Tojo Akihiro
Department of Nephrology & Hypertension, Dokkyo Medical University, Mibu, Tochigi, Japan.
Int J Nephrol. 2019 Nov 3;2019:5859102. doi: 10.1155/2019/5859102. eCollection 2019.
As water and solutes are filtered through the slit membrane, it is an a priori concept that a slit membrane is an essential filtration barrier for proteins, including albumin. However, in cases of minimal change nephrotic syndrome, the number of slit membranes is reduced by the foot process effacement and tight junction-like cell adhesion. Furthermore, albumin endocytosis is enhanced in the podocytes under condition of minimal change disease, and albumin is selectively transported by the albumin receptor FcRn. Suppressing the endocytosis of albumin with anti-FcRn antibody decreases the urinary protein level. The expression of motor molecules, such as cytoplasmic dynein 1 and myosin IX, is increased in the podocytes under conditions of minimal change nephrotic syndrome, suggesting the enhanced transport of vesicles containing albumin. Podocyte vesicle transport may play an important role in the pathology of selective albuminuria in cases of nephrotic syndrome.
当水和溶质通过裂孔膜被滤过时,裂孔膜是包括白蛋白在内的蛋白质的重要滤过屏障,这是一个先验概念。然而,在微小病变型肾病综合征的情况下,裂孔膜的数量因足突消失和紧密连接样细胞黏附而减少。此外,在微小病变疾病状态下,足细胞中白蛋白的内吞作用增强,白蛋白通过白蛋白受体FcRn被选择性转运。用抗FcRn抗体抑制白蛋白的内吞作用可降低尿蛋白水平。在微小病变型肾病综合征状态下,足细胞中诸如胞质动力蛋白1和肌球蛋白IX等运动分子的表达增加,提示含白蛋白的囊泡转运增强。足细胞囊泡转运可能在肾病综合征病例中选择性蛋白尿的病理过程中起重要作用。