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PMID: 1699955 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Molecular traffic through plasma membrane disruptions of cells in vivo.

Journal of cell science ·Vol. 96 ( Pt 3) ·1990-07-00 ·Pages 549-56

McNeil PL, Ito S

Abstract

We have recently shown that mechanical forces, experimentally imposed or physiologically generated, transiently disrupt or wound the plasma membranes of epithelial cells of the gut and that cultured endothelial cells similarly wounded mechanically at their plasma membranes release a potent basic fibroblast growth factor-like molecule. Here we show that mechanical forces generated by experimental manipulation (tape stripping and needle puncture), or by animal locomotion, transiently wound the plasma membranes of various cells of skin, allowing otherwise impermeant tracer molecules to enter and become trapped within cell cytoplasm. We estimate that the epidermis of digits from actively locomoting animals is composed of 10.5% (+/- 4.9% S.D.) wounded cells, and that from quiescent animals has 3.7% (+/- 2.5%) wounded cells. Wounded fibroblast, glandular and endothelial cells were also identified in mechanically stressed skin. Cells retaining fluorescein dextran, used as a label for wounding, were observed 24h after the imposition of mechanical force, and wounded cells were generally of normal ultrastructure, indicating that cells in skin can survive membrane wounding. We propose that plasma membrane disruptions are an overlooked but probably common occurrence in cells residing in tissues such as gut and skin that are normally exposed to mechanical stress in vivo, and that such disruptions provide the physical basis in vivo for a previously unrecognized and diffusion-mediated route for molecular traffic directly across the plasma membrane into and out of living cell cytoplasm.

MeSH Terms
Animals Cell Membrane/physiology,ultrastructure Dextrans/pharmacokinetics Fluoresceins/pharmacokinetics Horseradish Peroxidase/pharmacokinetics Male Rats Rats, Inbred Strains Skin/injuries,ultrastructure Skin Physiological Phenomena Stress, Mechanical
Chemicals
Dextrans Fluoresceins fluorescein-dextran Horseradish Peroxidase
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
McNeil P L
Department of Anatomy and Cellular Biology, Harvard Medical School, Boston, Massachusetts 02115.
Ito S
Article Info
Journal
Journal of cell science
Abbr.
J Cell Sci
ISSN
0021-9533
Published
1990-07-00
Pages
549-56
Language
English
Region
England
NLM ID
0052457
Subset
IM
Grants
NCI NIH HHS · CA-42275 · United States
PHS HHS · PK-30303 · United States
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