Roessger Anne, Denk Lucia, Minuth Will W
Department of Molecular and Cellular Anatomy, University of Regensburg, University Street 31, D-93053 Regensburg, Germany.
Biomaterials. 2009 Aug;30(22):3723-32. doi: 10.1016/j.biomaterials.2009.03.041. Epub 2009 Apr 10.
The cell biological mechanism controlling the regeneration of renal tubules in renal failure after application of stem/progenitor cells is subject of actual research. Unsolved issues are the integration of stem/progenitor cells in a diseased organ environment, the differentiation into epithelial tissue and the formation of tubules in a spatial environment. Following this therapeutic strategy new biomaterials have to be found promoting spatial development of tubules. To obtain new information about the growth of tubules renal stem/progenitor cells from neonatal rabbit kidney were isolated and mounted in a tissue carrier between a selection of commercially available polyester fleeces. This procedure replaces coating by extracellular matrix proteins and creates an artificial interstitium supporting development of tubules. Perfusion culture was performed with chemically defined IMDM containing aldosterone as tubulogenic factor. Polyester fleeces were investigated by scanning electron microscopy. The spatial development of tubules was registered on whole-mount specimens and on cryosections labeled with SBA and antibodies indicating tubule differentiation. It is found that some polyester fleeces promote the spatial development of tubules between the fibers, whereat each of them produces its individual growth pattern.
应用干细胞/祖细胞后,控制肾衰竭时肾小管再生的细胞生物学机制是当前研究的主题。尚未解决的问题包括干细胞/祖细胞在患病器官环境中的整合、向上皮组织的分化以及在空间环境中形成肾小管。遵循这一治疗策略,必须找到能促进肾小管空间发育的新型生物材料。为了获取有关肾小管生长的新信息,从新生兔肾中分离出肾干细胞/祖细胞,并将其置于一系列市售聚酯羊毛之间的组织载体中。该过程替代了细胞外基质蛋白包被,并创建了支持肾小管发育的人工间质。使用含有醛固酮作为促肾小管生成因子的化学限定IMDM进行灌注培养。通过扫描电子显微镜对聚酯羊毛进行研究。在整装标本以及用SBA和指示肾小管分化的抗体标记的冰冻切片上记录肾小管的空间发育情况。结果发现,一些聚酯羊毛促进了纤维间肾小管的空间发育,其中每一种都产生其独特的生长模式。