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人子宫和输卵管中的间质 Cajal 样细胞。

Interstitial Cajal-like cells in human uterus and fallopian tube.

作者信息

Popescu Laurentiu M, Ciontea Sanda M, Cretoiu Dragos

机构信息

Department of Cellular and Molecular Medicine, Carol Davila University of Medicine and Pharmacy, P.O. Box 35-29, Bucharest 35, Romania.

出版信息

Ann N Y Acad Sci. 2007 Apr;1101:139-65. doi: 10.1196/annals.1389.022. Epub 2007 Mar 14.

Abstract

Recently, parallels have been drawn between enteric interstitial cells of Cajal (ICC) and similar cells outside the gut-interstitial Cajal-like cells (ICLC). This article reviews our laboratory findings on ICLC in the female reproductive tract. Since the morphology and function of ICLC are still a subject of debate, our purpose was to investigate whether ICLC are present in the fallopian tube and/or uterus, and if they share ultrastructural and immunohistochemical (IHC) features and/or functional roles. We studied ICLC presence in the human fallopian tube and myometrium primarily by light microscopy, and then by transmission electron microscopy (TEM), in tissue samples and at a single cell level. Taking advantage of our ICLC studies of several organs (pancreas, mammary gland, myocardium), we assembled a set of criteria, derived from ultrastructural features of ICLC, called "platinum standard." Besides the putative pacemaker function, ICLC might have other physiological roles, depending on tissue type (e.g., intercellular signaling, immune surveillance, steroid sensors). Consequently, there is a great urge for a conceptual framework that could allow a better understanding, from a functional point of view, and more so, as the ICLC processes are the longest cellular prolongations (except neurons).

摘要

最近,人们开始将肠道的 Cajal 间质细胞(ICC)与肠道外的类似细胞——类 Cajal 间质细胞(ICLC)进行比较。本文回顾了我们实验室关于女性生殖道中 ICLC 的研究结果。由于 ICLC 的形态和功能仍存在争议,我们的目的是研究输卵管和/或子宫中是否存在 ICLC,以及它们是否具有超微结构和免疫组织化学(IHC)特征及/或功能作用。我们主要通过光学显微镜,然后通过透射电子显微镜(TEM),在组织样本和单细胞水平上研究了人输卵管和子宫肌层中 ICLC 的存在情况。利用我们对多个器官(胰腺、乳腺、心肌)的 ICLC 研究,我们根据 ICLC 的超微结构特征制定了一套标准,称为“白金标准”。除了假定的起搏功能外,ICLC 可能还有其他生理作用,这取决于组织类型(例如细胞间信号传导、免疫监视、类固醇传感器)。因此,迫切需要一个概念框架,以便从功能角度更好地理解,尤其是因为 ICLC 过程是最长的细胞延伸(神经元除外)。

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