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替考拉宁修饰的还原氧化石墨烯复合丝素蛋白杂化水凝胶用于加速感染性糖尿病创面愈合和预防糖尿病足骨髓炎。

Teicoplanin-Decorated Reduced Graphene Oxide Incorporated Silk Protein Hybrid Hydrogel for Accelerating Infectious Diabetic Wound Healing and Preventing Diabetic Foot Osteomyelitis.

机构信息

Innovation Research Center for AIE Pharmaceutical Biology, Guangzhou Municipal and Guangdong Provincial Key Laboratory of Molecular Target and Clinical Pharmacology, The NMPA and State Key Laboratory of Respiratory Disease, School of Pharmaceutical Sciences and The Fifth Affiliated Hospital, Guangzhou Medical University, Guangzhou, 511436, China.

Department of Biomedical Engineering, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, P. R. China.

出版信息

Adv Healthc Mater. 2024 Aug;13(20):e2304572. doi: 10.1002/adhm.202304572. Epub 2024 May 5.

Abstract

Developing hybrid hydrogel dressings with anti-inflammatory, antioxidant, angiogenetic, and antibiofilm activities with higher bone tissue penetrability to accelerate diabetic wound healing and prevent diabetic foot osteomyelitis (DFO) is highly desirable in managing diabetic wounds. Herein, the glycopeptide teicoplanin is used for the first time as a green reductant to chemically reduce graphene oxide (GO). The resulting teicoplanin-decorated reduced graphene oxide (rGO) is incorporated into a mixture of silk proteins (SP) and crosslinked with genipin to yield a physicochemically crosslinked rGO-SP hybrid hydrogel. This hybrid hydrogel exhibits high porosity, self-healing, shear-induced thinning, increased cell proliferation and migration, and mechanical properties suitable for tissue engineering. Moreover, the hybrid hydrogel eradicates bacterial biofilms with a high penetrability index in agar and hydroxyapatite disks covered with biofilms, mimicking bone tissue. In vivo, the hybrid hydrogel accelerates the healing of noninfected wounds in a diabetic rat and infected wounds in a diabetic mouse by upregulating anti-inflammatory cytokines and downregulating matrix metalloproteinase-9, promoting M2 macrophage polarization and angiogenesis. The implantation of hybrid hydrogel into the infected site of mouse tibia improves bone regeneration. Hence, the rGO-SP hybrid hydrogel can be a promising wound dressing for treating infectious diabetic wounds, providing a further advantage in preventing DFO.

摘要

开发具有抗炎、抗氧化、血管生成和抗细菌生物膜活性且组织穿透能力更高的混合水凝胶敷料,以加速糖尿病伤口愈合并预防糖尿病足骨髓炎(DFO),这在糖尿病伤口管理中是非常需要的。本文首次使用糖肽替考拉宁作为绿色还原剂对氧化石墨烯(GO)进行化学还原。所得的替考拉宁修饰的还原氧化石墨烯(rGO)被掺入丝蛋白(SP)混合物中,并与京尼平交联,得到物理化学交联的 rGO-SP 混合水凝胶。该混合水凝胶具有高孔隙率、自修复、剪切诱导变薄、增加细胞增殖和迁移以及适合组织工程的机械性能。此外,该混合水凝胶具有高穿透指数,能够消除琼脂和覆盖有生物膜的羟基磷灰石盘上的细菌生物膜,模拟骨组织。在体内,混合水凝胶通过上调抗炎细胞因子和下调基质金属蛋白酶-9,促进 M2 巨噬细胞极化和血管生成,加速非感染性糖尿病大鼠和感染性糖尿病小鼠伤口的愈合。将混合水凝胶植入小鼠胫骨感染部位可改善骨再生。因此,rGO-SP 混合水凝胶有望成为治疗感染性糖尿病伤口的新型伤口敷料,在预防 DFO 方面具有进一步的优势。

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