Faculty of Pharmacy, The University of Lahore, Lahore, Pakistan.
Inorganic Chemistry Department, Faculty of Chemistry, Razi University, Kermanshah, Iran.
Drug Discov Today. 2023 Sep;28(9):103673. doi: 10.1016/j.drudis.2023.103673. Epub 2023 Jun 17.
Chronic wounds are ubiquitously inhabited by bacteria, and they remain a challenge as they cause significant discomfort and because their treatment consumes huge clinical resources. To reduce the burden that chronic wounds place upon both patients and health services, a wide variety of approaches have been devised and investigated. Bioinspired nanomaterials have shown great success in wound healing when compared to existing approaches, showing better ability to mimic natural extracellular matrix (ECM) components and thus to promote cell adhesion, proliferation, and differentiation. Wound dressings that are based on bioinspired nanomaterials can be engineered to promote anti-inflammatory mechanisms and to inhibit the formation of microbial biofilms. We consider the extensive potential of bioinspired nanomaterials in wound healing, revealing a scope beyond that covered previously.
慢性创面普遍存在细菌感染,给患者带来极大不适,且治疗耗费大量临床资源,这仍是一个挑战。为了减轻慢性创面给患者和医疗服务带来的负担,人们设计并研究了多种方法。与现有方法相比,仿生纳米材料在创面愈合方面取得了巨大成功,它们更好地模拟了天然细胞外基质(ECM)成分,从而促进细胞黏附、增殖和分化。基于仿生纳米材料的创面敷料可以被设计成促进抗炎机制,并抑制微生物生物膜的形成。我们认为仿生纳米材料在创面愈合方面具有广泛的应用潜力,其应用范围超出了之前的研究。