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在工程化微组织中,激光消融后成纤维细胞对受损组织的清除作用。

Fibroblast clearance of damaged tissue following laser ablation in engineered microtissues.

作者信息

Griebel Megan, Vasan Anish, Chen Christopher, Eyckmans Jeroen

机构信息

Department of Biomedical Engineering and the Biological Design Center, Boston University, Boston, Massachusetts 02215, USA.

出版信息

APL Bioeng. 2023 Mar 14;7(1):016112. doi: 10.1063/5.0133478. eCollection 2023 Mar.

Abstract

Although the mechanisms underlying wound healing are largely preserved across wound types, the method of injury can affect the healing process. For example, burn wounds are more likely to undergo hypertrophic scarring than are lacerations, perhaps due to the increased underlying damage that needs to be cleared. This tissue clearance is thought to be mainly managed by immune cells, but it is unclear if fibroblasts contribute to this process. Herein, we utilize a 3D model of stromal wound healing to investigate the differences between two modes of injury: laceration and laser ablation. We demonstrate that laser ablation creates a ring of damaged tissue around the wound that is cleared by fibroblasts prior to wound closure. This process is dependent on ROCK and dynamin activity, suggesting a phagocytic or endocytic process. Transmission electron microscopy of fibroblasts that have entered the wound area reveals large intracellular vacuoles containing fibrillar extracellular matrix. These results demonstrate a new model to study matrix clearance by fibroblasts in a 3D soft tissue. Because aberrant wound healing is thought to be caused by an imbalance between matrix degradation and production, this model, which captures both aspects, will be a valuable addition to the study of wound healing.

摘要

尽管不同类型伤口愈合的潜在机制大体上是相同的,但损伤方式会影响愈合过程。例如,烧伤伤口比撕裂伤更易形成增生性瘢痕,这可能是由于需要清除的潜在损伤增加。这种组织清除被认为主要由免疫细胞完成,但尚不清楚成纤维细胞是否参与此过程。在此,我们利用基质伤口愈合的三维模型来研究两种损伤模式(撕裂伤和激光消融)之间的差异。我们证明,激光消融在伤口周围形成一圈受损组织,在伤口闭合前由成纤维细胞清除。这个过程依赖于ROCK和发动蛋白的活性,提示这是一个吞噬或胞吞过程。对进入伤口区域的成纤维细胞进行透射电子显微镜检查,发现细胞内有大量含有纤维状细胞外基质的空泡。这些结果展示了一个在三维软组织中研究成纤维细胞清除基质的新模型。由于异常伤口愈合被认为是由基质降解和生成之间的失衡引起的,这个兼顾两方面的模型将为伤口愈合研究增添有价值的内容。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b41/10017124/7191c42aecfc/ABPID9-000007-016112_1-g001.jpg

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