[Possibilities and limitations of fibroblast cultures in the study of animal aging].

La Cellule Pub Date : 1987-01-01
P Van Gansen, N Van Lerberghe
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Abstract

INTRODUCTION. Aging--the effect of time--occurs in every living organism. Senescence is the last period of the lifespan, leading to death. It happens in all animals, with the exception of a few didermic species (Hydras) having a stock of embryonic cells and being immortal. The causes of animal senescence are badly known. They depend both on genetic characters (maximal lifespan of a species) and on medium factors (mean expectation of life of the animals of a species). Animal senescence could depend on cell aging: 1) by senescence and death of the differentiated cells, 2) by modified proliferation and differentiation of the stem cells of differentiated tissues, 3) by alterations in the extracellular matrices, 4) by interactions between factors 1) 2) and 3) in each tissue, 5) by interactions between the several tissues of an organism. This complexity badly impedes the experimental study of animal senescence. Normal mammal cells are aging when they are cultivated (in vitro ageing): their phenotype varies and depends on the cell generation (in vitro differentiation); the last cell-generation doesn't divide anymore and declines until death of the culture (in vitro senescence). Analysis of these artificial but well controlled systems allows an experimental approach of the proliferation, differentiation, senescence and death of the cells and of the extracellular matrix functions. Present literature upon in vitro aging of cultivated human cells is essentially made of papers where proliferation and differentiation characteristics are compared between early ("young") and late ("old") cell-generations of the cultures. FIBROBLASTIC CELLS OF THE MOUSE SKIN. This cell type has been studied in our laboratory, using different systems: 1) Primary cultures isolated from peeled skins of 19 day old mouse embryos, 2) Mouse dermis analyzed in the animals, 3) Cultivated explants of skins, 4) Serial sub-cultures of fibroblasts isolated from these explants, 5) Cells cultivated comparably on plane substrates (glass, plastic, collagen films) and on tridimensional matrices (collagen fibres). Systems 2), 3), 4) and 5) have been obtained either from 19 day old embryos or from 6 groups of animals of different ages (from 1/2 till 25 month). In primary cultures (system 1) all the cell generations have been analyzed, including the last one until death of the culture. We have shown that many characters are varying with cell-generation: cell form and cell mass, rate of DNA replication and cell division, rate of RNA transcription, nature of the accumulated and of the synthetized proteins, organization of the cytoskeletal elements, organization of the extracellular matrix, type of cell death.(ABSTRACT TRUNCATED AT 400 WORDS)

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[成纤维细胞培养在动物衰老研究中的可能性和局限性]。
介绍。衰老——时间的影响——发生在每一个生物体中。衰老是生命的最后阶段,导致死亡。它发生在所有的动物中,除了少数具有胚胎细胞的双胚层物种(九头蛇)是不朽的。人们对动物衰老的原因知之甚少。它们既取决于遗传特征(一个物种的最大寿命),也取决于中等因素(一个物种的动物的平均预期寿命)。动物衰老可能取决于细胞老化:1)分化细胞的衰老和死亡,2)分化组织干细胞的增殖和分化,3)细胞外基质的改变,4)各组织中1)2)和3)因子之间的相互作用,5)生物体中几个组织之间的相互作用。这种复杂性严重阻碍了动物衰老的实验研究。正常哺乳动物细胞在培养时(体外老化)会老化:它们的表型不同,取决于细胞的产生(体外分化);最后一代细胞不再分裂并衰退,直到培养物死亡(体外衰老)。对这些人工但控制良好的系统进行分析,可以采用实验方法研究细胞的增殖、分化、衰老和死亡以及细胞外基质的功能。目前关于培养的人类细胞体外老化的文献基本上是由论文组成的,其中比较了培养的早期(“年轻”)和晚期(“年老”)细胞代的增殖和分化特征。小鼠皮肤的成纤维细胞。我们的实验室使用不同的系统对这种细胞类型进行了研究:1)从19日龄小鼠胚胎去皮皮肤中分离的原代培养,2)分析动物小鼠真皮,3)培养的皮肤外植体,4)从这些外植体中分离的成纤维细胞的连续继代培养,5)在平面基质(玻璃、塑料、胶原膜)和三维基质(胶原纤维)上培养的细胞。系统2)、3)、4)和5)取自19日龄的胚胎或6组不同年龄(1/2至25个月)的动物。在原代培养(系统1)中,分析了所有细胞代,包括最后一代,直到培养物死亡。我们已经表明,许多特征随着细胞的产生而变化:细胞形式和细胞质量、DNA复制和细胞分裂的速度、RNA转录的速度、积累和合成蛋白质的性质、细胞骨架元件的组织、细胞外基质的组织、细胞死亡的类型。(摘要删节为400字)
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Serotonin and serotoninergic neurons. A radioautographic and immunocytochemical study of the nucleus raphe dorsalis and nucleus dorsomedialis hypothalami. [Recent contributions concerning the development and distribution of dopaminergic innervation in the cerebral cortex of the rat]. Polymorphic organization of the endoplasmic reticulum of the Malpighian tubule. Evidence for a transcellular route. [Possibilities and limitations of fibroblast cultures in the study of animal aging]. [Albert Claude and the beginnings of modern cell biology].
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