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Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro

INTRODUCTION: Chondrocytes experience a hypertonic environment compared with plasma (280 mOsm) due to the high fixed negative charge density of cartilage. Standard isolation of chondrocytes removes their hypertonic matrix, exposing them to nonphysiological conditions. During in vitro expansion, chon...

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Autores principales: van der Windt, Anna E, Haak, Esther, Das, Ruud HJ, Kops, Nicole, Welting, Tim JM, Caron, Marjolein MJ, van Til, Niek P, Verhaar, Jan AN, Weinans, Harrie, Jahr, Holger
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2911888/
https://www.ncbi.nlm.nih.gov/pubmed/20492652
http://dx.doi.org/10.1186/ar3031
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author van der Windt, Anna E
Haak, Esther
Das, Ruud HJ
Kops, Nicole
Welting, Tim JM
Caron, Marjolein MJ
van Til, Niek P
Verhaar, Jan AN
Weinans, Harrie
Jahr, Holger
author_facet van der Windt, Anna E
Haak, Esther
Das, Ruud HJ
Kops, Nicole
Welting, Tim JM
Caron, Marjolein MJ
van Til, Niek P
Verhaar, Jan AN
Weinans, Harrie
Jahr, Holger
author_sort van der Windt, Anna E
collection PubMed
description INTRODUCTION: Chondrocytes experience a hypertonic environment compared with plasma (280 mOsm) due to the high fixed negative charge density of cartilage. Standard isolation of chondrocytes removes their hypertonic matrix, exposing them to nonphysiological conditions. During in vitro expansion, chondrocytes quickly lose their specialized phenotype, making them inappropriate for cell-based regenerative strategies. We aimed to elucidate the effects of tonicity during isolation and in vitro expansion on chondrocyte phenotype. METHODS: Human articular chondrocytes were isolated and subsequently expanded at control tonicity (280 mOsm) or at moderately elevated, physiological tonicity (380 mOsm). The effects of physiological tonicity on chondrocyte proliferation and chondrogenic marker expression were evaluated. The role of Tonicity-responsive Enhancer Binding Protein in response to physiological tonicity was investigated using nuclear factor of activated T-cells 5 (NFAT5) RNA interference. RESULTS: Moderately elevated, physiological tonicity (380 mOsm) did not affect chondrocyte proliferation, while higher tonicities inhibited proliferation and diminished cell viability. Physiological tonicity improved expression of chondrogenic markers and NFAT5 and its target genes, while suppressing dedifferentiation marker collagen type I and improving type II/type I expression ratios >100-fold. Effects of physiological tonicity were similar in osteoarthritic and normal (nonosteoarthritic) chondrocytes, indicating a disease-independent mechanism. NFAT5 RNA interference abolished tonicity-mediated effects and revealed that NFAT5 positively regulates collagen type II expression, while suppressing type I. CONCLUSIONS: Physiological tonicity provides a simple, yet effective, means to improve phenotypical characteristics during cytokine-free isolation and in vitro expansion of human articular chondrocytes. Our findings will lead to the development of improved cell-based repair strategies for chondral lesions and provides important insights into mechanisms underlying osteoarthritic progression.
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spelling pubmed-29118882010-07-29 Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro van der Windt, Anna E Haak, Esther Das, Ruud HJ Kops, Nicole Welting, Tim JM Caron, Marjolein MJ van Til, Niek P Verhaar, Jan AN Weinans, Harrie Jahr, Holger Arthritis Res Ther Research Article INTRODUCTION: Chondrocytes experience a hypertonic environment compared with plasma (280 mOsm) due to the high fixed negative charge density of cartilage. Standard isolation of chondrocytes removes their hypertonic matrix, exposing them to nonphysiological conditions. During in vitro expansion, chondrocytes quickly lose their specialized phenotype, making them inappropriate for cell-based regenerative strategies. We aimed to elucidate the effects of tonicity during isolation and in vitro expansion on chondrocyte phenotype. METHODS: Human articular chondrocytes were isolated and subsequently expanded at control tonicity (280 mOsm) or at moderately elevated, physiological tonicity (380 mOsm). The effects of physiological tonicity on chondrocyte proliferation and chondrogenic marker expression were evaluated. The role of Tonicity-responsive Enhancer Binding Protein in response to physiological tonicity was investigated using nuclear factor of activated T-cells 5 (NFAT5) RNA interference. RESULTS: Moderately elevated, physiological tonicity (380 mOsm) did not affect chondrocyte proliferation, while higher tonicities inhibited proliferation and diminished cell viability. Physiological tonicity improved expression of chondrogenic markers and NFAT5 and its target genes, while suppressing dedifferentiation marker collagen type I and improving type II/type I expression ratios >100-fold. Effects of physiological tonicity were similar in osteoarthritic and normal (nonosteoarthritic) chondrocytes, indicating a disease-independent mechanism. NFAT5 RNA interference abolished tonicity-mediated effects and revealed that NFAT5 positively regulates collagen type II expression, while suppressing type I. CONCLUSIONS: Physiological tonicity provides a simple, yet effective, means to improve phenotypical characteristics during cytokine-free isolation and in vitro expansion of human articular chondrocytes. Our findings will lead to the development of improved cell-based repair strategies for chondral lesions and provides important insights into mechanisms underlying osteoarthritic progression. BioMed Central 2010 2010-05-21 /pmc/articles/PMC2911888/ /pubmed/20492652 http://dx.doi.org/10.1186/ar3031 Text en Copyright ©2010 van der Windt et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
van der Windt, Anna E
Haak, Esther
Das, Ruud HJ
Kops, Nicole
Welting, Tim JM
Caron, Marjolein MJ
van Til, Niek P
Verhaar, Jan AN
Weinans, Harrie
Jahr, Holger
Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro
title Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro
title_full Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro
title_fullStr Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro
title_full_unstemmed Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro
title_short Physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated T-cells 5 in vitro
title_sort physiological tonicity improves human chondrogenic marker expression through nuclear factor of activated t-cells 5 in vitro
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2911888/
https://www.ncbi.nlm.nih.gov/pubmed/20492652
http://dx.doi.org/10.1186/ar3031
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