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关于分泌细胞系统中多种内分泌、旁分泌和神经分泌信使的可能存在情况。

On the possible existence of multiple endocrine, paracrine and neurocrine messengers in secretory cell systems.

作者信息

Larsson L I

出版信息

Invest Cell Pathol. 1980 Jan-Mar;3(1):73-85.

PMID:6104654
Abstract

A multiplicity of regulatory molecules, messengers, are secreted by a large variety of neuronal, endocrine and paracrine cell populations. To some extent the anatomical locus of messenger production or the cytophysiological characteristics of cells producing a messenger determines its role as a hormone, transmitter, modulator or paracrine regulator. Thus, the same messenger may function as a hormone in one location and as a neurotransmitter in another. This versatility in functions makes it difficult to assign a definite physiological role to a given messenger. Our evidence for the occurrence of cell systems producing more than one type of messenger is presented. The practical and conceptual difficulties in determining definite functions of messengers leads to our present inability to examine critically well-known dogmas like the "one hormone-one cell" concept and "Dale's principle". Recognition of the fact that some cell systems do indeed produce multiple messengers provides us with valuable tools for investigating endocrine and neurocrine secretion and has far-reaching implications for studies of cell differentiation and cell pathology.

摘要

多种调节分子,即信使分子,由各种各样的神经元、内分泌和旁分泌细胞群体分泌。在某种程度上,信使分子产生的解剖学位置或产生信使分子的细胞的细胞生理特征决定了其作为激素、递质、调节剂或旁分泌调节因子的作用。因此,同一种信使分子在一个部位可能起激素的作用,而在另一个部位则起神经递质的作用。这种功能的多样性使得难以给某一特定信使分子赋予明确的生理作用。我们展示了产生不止一种类型信使分子的细胞系统存在的证据。确定信使分子明确功能时存在的实际和概念上的困难导致我们目前无法严格审视诸如“一种激素 - 一种细胞”概念和“戴尔原则”等广为人知的教条。认识到某些细胞系统确实会产生多种信使分子这一事实,为我们研究内分泌和神经分泌提供了有价值的工具,并且对细胞分化和细胞病理学研究具有深远意义。

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