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水凝胶/ 冰凝胶生物材料与针灸结合通过免疫调节促进糖尿病皮肤伤口愈合。

Cryogel/hydrogel biomaterials and acupuncture combined to promote diabetic skin wound healing through immunomodulation.

机构信息

Institute of Polymer Science and Engineering, National Taiwan University, Taipei, Taiwan, ROC.

School of Post-Baccalaureate Chinese Medicine, Tzu Chi University, Hualien, Taiwan, ROC.

出版信息

Biomaterials. 2021 Feb;269:120608. doi: 10.1016/j.biomaterials.2020.120608. Epub 2020 Dec 16.

Abstract

Unhealed chronic wounds often deteriorate into multiple infection with several kinds of bacteria and excessive proteolytic wound exudate and remains one of the common healthcare issues. Here, the functional and antimicrobial hydrogel and cryogel biomaterials were prepared from glycol chitosan and a novel biodegradable Schiff base crosslinker difunctional polyurethane (DF-PU). The cryogel exhibited ~2730 ± 400% of water absorption with abundant macropores and 86.5 ± 1.6% of porosity formed by ice crystal as well as ~240% cell proliferation effect; while the hydrogel demonstrated considerable antimicrobial activity and biodegradability. As an optimized procedure to treat the diabetic skin wound in a rat model, the combined application of adipose stem cell-seeded cryogel/hydrogel biomaterials on the wound and acupuncture surrounding the wound may attain 90.34 ± 2.3% of wound closure and secure the formation of granulation tissue with sufficient microvessels and complete re-epithelialization in 8 days. The average increases in the superficial temperature of wounded animals after acupuncture were about 1-2 °C. Through the activation of C3a and C5a, the increased secretion of cytokines SDF-1 and TGFβ-1, as well as the down-regulation of proinflammatory cytokines TNF-α and IL-1β, the combined treatment of stem cell-seeded cryogel/hydrogel biomaterials and acupuncture on wounds produced synergistic immunomodulatory effects. The strategy using the combined treatment of biomaterials, stem cells, and acupuncture reveals a perspective new approach to accelerate the tissue regeneration.

摘要

未愈合的慢性伤口常常恶化成多种细菌感染和过多的蛋白水解伤口渗出物,仍然是常见的医疗保健问题之一。在这里,从乙二醇壳聚糖和新型可生物降解的席夫碱双官能聚氨酯(DF-PU)制备了具有功能和抗菌作用的水凝胶和冷冻水凝胶生物材料。水凝胶具有2730±400%的吸水率,具有丰富的大孔和由冰晶形成的 86.5±1.6%的孔隙率以及240%的细胞增殖效果;而水凝胶则表现出相当的抗菌活性和生物降解性。作为一种优化的治疗糖尿病皮肤伤口的方法,在伤口上应用脂肪干细胞种植的冷冻水凝胶/水凝胶生物材料,并在伤口周围进行针刺,可达到 90.34±2.3%的伤口闭合率,并在 8 天内形成具有足够微血管和完全再上皮化的肉芽组织。针刺后受伤动物的表面温度平均升高约 1-2°C。通过 C3a 和 C5a 的激活,细胞因子 SDF-1 和 TGFβ-1 的分泌增加,以及促炎细胞因子 TNF-α 和 IL-1β 的下调,干细胞种植的冷冻水凝胶/水凝胶生物材料和针刺联合治疗对伤口产生协同的免疫调节作用。生物材料、干细胞和针刺联合治疗的策略揭示了一种加速组织再生的新方法。

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