Department of Chemistry, University of Massachusetts Amherst, 710 North Pleasant Street, Amherst, Massachusetts 01003, USA.
Mater Horiz. 2021 Jun 1;8(6):1776-1782. doi: 10.1039/d0mh01826k. Epub 2021 Mar 18.
Bacterial wound infections are a threat to public health. Although antibiotics currently provide front-line treatments for bacterial infections, the development of drug resistance coupled with the defenses provided through biofilm formation render these infections difficult, if not impossible, to cure. Antimicrobials from natural resources provide unique antimicrobial mechanisms and are generally recognized as safe and sustainable. Herein, an all-natural antimicrobial platform is reported. It is active against bacterial biofilms and accelerates healing of wound biofilm infections . This antimicrobial platform uses gelatin stabilized by photocrosslinking using riboflavin (vitamin B) as a photocatalyst, and carvacrol (the primary constituent of oregano oil) as the active antimicrobial. The engineered nanoemulsions demonstrate broad-spectrum antimicrobial activity towards drug-resistant bacterial biofilms and significantly expedite wound healing in an murine wound biofilm model. The antimicrobial activity, wound healing promotion, and biosafety of these nanoemulsions provide a readily translatable and sustainable strategy for managing wound infections.
细菌引起的伤口感染对公众健康构成威胁。虽然抗生素目前是治疗细菌感染的一线药物,但耐药性的发展以及生物膜形成提供的防御机制使得这些感染难以治愈。天然资源来源的抗菌药物提供了独特的抗菌机制,通常被认为是安全且可持续的。本文报道了一种全天然的抗菌平台。它对细菌生物膜具有活性,并能加速伤口生物膜感染的愈合。该抗菌平台使用核黄素(维生素 B)作为光催化剂稳定的明胶,并使用香芹酚(牛至油的主要成分)作为活性抗菌药物。所设计的纳米乳液对耐药性细菌生物膜表现出广谱抗菌活性,并在鼠类伤口生物膜模型中显著加速伤口愈合。这些纳米乳液的抗菌活性、促进伤口愈合和生物安全性为管理伤口感染提供了一种易于转化和可持续的策略。