Synergistic bactericidal effect of antimicrobial peptides and copper sulfide-loaded zeolitic imidazolate framework-8 nanoparticles with photothermal therapy

IF 4.4 2区 医学 Q1 PHARMACOLOGY & PHARMACY
Duoduo Zhang , Shiyue Bie , Mhd Anas Tomeh , Xinyu Zhang , Xiubo Zhao
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Abstract

Antimicrobial resistance (AMR) has emerged as a significant threat to human health. Antimicrobial peptides (AMPs) have proven to be an effective strategy against antibiotic-resistant bacteria, given their capacity to swiftly disrupt microorganism membranes and alter cell morphology. A common limitation, however, lies in the inherent toxicity of many AMPs and their vulnerability to protease degradation within the body. Photothermal therapy (PTT) stands out as a widely utilized approach in combating antibiotic-resistant bacterial infections, boasting high efficiency and non-invasive benefits. To enhance the stability and antibacterial efficacy of AMPs, a novel approach involving the combination of AMPs and PTT has been proposed. This study focuses on the encapsulation of At10 (an AMP designed by our group), and copper sulfide nanoparticles (CuS NPs) within zeolitic imidazolate framework-8 (ZIF-8) to form nanocomposites (At10/CuS@ZIF-8). The encapsulated CuS NPs exhibit notable photothermal properties upon exposure to near-infrared radiation. This induces the cleavage of ZIF-8, facilitating the release of At10, which effectively targets bacterial membranes to exert its antibacterial effects. Bacteria treated with At10/CuS@ZIF-8 under light radiation exhibited not only membrane folding and intracellular matrix outflow but also bacterial fracture. This synergistic antibacterial strategy, integrating the unique properties of AMPs, CuS NPs, and pH responsiveness of ZIF-8, holds promising potential for widespread application in the treatment of bacterial infections.

Abstract Image

抗菌肽和硫化铜负载沸石咪唑啉框架-8 纳米粒子与光热疗法的协同杀菌效果。
抗生素耐药性(AMR)已成为人类健康的重大威胁。抗菌肽(AMPs)能够迅速破坏微生物膜并改变细胞形态,因此已被证明是对付抗生素耐药性细菌的有效策略。然而,许多 AMPs 本身具有毒性,而且容易在体内被蛋白酶降解,这是它们的一个共同局限。光热疗法(PTT)是一种广泛应用于抗击抗生素耐药细菌感染的方法,具有高效、非侵入性等优点。为了提高 AMPs 的稳定性和抗菌功效,有人提出了一种将 AMPs 和 PTT 结合使用的新方法。本研究的重点是将 At10(本研究组设计的一种 AMP)和硫化铜纳米粒子(CuS NPs)封装在沸石咪唑啉框架-8(ZIF-8)中,形成纳米复合材料(At10/CuS@ZIF-8)。封装的 CuS NPs 在暴露于近红外辐射时会表现出显著的光热特性。这诱导了 ZIF-8 的裂解,促进了 At10 的释放,而 At10 能有效地针对细菌膜发挥抗菌作用。在光辐射下,用 At10/CuS@ZIF-8 处理的细菌不仅表现出膜折叠和胞内基质外流,还表现出细菌断裂。这种协同抗菌策略综合了 AMPs、CuS NPs 的独特性质和 ZIF-8 的 pH 响应性,有望广泛应用于细菌感染的治疗。
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来源期刊
CiteScore
8.80
自引率
4.10%
发文量
211
审稿时长
36 days
期刊介绍: The European Journal of Pharmaceutics and Biopharmaceutics provides a medium for the publication of novel, innovative and hypothesis-driven research from the areas of Pharmaceutics and Biopharmaceutics. Topics covered include for example: Design and development of drug delivery systems for pharmaceuticals and biopharmaceuticals (small molecules, proteins, nucleic acids) Aspects of manufacturing process design Biomedical aspects of drug product design Strategies and formulations for controlled drug transport across biological barriers Physicochemical aspects of drug product development Novel excipients for drug product design Drug delivery and controlled release systems for systemic and local applications Nanomaterials for therapeutic and diagnostic purposes Advanced therapy medicinal products Medical devices supporting a distinct pharmacological effect.
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