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Collagen Fibrils Mechanically Contribute to Tissue Contraction in an In Vitro Wound Healing Scenario

机译:胶原蛋白原纤维在体外伤口愈合方案中机械地促进组织收缩

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摘要

Wound contraction is an ancient survival mechanism of vertebrates that results from tensile forces supporting wound closure. So far, tissue tension was attributed to cellular forces produced by tissue‐resident (myo‐)fibroblasts alone. However, difficulties in explaining pathological deviations from a successful healing path motivate the exploration of additional modulatory factors. Here, it is shown in a biomaterial‐based in vitro wound healing model that the storage of tensile forces in the extracellular matrix has a significant, so‐far neglected contribution to macroscopic tissue tension. In situ monitoring of tissue forces together with second harmonic imaging reveal that the appearance of collagen fibrils correlates with tissue contraction, indicating a mechanical contribution of tensioned collagen fibrils in the contraction process. As the re‐establishment of tissue tension is key to successful wound healing, the findings are expected to advance the understanding of tissue healing but also underlying principles of misregulation and impaired functionality in scars and tissue contractures.
机译:伤口收缩是脊椎动物的古老生存机制,是由支持伤口闭合的拉力产生的。到目前为止,组织张力归因于仅由组织驻留(肌)成纤维细胞产生的细胞力。然而,难以解释从成功的治疗途径引起的病理学偏差会促使人们探索其他调节因子。在此,在基于生物材料的体外伤口愈合模型中表明,张力在细胞外基质中的存储对宏观组织张力具有重大的,至今被忽视的贡献。组织力的原位监测以及二次谐波成像显示胶原原纤维的外观与组织收缩相关,表明张紧的胶原原纤维在收缩过程中的机械作用。由于组织张力的重建是成功伤口愈合的关键,因此,预期该发现将促进对组织愈合的理解,同时也将是疤痕和组织挛缩中失调和功能受损的基本原理。

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