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Tissue kinetics, ion transport, and recruitment of mitochondria-rich cells in the skin of the toad (Bufo bufo) in response to exposure to distilled water.

作者信息

Budtz P E, Christoffersen B C, Johansen J S, Spies I, Willumsen N J

机构信息

Zoophysiological Laboratory, August Krogh Institute, University of Copenhagen, Denmark.

出版信息

Cell Tissue Res. 1995 Apr;280(1):65-75. doi: 10.1007/BF00304512.

DOI:10.1007/BF00304512
PMID:7750138
Abstract

Mitochondria-rich cells (MRC) of the amphibian epidermis are responsible for active chloride uptake at low external salinity, and new MRCs are recruited in response to exposure to distilled (deionized) water. The time-course of this recruitment, the tissue kinetics and ion transport have been studied in toads (Bufo bufo) immediately before, and after 2,7, and 14 days exposure to distilled water. General epidermal structure was not affected. However, the numbers of MRCs per mm2 (DMRC) increased throughout the experiment as revealed by staining of epidermal sheets with AgNO3 (Ag) or methylene blue (MB). Part of the increased DMRC was accounted for by an increase in MRC subpopulation(s) that stained neither with Ag nor MB. The cell birth rate (Kb) decreased and cell loss by moulting (Kd) increased without any significant change in epidermal cell pool size, indicating a reduced apoptotic rate. The increase in DMRC was accompanied by a 3-fold increase in Cl- current (ICl). At day-2 there was a transient reduction in the ICl per MRC. H+ secretion was progressively reduced during prolonged exposure to distilled water. Thus, at day-2 MRCs appeared incompletely differentiated as indicated by decreased ICl and H+ flux per MRC, and by the increased proportion of MRCs unstained by Ag or MB. Full Cl- (but not H+) transport capacity, was restored at day-7. We conclude that increased DMRC following exposure to low external Cl-, rather than being due to an increased Kb, is the combined effect of a decreased apoptotic rate and an increased rate of differentiation, where 'morphological differentiation' precedes 'functional differentiation'.

摘要

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引用本文的文献

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本文引用的文献

1
Active transport of sodium as the source of electric current in the short-circuited isolated frog skin.钠的主动转运作为短路离体蛙皮电流的来源。
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Epidermal tissue homeostasis. II. Cell pool size, cell birth rate and cell loss in toads deprived of the pars distalis of the pituitary gland.
Cell Tissue Kinet. 1985 Sep;18(5):533-42.
6
Epidermal tissue homeostasis. I. Cell pool size, cell birth rate and cell loss by moulting in the intact toad, Bufo bufo.
Cell Tissue Kinet. 1985 Sep;18(5):521-32.
7
Epidermal tissue homeostasis. III. Effect of hydrocortisone on cell pool size, cell birth rate and cell loss in normal toads and in toads deprived of the pars distalis of the pituitary gland.
Cell Tissue Kinet. 1988 Jul;21(4):259-70.
8
Membrane potentials and intracellular Cl- activity of toad skin epithelium in relation to activation and deactivation of the transepithelial Cl- conductance.蟾蜍皮肤上皮细胞的膜电位和细胞内氯离子活性与跨上皮氯离子电导的激活和失活的关系。
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Epidermal tissue homeostasis: apoptosis and cell emigration as mechanisms of controlled cell deletion in the epidermis of the toad, Bufo bufo.表皮组织稳态:凋亡和细胞迁移作为蟾蜍(Bufo bufo)表皮中受控细胞清除的机制。
Cell Tissue Res. 1989 Jun;256(3):475-86. doi: 10.1007/BF00225595.
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