Matrix biomechanics and dynamics in pulmonary fibrosis.

Matrix biomechanics and dynamics in pulmonary fibrosis.
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DOI:
10.1016/j.matbio.2017.12.004
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发表时间:
2018-11
期刊:
Matrix biology : journal of the International Society for Matrix Biology
影响因子:
--
通讯作者:
Tschumperlin DJ
Tschumperlin DJ
中科院分区:
其他
文献类型:
--
作者:
Haak AJ;Tan Q;Tschumperlin DJ

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细胞外基质的组成和机械性质在肺纤维化的发展和进展过程中发生显著改变。最近的证据表明,基质组成和力学的这些变化不仅是纤维化重塑的最终结果,而且是推动疾病进展的积极参与者。这些见解激发了人们对识别有助于细胞活化和疾病起始和进展的基质的组分和物理方面的兴趣。这篇综述总结了目前关于ECM在小鼠模型和人类IPF中的生物力学和动力学的知识,并讨论了基质机械和成分变化如何进行非侵入性评估,治疗靶向和生物恢复以解决纤维化。
The composition and mechanical properties of the extracellular matrix are dramatically altered during the development and progression of pulmonary fibrosis. Recent evidence indicates that these changes in matrix composition and mechanics are not only end-results of fibrotic remodeling, but active participants in driving disease progression. These insights have stimulated interest in identifying the components and physical aspects of the matrix that contribute to cell activation and disease initiation and progression. This review summarizes current knowledge regarding the biomechanics and dynamics of the ECM in mouse models and human IPF, and discusses how matrix mechanical and compositional changes might be non-invasively assessed, therapeutically targeted, and biologically restored to resolve fibrosis.
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