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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Surface Engineered Metal-Organic Frameworks (MOFs) Based Novel Hybrid Systems for Effective Wound Healing: A Review of Recent Developments
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Surface Engineered Metal-Organic Frameworks (MOFs) Based Novel Hybrid Systems for Effective Wound Healing: A Review of Recent Developments

机译:基于表面设计的金属有机框架(MOF)用于有效伤口愈合的新型混合系统:近期发展的综述

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Wounds present serious medical complications and their healing requires strategies that promote angiogenesis, deposition of collagen as well as re-epithelialization of wounds. Currently used conventional wound healing strategies have become less effective due to various issues associated with them. Thus, novel strategies are needed to be developed for early and effective healing of wounds. Metal-organic frameworks (MOFs), formed by linking of metal ions through organic bridging ligands, are highly tunable hybrid materials and have attracted more considerable scientific attention due to their charming and prominent properties such as abundant pore structures and multiple functionalities. Surface engineering of MOFs with unique ligands can overcome issues associated with conventional wound healing methods, thus resulting in early and effective wound healing. This review has been undertaken to elaborate wound healing, and the use of surface engineered MOFs for effective and rapid wound healing. The process of wound healing will be discussed followed by a detailed review of recent literature for summarizing applications of surface engineered MOFs for wound healing. MOFs wound healing will be discussed in terms of their use as antibacterial agents, therapeutic delivery vehicles, and dressing systems in wound healing.
机译:伤口目前存在严重的医疗并发症,它们的愈合需要促进血管生成,胶原沉积以及伤口的再上皮化的策略。由于与他们相关的各种问题,目前使用的传统伤口愈合策略变得较低。因此,需要进行新的策略,以便为伤口的早期和有效愈合而开发。通过将金属离子通过有机桥接配体连接的金属有机框架(MOF)是高度可调的混合材料,并且由于它们的迷人和突出的孔隙结构和多种功能,因此引起了更大的科学关注。具有独特配体的MOF的表面工程可以克服与常规伤口愈合方法相关的问题,从而导致早期和有效的伤口愈合。本综述已经进行了精心制作伤口愈合,以及使用表面工程制造MOF用于有效和快速的伤口愈合。将讨论伤口愈合过程,然后对最近的文献进行了详细审查,总结了表面工程化MOF用于伤口愈合的应用。 MOFS伤口愈合将在其用作抗菌剂,治疗递送载体和伤口愈合的敷料系统方面进行讨论。

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