Avner E D, Piesco N P, Sweeney W E, Ellis D
Department of Pediatrics (Nephrology), University of Pittsburgh School of Medicine, Pennsylvania.
Pediatr Nephrol. 1988 Jan;2(1):92-9. doi: 10.1007/BF00870387.
An in vitro model system for the experimental study of renal epithelial differentiation is described. Fetal murine metanephric tissue consisting of nephrogenic blastema and branched ureteric bud is isolated following 24-36 h of natural embryonic inductive interaction (13 +/- 0.4 days gestation) and cultured as an intact organ in a Trowell-type assembly. During 120 h of organ culture incubation in completely defined serum-free medium, advanced organotypic proximal tubular and glomerular epithelial differentiation proceed in the absence of vascularization, perfusion, and urine production. The system thus experimentally separates the processes of three-dimensional organ growth and post-induction renal epithelial differentiation from glomerular filtration, flow-related phenomena, endothelial or mesangial cell interactions, and the effects of growth factors or transport substrates present in mammalian serum or urine. Studies to date in the model system have defined the growth factor requirements of epithelial growth and differentiation and have demonstrated that specific hormonally induced alterations in tubular epithelial cell metabolism and function may lead to specific patterns of tubular maldevelopment. Whole organ metanephric organ culture is thus a valuable in vitro model system for future investigations into the complex processes of normal and abnormal renal epithelial differentiation.
本文描述了一种用于肾上皮分化实验研究的体外模型系统。在自然胚胎诱导相互作用24 - 36小时后(妊娠13±0.4天),分离出由肾胚基和分支输尿管芽组成的胎鼠后肾组织,并在Trowell型装置中作为完整器官进行培养。在完全限定的无血清培养基中进行120小时的器官培养孵育期间,在无血管化、灌注和尿液生成的情况下,进行了高级器官型近端小管和肾小球上皮分化。因此,该系统通过实验将三维器官生长和诱导后肾上皮分化过程与肾小球滤过、血流相关现象、内皮或系膜细胞相互作用以及哺乳动物血清或尿液中存在的生长因子或转运底物的影响分离开来。迄今为止,在该模型系统中的研究已经确定了上皮生长和分化所需的生长因子,并证明了肾小管上皮细胞代谢和功能中特定的激素诱导改变可能导致特定的肾小管发育异常模式。因此,全器官后肾器官培养是一种有价值的体外模型系统,可用于未来对正常和异常肾上皮分化复杂过程的研究。