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负载氧化钇纳米颗粒的自组装肽凝胶具有抗菌、抗炎和促血管生成特性,用于伤口愈合。

Yttrium Oxide Nanoparticle-Loaded, Self-Assembled Peptide Gel with Antibacterial, Anti-Inflammatory, and Proangiogenic Properties for Wound Healing.

作者信息

Chawla Vatan, Sharma Sakshi, Singh Yashveer

机构信息

Department of Chemistry, Indian Institute of Technology Ropar, Rupnagar, Punjab 140001, India.

出版信息

ACS Biomater Sci Eng. 2023 May 8;9(5):2647-2662. doi: 10.1021/acsbiomaterials.3c00134. Epub 2023 Apr 25.

Abstract

Chronic wounds are a major healthcare challenge owing to their complex healing mechanism and number of impediments to the healing process, like infections, unregulated inflammation, impaired cellular functions, poor angiogenesis, and enhanced protease activity. Current topical care strategies, such as surgical debridement, absorption of exudates, drug-loaded hydrogels for infection and inflammation management, and exogenous supply of growth factors for angiogenesis and cell proliferation, slow the progression of wounds and reduce patient suffering but suffer from low overall cure rates. Therefore, we have developed a proteolytically stable, multifunctional nanoparticle loaded-peptide gel with inherent anti-inflammatory, antibacterial, and pro-angiogenic properties to provide a favorable wound healing milieu by restoring impaired cellular functions. We have fabricated a self-assembled, lauric acid-peptide conjugate gel, LA-Lys-Phe-Lys-NH, loaded with yttrium oxide (YO) nanoparticles (NLG). Gel formed a nanofibrous structure, and nanoparticles were passively entrapped within the network. The surface morphology, stability, viscoelastic, and self-healing characteristics of gels were characterized. It showed a high stability against degradation by proteolytic enzymes and highly potent antibacterial activities against and due to the presence of positively charged side chains of lysine in the peptide chain. It also exhibited an excellent antioxidant activity as well as ability to stimulate cell proliferation in murine fibroblast (L929) cells and human umbilical vein endothelial cells (HUVECs). The incorporation of nanoparticles promoted angiogenesis by upregulating pro-angiogenic genes, vascular endothelial growth factor (VEGF), fibroblast growth factor (FGF2), and epidermal growth factor (EGFR), and the gel caused complete wound closure in cells. In summary, the YO nanoparticle-loaded lauric acid-peptide conjugate gel is able to elicit the desired tissue regeneration responses and, therefore, has a strong potential as a matrix for the treatment of chronic wounds.

摘要

慢性伤口是一项重大的医疗挑战,因为其愈合机制复杂,且愈合过程存在诸多阻碍因素,如感染、炎症失控、细胞功能受损、血管生成不良以及蛋白酶活性增强等。当前的局部护理策略,如手术清创、渗出液吸收、用于感染和炎症管理的载药水凝胶,以及用于血管生成和细胞增殖的生长因子外源供应,虽能减缓伤口进展并减轻患者痛苦,但总体治愈率较低。因此,我们开发了一种具有蛋白水解稳定性的多功能纳米颗粒负载肽凝胶,其具有内在的抗炎、抗菌和促血管生成特性,通过恢复受损的细胞功能来提供有利的伤口愈合环境。我们制备了一种自组装的月桂酸 - 肽共轭凝胶,LA - Lys - Phe - Lys - NH,负载氧化钇(YO)纳米颗粒(NLG)。凝胶形成了纳米纤维结构,纳米颗粒被动地包埋在网络中。对凝胶的表面形态、稳定性、粘弹性和自愈特性进行了表征。由于肽链中赖氨酸带正电荷的侧链,它对蛋白水解酶的降解具有高稳定性,对金黄色葡萄球菌和大肠杆菌具有高效的抗菌活性。它还表现出优异的抗氧化活性以及刺激小鼠成纤维细胞(L929)和人脐静脉内皮细胞(HUVEC)增殖的能力。纳米颗粒的掺入通过上调促血管生成基因、血管内皮生长因子(VEGF)、成纤维细胞生长因子(FGF2)和表皮生长因子(EGFR)促进血管生成,并且该凝胶使细胞中的伤口完全闭合。总之,负载YO纳米颗粒的月桂酸 -肽共轭凝胶能够引发所需的组织再生反应,因此作为治疗慢性伤口的基质具有很大潜力。

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