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体外培养的人皮肤成纤维细胞沿终末细胞谱系分化。

Human skin fibroblasts in vitro differentiate along a terminal cell lineage.

作者信息

Bayreuther K, Rodemann H P, Hommel R, Dittmann K, Albiez M, Francz P I

机构信息

Institut für Genetik, Universität Hohenheim, Federal Republic of Germany.

出版信息

Proc Natl Acad Sci U S A. 1988 Jul;85(14):5112-6. doi: 10.1073/pnas.85.14.5112.

Abstract

Secondary mitotic human skin fibroblast populations in vitro underwent 53 +/- 6 cumulative population doublings (CPD) in 302 +/- 27 days. When the growth capacity of the mitotic fibroblasts is exhausted, and if appropriate methods are applied, the fibroblasts differentiate spontaneously into postmitotic fibroblast populations, which were kept in stationary culture for up to 305 +/- 41 additional days. Mitotic and postmitotic fibroblast populations are heterogeneous populations with reproducible changes in the proportions of mitotic fibroblasts F I, F II, and F III, and postmitotic fibroblasts F IV, F V, F VI, and F VII. This process makes it evident that the fibroblasts differentiate spontaneously along a seven-stage terminal cell lineage F I-F II-F III-F IV-F V-F VI-F VII. Shifts in the frequencies of the mitotic and postmitotic fibroblasts in mass populations are accompanied by alterations in the [35S]methionine polypeptide pattern of the developing mass populations. The [35S]methionine polypeptide patterns of homogeneous subpopulations of F I, F II, F III, F IV, F V, and F VI isolated from heterogeneous mass populations reveal that the six fibroblast morphotypes studied express their cell-type-specific [35S]methionine polypeptide pattern in the heterogeneous mass populations.

摘要

体外培养的人皮肤成纤维细胞次级有丝分裂群体在302±27天内经历了53±6次累积群体倍增(CPD)。当成纤维细胞的有丝分裂生长能力耗尽时,如果采用适当的方法,这些成纤维细胞会自发分化为有丝分裂后成纤维细胞群体,并在静止培养中再维持305±41天。有丝分裂和成纤维细胞后群体是异质群体,有丝分裂成纤维细胞F I、F II和F III以及有丝分裂后成纤维细胞F IV、F V、F VI和F VII的比例会发生可重复的变化。这一过程清楚地表明,成纤维细胞沿着七阶段终末细胞谱系F I-F II-F III-F IV-F V-F VI-F VII自发分化。大量群体中有丝分裂和成纤维细胞后成纤维细胞频率的变化伴随着发育中大量群体的[35S]甲硫氨酸多肽模式的改变。从异质大量群体中分离出的F I、F II、F III、F IV、F V和F VI同质亚群体的[35S]甲硫氨酸多肽模式表明,所研究的六种成纤维细胞形态型在异质大量群体中表达其细胞类型特异性的[35S]甲硫氨酸多肽模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ac6/281698/5bc385f71043/pnas00293-0177-a.jpg

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