Literature DB >> 11916844

Initial stages of cell-matrix adhesion can be mediated and modulated by cell-surface hyaluronan.

Ella Zimmerman1, Benjamin Geiger, Lia Addadi.   

Abstract

A conceptual temporal and spatial gap exists between the first encounter of a cell with an adhesive substrate and the advanced stages of focal adhesion formation. Although ample information is available on focal adhesions structure and function, the mechanism of the first interaction events and the nature of the molecules mediating them are largely unknown. In this paper we identify cell-surface-associated hyaluronan as a mediator and modulator of the first steps of adhesion of A6 and other cells to conventional tissue culture substrates as well as to the surfaces of calcium-(R,R)-tartrate tetrahydrate crystals. Treatment of A6 cells with hyaluronidase suppresses their rapid interactions with these adhesive substrates, and incubation of either the hyaluronidase-treated cells or the substrate with hyaluronan restores cell adhesion. In contrast, excess hyaluronan on both the cells and the substrate strongly inhibits adhesion. We thus propose that cell-surface-associated hyaluronan can mediate and modulate cell-matrix adhesion at the very first encounter with the substrate. It may promote it through the establishment of exquisitely stereospecific chemical interactions or inhibit it by virtue of steric exclusion and/or electrostatic repulsion.

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Year:  2002        PMID: 11916844      PMCID: PMC1301982          DOI: 10.1016/S0006-3495(02)75535-5

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  47 in total

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  39 in total

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5.  Quantitative study of the elastic modulus of loosely attached cells in AFM indentation experiments.

Authors:  Maxim E Dokukin; Nataliia V Guz; Igor Sokolov
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Authors:  Jen-I Liang; Ping-Chia Lin; Meng-Yi Chen; Tsung-Hsun Hsieh; Jia-Jin Jason Chen; Ming-Long Yeh
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Review 7.  Biomaterial substrate modifications that influence cell-material interactions to prime cellular responses to nonviral gene delivery.

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Journal:  Exp Biol Med (Maywood)       Date:  2019-01-08

8.  Spatial organization and mechanical properties of the pericellular matrix on chondrocytes.

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Authors:  Mary K Cowman; Chiara Spagnoli; Dina Kudasheva; Min Li; Ansil Dyal; Sonoko Kanai; Endre A Balazs
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