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一种肾上皮细胞系(MDCK)的生长和分化特性

Growth and differentiated properties of a kidney epithelial cell line (MDCK).

作者信息

Saier M H

出版信息

Am J Physiol. 1981 Mar;240(3):C106-9. doi: 10.1152/ajpcell.1981.240.3.C106.

Abstract

The MDCK dog kidney epithelial cell line has been shown to retain the capacity for vectorial salt and fluid transport, sensitivity to growth regulation, and the ability to regenerate kidney tubular-like structures when injected into athymic nude mice. MDCK cells grown in tissue culture or in baby nude mice have the morphological properties of distal tubular cells, form tight and gap junctions, lack proximal tubular enzyme markers, and possess appreciable activities of Na+-K4-ATPase, ectoleucine aminopeptidase, and ectoalkaline phosphatase. Adenylate cyclase in intact cells is responsive to vasopressin, prostaglandins E1 and E2, and glucagon. Two Na+ transport systems have been characterized: a Na+-H+ antiport system, sensitive to amiloride inhibition, and a NaCl-KCl cotransport system, dependent on metabolic energy and sensitive to furosemide inhibition. Genetic techniques have been used to modify the properties of the cells. The results suggest that the MDCK cell line has retained the differentiated properties of the kidney epithelial cells of origin and that a clonally isolated cell possesses the receptor, transmission, and target enzyme systems necessary for the regulation of transcellular salt and fluid transport.

摘要

MDCK犬肾上皮细胞系已被证明保留了矢量性盐和液体转运能力、对生长调节的敏感性,以及注入无胸腺裸鼠后再生肾小管样结构的能力。在组织培养中或在幼龄裸鼠体内生长的MDCK细胞具有远端肾小管细胞的形态学特性,形成紧密连接和缝隙连接,缺乏近端肾小管酶标志物,并具有可观的Na+-K⁺-ATP酶、外亮氨酸氨肽酶和外碱性磷酸酶活性。完整细胞中的腺苷酸环化酶对血管加压素、前列腺素E1和E2以及胰高血糖素敏感。已鉴定出两种Na⁺转运系统:一种对氨氯地平抑制敏感的Na⁺-H⁺反向转运系统,以及一种依赖代谢能量且对呋塞米抑制敏感的NaCl-KCl协同转运系统。已使用基因技术来改变细胞的特性。结果表明,MDCK细胞系保留了起源肾上皮细胞的分化特性,并且克隆分离的细胞具有调节跨细胞盐和液体转运所需的受体、传递和靶酶系统。

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