Curcumin-loaded gold nanoparticles with enhanced antibacterial efficacy and wound healing properties in diabetic rats

IF 5.3 2区 医学 Q1 PHARMACOLOGY & PHARMACY International Journal of Pharmaceutics Pub Date : 2024-09-25 DOI:10.1016/j.ijpharm.2024.124761
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Abstract

Diabetic wounds pose a significant global health challenge. Although curcumin exhibits promising wound healing and antibacterial properties, its clinical potential is limited by low aqueous solubility, and poor tissue penetration. This study aimed to address these challenges and enhance the wound healing efficacy of curcumin by loading it onto gold nanoparticles (AuNPs). The properties of the AuNPs, including particle size, polydispersity index (PDI), zeta potential, percent drug entrapment efficiency (%EE) and UV–Vis spectra were significantly influenced by the curcumin/gold chloride molar ratio used in the synthesis of AuNPs. The optimal formulation (F2) exhibited the smallest particle size (41.77 ± 6.8 nm), reasonable PDI (0.59 ± 0.17), high %EE (94.43 ± 0.25 %), a moderate zeta potential (−8.44 ± 1.69 mV), and a well-defined surface Plasmon resonance peak at 526 nm. Formulation F2 was incorporated into Pluronic® F127 gel to facilitate its application to the skin. Both curcumin AuNPs solution and gel showed sustained drug release and higher skin permeation parameters compared with the free drug solution. AuNPs significantly enhanced curcumin’s antibacterial efficacy by lowering the minimum inhibitory concentrations and enhancing antibacterial biofilm activity against various Gram-positive and Gram-negative bacterial strains. In a diabetic wound rat model, AuNPs-loaded curcumin exhibited superior wound healing attributes compared to the free drug. Specifically, it demonstrated improved wound healing percentage, reduced wound oxidative stress, increased wound collagen deposition, heightened anti-inflammatory effects, and enhanced angiogenesis. These findings underscore the potential of AuNPs as efficacious delivery systems of curcumin for improved wound healing applications.
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姜黄素负载的金纳米粒子增强了糖尿病大鼠的抗菌效果和伤口愈合特性。
糖尿病伤口对全球健康构成重大挑战。虽然姜黄素具有良好的伤口愈合和抗菌特性,但由于水溶性低和组织渗透性差,其临床潜力受到限制。本研究旨在应对这些挑战,通过将姜黄素载入金纳米粒子(AuNPs)来增强其伤口愈合功效。合成过程中使用的姜黄素/氯化金摩尔比对 AuNPs 的粒度、多分散指数(PDI)、ZETA 电位、药物夹带率(%EE)和紫外可见光谱等特性有显著影响。最佳配方(F2)显示出最小的粒度(41.77 ± 6.8 nm)、合理的 PDI(0.59 ± 0.17)、高 %EE(94.43 ± 0.25 %)、适中的 zeta 电位(-8.44 ± 1.69 mV)和 526 nm 处清晰的表面等离子共振峰。配方 F2 加入了 Pluronic® F127 凝胶,以便于在皮肤上使用。与游离药物溶液相比,姜黄素 AuNPs 溶液和凝胶都显示出持续的药物释放和更高的皮肤渗透参数。AuNPs 能明显增强姜黄素的抗菌功效,降低最低抑菌浓度,增强对各种革兰氏阳性和革兰氏阴性细菌菌株的抗菌生物膜活性。在糖尿病大鼠伤口模型中,与游离药物相比,AuNPs 负载姜黄素显示出更优越的伤口愈合特性。具体来说,它提高了伤口愈合率,降低了伤口氧化应激,增加了伤口胶原沉积,增强了抗炎效果,并促进了血管生成。这些发现强调了 AuNPs 作为姜黄素有效递送系统在改善伤口愈合应用方面的潜力。
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来源期刊
CiteScore
10.70
自引率
8.60%
发文量
951
审稿时长
72 days
期刊介绍: The International Journal of Pharmaceutics is the third most cited journal in the "Pharmacy & Pharmacology" category out of 366 journals, being the true home for pharmaceutical scientists concerned with the physical, chemical and biological properties of devices and delivery systems for drugs, vaccines and biologicals, including their design, manufacture and evaluation. This includes evaluation of the properties of drugs, excipients such as surfactants and polymers and novel materials. The journal has special sections on pharmaceutical nanotechnology and personalized medicines, and publishes research papers, reviews, commentaries and letters to the editor as well as special issues.
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