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基于丙烯酰化透明质酸的水凝胶治疗头面部容积性肌肉丧失。

Acrylated Hyaluronic-Acid Based Hydrogel for the Treatment of Craniofacial Volumetric Muscle Loss.

机构信息

School of Medicine, University of California San Francisco, San Francisco, California, USA.

Program in Craniofacial Biology and Department of Orofacial Sciences, University of California San Francisco, San Francisco, California, USA.

出版信息

Tissue Eng Part A. 2024 Nov;30(21-22):704-711. doi: 10.1089/ten.TEA.2023.0241. Epub 2024 Apr 9.

Abstract

Current treatment options for craniofacial volumetric muscle loss (VML) have disadvantages and cannot fully restore normal function. Bio-inspired semisynthetic acrylated hyaluronic acid (AcHyA) hydrogel, which fills irregularly shaped defects, resembles an extracellular matrix, and induces a minimal inflammatory response, has shown promise in experimental studies of extremity VML. We therefore sought to study AcHyA hydrogel in the treatment of craniofacial VML. For this, we used a novel model of masseter VML in the rat. Following the creation of a 5 mm × 5 mm injury to the superficial masseter and administration of AcHyA to the wound, masseters were explanted between 2 and 16 weeks postoperatively and were analyzed for evidence of muscle regeneration including fibrosis, defect size, and fiber cross-sectional area (FCSA). At 8 and 16 weeks, masseters treated with AcHyA showed significantly less fibrosis than nonrepaired controls and a smaller decrease in defect size. The mean FCSA among fibers near the defect was significantly greater among hydrogel-repaired than control masseters at 8 weeks, 12 weeks, and 16 weeks. These results show that the hydrogel mitigates the fibrotic healing response and wound contracture. Our findings also suggest that hydrogel-based treatments have potential use as a treatment for the regeneration of craniofacial VML and demonstrate a system for evaluating subsequent iterations of materials in VML injuries. Impact Statement Craniofacial volumetric muscle loss (VML) is a debilitating condition for which current treatment options are unable to restore normal appearance, or function. Tissue engineering approaches, such as hydrogel implants, may be an effective strategy to fill the volumetric defects and promote muscle regeneration. In this study, we describe a novel rodent model for the study of craniofacial VML and a hyaluronic acid-based hydrogel that can be used as a treatment for the regeneration of craniofacial VML.

摘要

目前针对颅面容积性肌肉缺失(VML)的治疗方法存在缺陷,无法完全恢复正常功能。生物启发的半合成丙烯酰化透明质酸(AcHyA)水凝胶可填补形状不规则的缺陷,类似于细胞外基质,并引起最小的炎症反应,在肢体 VML 的实验研究中显示出前景。因此,我们试图研究 AcHyA 水凝胶在治疗颅面 VML 中的作用。为此,我们使用了一种新型的大鼠咬肌 VML 模型。在浅层咬肌上造成 5mm×5mm 的损伤后,将 AcHyA 施用于伤口,术后 2 至 16 周取出咬肌,并分析肌肉再生的证据,包括纤维化、缺陷大小和纤维横截面积(FCSA)。在 8 周和 16 周时,用 AcHyA 处理的咬肌纤维化程度明显低于未修复的对照组,且缺陷大小的减小程度也较小。在 8 周、12 周和 16 周时,在靠近缺陷的纤维中,水凝胶修复的咬肌的纤维 FCSA 明显大于对照组。这些结果表明,水凝胶减轻了纤维化愈合反应和伤口挛缩。我们的发现还表明,基于水凝胶的治疗方法有可能作为治疗颅面 VML 再生的一种方法,并展示了一种评估 VML 损伤后续材料迭代的系统。

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