>The use of dermal substitutes to treat skin defects such as ulcers has shown promising results, suggesting a potential role for skin substitutes for trea'/> Photobiomodulation of a flowable matrix in a human skin ex vivo model demonstrates energy‐based enhancement of engraftment integration and remodeling
首页> 外文期刊>Journal of Biophotonics >Photobiomodulation of a flowable matrix in a human skin ex vivo model demonstrates energy‐based enhancement of engraftment integration and remodeling
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Photobiomodulation of a flowable matrix in a human skin ex vivo model demonstrates energy‐based enhancement of engraftment integration and remodeling

机译:在人体皮肤中的流动基质的光致调节,例如人体皮肤,表明了植入整合和重塑的能量的增强

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>The use of dermal substitutes to treat skin defects such as ulcers has shown promising results, suggesting a potential role for skin substitutes for treating acute and chronic wounds. One of the main drawbacks with the use of dermal substitutes is the length of time from engraftment to graft take, plus the risk of contamination and failure due to this prolonged integration. Therefore, the use of adjuvant energy‐based therapeutic modalities to augment and accelerate the rate of biointegration by dermal substitute engraftments is a desirable outcome. The photobiomodulation (PBM) therapy modulates the repair process, by stimulating cellular proliferation and angiogenesis. Here, we evaluated the effect of PBM on a collagen‐glycosaminoglycan flowable wound matrix (FWM) in an ex vivo human skin wound model. PBM resulted in accelerated rate of re‐epithelialization and organization of matrix as seen by structural arrangement of collagen fibers, and a subsequent increased expression of alpha‐smooth muscle actin (α‐SMA) and vascular endothelial growth factor A (VEGF‐A) leading to an overall improved healing process. The use of PBM promoted a beneficial effect on the rate of integration and healing of FWM. We therefore propose that the adjuvant use of PBM may have utility in enhancing engraftment and tissue repair and be of value in clinical practice.
机译: >使用皮肤替代物治疗皮肤缺陷,如溃疡已经显示出有希望的结果,表明皮肤替代物用于治疗急性和慢性伤口的潜在作用。使用皮肤替代品的主要缺点之一是从植入到移植物中的时间长度,以及由于这种延长的整合而导致污染和失败的风险。因此,使用基于佐剂的能量的治疗方式来增强并加速皮肤替代植入的生物凝集率是理想的结果。光致调节(PBM)治疗通过刺激细胞增殖和血管生成来调节修复过程。在此,我们在离体人体皮肤伤口模型中评估了PBM对胶原糖氨基聚糖可流动伤口基质(FWM)的影响。通过胶原纤维的结构布置所见,PBM加速了重新上皮化和基质组织的组织率,以及随后增加了α-平滑肌肌动蛋白(α-SMA)和血管内皮生长因子A(VEGF-A)的表达整体改善的治疗过程。 PBM的使用促进了对FWM的融合和愈合速度的有益效果。因此,我们提出佐剂使用PBM可能具有增强植入和组织修复的效用,并且在临床实践中具有价值。

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