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运用光镜和电镜免疫组织化学方法检测水通道蛋白1在大鼠胰腺导管系统中的分布。

Distribution of aquaporin 1 in the rat pancreatic duct system examined with light- and electron-microscopic immunohistochemistry.

作者信息

Furuya Sonoko, Naruse Satoru, Ko Shigeru B H, Ishiguro Hiroshi, Yoshikawa Toshiyuki, Hayakawa Tetsuo

机构信息

National Institute for Physiological Sciences, Myodaiji, Okazaki 444-8585, Japan.

出版信息

Cell Tissue Res. 2002 Apr;308(1):75-86. doi: 10.1007/s00441-002-0527-x. Epub 2002 Apr 6.

Abstract

The pancreatic duct is the major site for the secretion of pancreatic fluid, but the pathway of water transport in this system is not known. Recently, intense signal for mRNA of aquaporin 1 (AQP1) water channels was detected in isolated rat interlobular ducts. Therefore, we performed light- and electron-microscopic (EM) immunohistochemistry for AQP1 in the rat pancreatic ducts. AQP1 immunoproducts were not observed in the acinar cells, centroacinar cells or intercalated ducts. In the smaller intralobular ducts less than 10 microm in diameter (the lumen plus duct cells), most cells were immunonegative. AQP1-positive cells appeared in intralobular ducts 10-15 microm in diameter. In small and medium-sized interlobular ducts 15-70 microm in diameter surrounded by periductal connective tissue 2-40 microm thick, most cells were AQP1 positive with various degrees of immunoreactivity. In the larger interlobular ducts, the expression of AQP1 was variable, ranging from immunopositive to negative. In the main pancreatic duct, most cells were negative for AQP1. EM immunohistochemistry of the intralobular and small interlobular ductal epithelial cells showed that the AQP1 immunoproducts were more abundant in the basolateral membrane than in the apical membrane, though they were present in both membranes. In the medium-sized interlobular ducts, AQP1 immunoproducts were distributed densely along the apical, lateral interdigitation and basal membrane of the epithelial cells. In the various sizes of interlobular ducts, immunoproducts were associated not only with the plasma membrane, but also with the caveolae and vesicle-like structures. Secretin did not induce any significant difference in AQP1 expression and cellular and subcellular localization. These results indicate that the expression and subcellular localization of AQP1 vary considerably depending on the duct size, which may reflect water transport characteristics in the different divisions of the pancreatic duct system.

摘要

胰管是胰液分泌的主要部位,但该系统中水分运输的途径尚不清楚。最近,在分离的大鼠小叶间导管中检测到水通道蛋白1(AQP1)水通道mRNA的强烈信号。因此,我们对大鼠胰管进行了AQP1的光镜和电镜免疫组织化学研究。在腺泡细胞、中央腺泡细胞或闰管中未观察到AQP1免疫产物。在直径小于10微米的较小小叶内导管(管腔加导管细胞)中,大多数细胞呈免疫阴性。直径为10 - 15微米的小叶内导管中出现AQP1阳性细胞。在直径为15 - 70微米、周围有2 - 40微米厚的导管周围结缔组织包绕的中小叶间导管中,大多数细胞呈AQP1阳性,免疫反应程度各异。在较大的小叶间导管中,AQP1的表达各不相同,从免疫阳性到阴性。在主胰管中,大多数细胞AQP1呈阴性。小叶内和小叶间小导管上皮细胞的电镜免疫组织化学显示,AQP1免疫产物在基底外侧膜中比在顶端膜中更丰富,尽管两者膜中均有存在。在中小叶间导管中,AQP1免疫产物沿上皮细胞的顶端、侧向指状突和基底膜密集分布。在不同大小的小叶间导管中,免疫产物不仅与质膜相关,还与小窝和囊泡样结构相关。促胰液素未引起AQP1表达及细胞和亚细胞定位的任何显著差异。这些结果表明,AQP1的表达和亚细胞定位因导管大小而异,这可能反映了胰管系统不同部位的水分运输特征。

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