We designed and produced an endothelium-targeted soluble Notch ligand, the DSL domain of Delta-like 1 fused with a RGD motif (D1R), and examined the effects of this protein on HSCs ex vivo and in vivo.

RESULTS

D1R efficiently promoted ex vivo expansion of both mouse bone marrow (BM) and human umbilical cord blood HSCs. HSCs expanded with D1R up-regulated many of the stemness-related genes, and showed high BM engraftment efficacy with long-term repopulation capacity after transplantation. Moreover, in vivo administration of D1R increased the number of BM HSCs in mice, and facilitated BM recovery of mice after irradiation. Injection of D1R significantly improved HSC engraftment and myeloid recovery after BM transplantation in irradiated mice. D1R enhanced HSC engraftment not only in BM, but also in the liver and spleen after BM transplantation in mice. D1R induced the formation of compact cell clusters containing the transplanted HSCs in close contact with endothelial cells, reminiscent of HSC niches, in the liver and spleen.

CONCLUSIONS

D1R might be applied in improving both HSC expansion ex vivo and HSC engraftment in vivo in transplantation.

摘要

背景

Notch配体可增强造血干细胞(HSC)的体外扩增。但要将Notch配体用于人类疾病的HSC治疗,需要努力提高体外扩增效率和体内移植植入率。

设计与方法

我们设计并制备了一种内皮靶向可溶性Notch配体,即与RGD基序融合的Delta样1的DSL结构域(D1R),并研究了该蛋白对HSC的体外和体内作用。

结果

D1R有效促进了小鼠骨髓(BM)和人脐带血HSC的体外扩增。用D1R扩增的HSC上调了许多与干性相关的基因,并在移植后显示出高BM植入效率和长期重建能力。此外,D1R的体内给药增加了小鼠BM HSC的数量,并促进了照射后小鼠的BM恢复。注射D1R显著改善了照射小鼠BM移植后的HSC植入和髓系恢复。D1R不仅增强了BM中的HSC植入,还增强了小鼠BM移植后肝脏和脾脏中的HSC植入。D1R诱导形成紧密的细胞簇,其中移植的HSC与内皮细胞紧密接触,类似于肝脏和脾脏中的HSC龛。

结论

D1R可能适用于改善移植中HSC的体外扩增和体内植入。

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