Yoder M C, Williams D A
Herman B Wells Center for Pediatric Research, James Whitcomb Riley Hospital for Children, Indiana University School of Medicine, Indianapolis, USA.
Exp Hematol. 1995 Aug;23(9):961-7.
We have reviewed some aspects of the production, distribution, and organization of fibronectin in the bone marrow ECM and discussed HSC-fibronectin interactions. Many questions remain. Which isoforms of fibronectin are produced in the bone marrow during ontogeny, normal hematopoiesis, and pathophysiologic challenges to the marrow microenvironment? Do HSCs interact with ED-A- and ED-B-containing fibronectin isoforms the same way they interact with plasma fibronectin? Are different fibronectin isoforms selectively expressed in different regions of the bone marrow, in keeping with the spatial organization of HSC and hematopoietic progenitor cell compartments? Addressing these questions may give us a better understanding of the role of fibronectin in HSC localization, proliferation, and differentiation. Considerable information regarding the synthesis and secretion of other ECM molecules by adherent stromal cells has been derived from in vitro analysis of LTBMCs [3]. As with fibronectin, much remains to be learned of the precise distribution and composition of bone marrow ECM molecules during in vivo development; how in vivo bone marrow ECM secretion, turnover, and remodeling are regulated during normal and pathologic hematopoietic states; and the nature and importance of in vivo cellular interactions that occur between PHSC and individual constituents of the bone marrow ECM.
我们回顾了骨髓细胞外基质中纤连蛋白的产生、分布和组织的一些方面,并讨论了造血干细胞与纤连蛋白的相互作用。许多问题仍然存在。在个体发育、正常造血过程以及骨髓微环境面临病理生理挑战时,骨髓中产生的纤连蛋白是哪些异构体?造血干细胞与含ED-A和ED-B的纤连蛋白异构体相互作用的方式,是否与它们与血浆纤连蛋白相互作用的方式相同?不同的纤连蛋白异构体是否按照造血干细胞和造血祖细胞区室的空间组织,在骨髓的不同区域选择性表达?解决这些问题可能会让我们更好地理解纤连蛋白在造血干细胞定位、增殖和分化中的作用。关于贴壁基质细胞合成和分泌其他细胞外基质分子的大量信息,来自对长期骨髓培养物的体外分析[3]。与纤连蛋白一样,在体内发育过程中,骨髓细胞外基质分子的确切分布和组成、在正常和病理造血状态下体内骨髓细胞外基质的分泌、周转和重塑是如何调控的,以及造血干细胞与骨髓细胞外基质的各个成分之间发生的体内细胞相互作用的性质和重要性,仍有许多有待了解。