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通过 Arg 基聚酯酰胺和壳聚糖合成的具有生物降解性的水凝胶支架,种植有鼠骨髓间充质干细胞,可加速严重烧伤创面的愈合。

Accelerate Healing of Severe Burn Wounds by Mouse Bone Marrow Mesenchymal Stem Cell-Seeded Biodegradable Hydrogel Scaffold Synthesized from Arginine-Based Poly(ester amide) and Chitosan.

机构信息

1 Neuroscience Center of Excellence, Louisiana State University Health Sciences Center , New Orleans, Louisiana.

2 Department of Fiber Science and Apparel Design, Cornell University , Ithaca, New York.

出版信息

Stem Cells Dev. 2018 Dec 1;27(23):1605-1620. doi: 10.1089/scd.2018.0106. Epub 2018 Oct 23.

Abstract

Severe burns are some of the most challenging problems in clinics and still lack ideal modalities. Mesenchymal stem cells (MSCs) incorporated with biomaterial coverage of burn wounds may offer a viable solution. In this report, we seeded MSCs to a biodegradable hybrid hydrogel, namely ACgel, that was synthesized from unsaturated arginine-based poly(ester amide) (UArg-PEA) and chitosan derivative. MSC adhered to ACgels. ACgels maintained a high viability of MSCs in culture for 6 days. MSC seeded to ACgels presented well in third-degree burn wounds of mice at 8 days postburn (dpb) after the necrotic full-thickness skin of burn wounds was debrided and filled and covered by MSC-carrying ACgels. MSC-seeded ACgels promoted the closure, reepithelialization, granulation tissue formation, and vascularization of the burn wounds. ACgels alone can also promote vascularization but less effectively compared with MSC-seeded ACgels. The actions of MSC-seeded ACgels or ACgels alone involve the induction of reparative, anti-inflammatory interleukin-10, and M2-like macrophages, as well as the reduction of inflammatory cytokine TNFα and M1-like macrophages at the late inflammatory phase of burn wound healing, which provided the mechanistic insights associated with inflammation and macrophages in burn wounds. For the studied regimens of these treatments, no toxicity was identified to MSCs or mice. Our results indicate that MSC-seeded ACgels have potential use as a novel adjuvant therapy for severe burns to complement commonly used skin grafting and, thus, minimize the downsides of grafting.

摘要

严重烧伤是临床上面临的极具挑战性的问题之一,目前仍缺乏理想的治疗方法。将间充质干细胞(MSCs)与生物材料覆盖烧伤创面结合可能是一种可行的解决方案。在本报告中,我们将 MSCs 接种到一种可生物降解的杂化水凝胶 ACgel 上,该水凝胶由基于不饱和精氨酸的聚酯酰胺(UArg-PEA)和壳聚糖衍生物合成。MSCs 可以黏附在 ACgels 上。ACgels 在培养的第 6 天可以保持 MSCs 的高活力。在第 8 天(烧伤后 8 天),当烧伤创面的坏死全层皮肤被清创、填充并覆盖有 MSC 负载的 ACgels 后,MSC 接种到 ACgels 中可以很好地应用于小鼠的三度烧伤创面。MSC 接种到 ACgels 可以促进烧伤创面的闭合、再上皮化、肉芽组织形成和血管生成。单独的 ACgels 也可以促进血管生成,但效果不如 MSC 接种的 ACgels。MSC 接种的 ACgels 或单独的 ACgels 的作用涉及诱导修复、抗炎性白细胞介素 10 和 M2 样巨噬细胞,以及减少烧伤创面愈合的晚期炎症阶段的促炎细胞因子 TNFα 和 M1 样巨噬细胞,为烧伤创面的炎症和巨噬细胞提供了机制见解。对于这些治疗方案的研究,未发现对 MSCs 或小鼠有毒性。我们的结果表明,MSC 接种的 ACgels 具有作为严重烧伤的新型辅助治疗的潜力,以补充常用的皮肤移植,从而最大限度地减少移植的缺点。

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