Vallon Volker
Department of Medicine, University of California San Diego & VA San Diego Healthcare System, 92161, USA.
Pflugers Arch. 2009 May;458(1):189-201. doi: 10.1007/s00424-008-0581-7. Epub 2008 Aug 28.
To achieve the role of the kidney in maintaining body homeostasis, the renal vasculature, the glomeruli, and the various segments of the nephron and the collecting duct system have to fulfill very diverse and specific functions. These functions are dependent on a complex renal architecture and are regulated by systemic hemodynamics, hormones, and nerves. As a consequence, to better understand the physiology of the kidney, methods are necessary that allow insights on the function of these diverse structures in the physiological context of the intact kidney. The renal micropuncture technique allows direct access to study superficial nephrons in vivo. In this review, the application of micropuncture techniques on the single nephron level is outlined as an approach to better understand aspects of glomerular filtration, tubular transport, and tubulo-glomerular communication. Studies from the author's lab, including experiments in gene-targeted mice, are briefly presented to illustrate some of the approaches and show how they can further advance our understanding of the molecular mechanisms involved in the regulation of kidney function.
为实现肾脏在维持机体稳态中的作用,肾血管系统、肾小球、肾单位的各个节段以及集合管系统必须履行非常多样且特定的功能。这些功能依赖于复杂的肾脏结构,并受全身血流动力学、激素和神经的调节。因此,为了更好地理解肾脏的生理学,需要有方法能够洞察这些不同结构在完整肾脏生理背景下的功能。肾微穿刺技术可在体内直接研究浅表肾单位。在本综述中,概述了微穿刺技术在单个肾单位水平上的应用,作为一种更好地理解肾小球滤过、肾小管转运和肾小管 - 肾小球通讯等方面的方法。简要介绍了作者实验室的研究,包括基因靶向小鼠实验,以说明一些方法,并展示它们如何能进一步推进我们对参与肾功能调节的分子机制的理解。