1Division of Infection, Inflammation and Immunity, Mailpoint 813, University of Southampton Medical School, Sir Henry Wellcome Laboratories, Southampton General Hospital, Tremona Road, Southampton SO16 6YD, UK.
Nephrol Dial Transplant. 2010 Jul;25(7):2107-19. doi: 10.1093/ndt/gfq006. Epub 2010 Feb 1.
In renal tubules, paracellular permeability is tightly controlled to facilitate solute absorption and urinary concentration and is regulated by tight junctions, which incorporate claudin proteins. There is very limited information confirming the localization of these proteins in the human renal cortex. Most data is inferred from mouse, bovine and rabbit studies and differences exist between mouse and other species.
A survey of claudin staining was performed on human kidney cortex embedded in glycolmethacrylate resin to enhance tissue morphology and facilitate the cutting of 2 microm serial sections.
Claudin-2, -10 and -11 antibodies labelled renal tubular epithelial cells, correlating with Lotus tetragonolobus and N-cadherin positive proximal tubules. Claudin-3, -10, -11 and -16 antibodies strongly stained a population of tubules that were positive for Tamm Horsfall protein on adjacent sections, confirming expression in the thick ascending limb of the Loop of Henle. Claudin-3, -4 and -8 antibodies reacted with tubules that correlated with the distal nephron markers, E-cadherin, epithelial membrane antigen and Dolichos biflorus and claudin-3, -4, -7 and -8 with the distal tubule marker, calbindin, and the collecting duct marker, aquaporin-2. Claudin-14 was localized in distal convoluted tubules, correlating positively with calbindin but negatively with aquaporin-2, whereas claudin-1 staining was identified in the parietal epithelium of Bowman's capsule, distal convoluted tubule and collecting duct. Cellular and tight junction localization of claudin staining in renal tubules was heterogeneous and is discussed.
Complex variation in the expression of human claudins likely determines paracellular permeability in the kidney. Altered claudin expression may influence pathologies involving abnormalities of absorption.
在肾小管中,细胞旁通透性受到紧密控制,以促进溶质吸收和尿液浓缩,这由紧密连接调控,其中包含 Claudin 蛋白。关于这些蛋白质在人肾皮质中的定位,仅有非常有限的信息得以证实。大多数数据是从鼠、牛和兔的研究中推断出来的,而且鼠和其他物种之间存在差异。
对包埋在甲基丙烯酸乙二醇树脂中的人肾皮质进行 Claudin 染色调查,以增强组织形态并便于切割 2 微米的连续切片。
Claudin-2、-10 和 -11 抗体标记肾小管上皮细胞,与 Lotus tetragonolobus 和 N-钙黏蛋白阳性的近端小管相关。Claudin-3、-10、-11 和 -16 抗体强烈染色了一组与相邻切片上 Tamm Horsfall 蛋白阳性的管段,证实其在 Henle 袢升支粗段表达。Claudin-3、-4 和 -8 抗体与与远端肾单位标志物 E-钙黏蛋白、上皮膜抗原和百脉根凝集素相关的管段反应,Claudin-3、-4、-7 和 -8 与远端小管标志物钙结合蛋白和集合管标志物水通道蛋白-2 反应。Claudin-14 定位于远曲小管,与钙结合蛋白呈正相关,但与水通道蛋白-2 呈负相关,而 Claudin-1 染色则定位于 Bowman 囊的壁细胞、远曲小管和集合管。肾小管中 Claudin 染色的细胞和紧密连接定位具有异质性,并对此进行了讨论。
人 Claudin 的表达复杂变化可能决定了肾脏的细胞旁通透性。Claudin 表达的改变可能会影响涉及吸收异常的病理学。