Haidari Hanif, Kopecki Zlatko, Sutton Adam T, Garg Sanjay, Cowin Allison J, Vasilev Krasimir
UniSA Clinical & Health Sciences, University of South Australia, Adelaide, SA 5000, Australia.
Future Industries Institute, University of South Australia, Mawson Lakes, SA 5095, Australia.
Antibiotics (Basel). 2021 Jan 5;10(1):49. doi: 10.3390/antibiotics10010049.
Persistent wound infections have been a therapeutic challenge for a long time. Current treatment approaches are mostly based on the delivery of antibiotics, but these are not effective for all infections. Here, we report the development of a sensitive pH-responsive hydrogel that can provide controlled, pH-triggered release of silver nanoparticles (AgNPs). This delivery system was designed to sense the environmental pH and trigger the release of AgNPs when the pH changes from acidic to alkaline, as occurs due to the presence of pathogenic bacteria in the wound. Our results show that the prepared hydrogel restricts the release of AgNPs at acidic pH (pH = 4) but substantially amplifies it at alkaline pH (pH = 7.4 and pH = 10). This indicates the potential use of the hydrogel for the on-demand release of Ag+ depending on the environmental pH. antibacterial studies demonstrated effective elimination of both Gram-negative and positive bacteria. Additionally, the effective antibacterial dose of Ag+ showed no toxicity towards mammalian skin cells. Collectively, this pH-responsive hydrogel presents potential as a promising new material for the treatment of infected wounds.
长期以来,持续性伤口感染一直是一个治疗难题。目前的治疗方法大多基于抗生素给药,但这些方法并非对所有感染都有效。在此,我们报告了一种灵敏的pH响应水凝胶的研发情况,该水凝胶能够实现银纳米颗粒(AgNPs)的可控、pH触发释放。这种给药系统旨在感知环境pH值,并在pH值从酸性变为碱性时触发AgNPs的释放,伤口中病原菌的存在会导致这种pH变化。我们的结果表明,制备的水凝胶在酸性pH(pH = 4)下限制AgNPs的释放,但在碱性pH(pH = 7.4和pH = 10)下会大幅增加其释放。这表明该水凝胶具有根据环境pH值按需释放Ag+的潜力。抗菌研究表明,该水凝胶能有效消除革兰氏阴性菌和革兰氏阳性菌。此外,Ag+的有效抗菌剂量对哺乳动物皮肤细胞无毒性。总体而言,这种pH响应水凝胶作为一种有前景的新材料,在治疗感染伤口方面具有潜力。