Department of Biotechnology, Alagappa University, Karaikudi, India.
AAPS J. 2024 Jun 11;26(4):67. doi: 10.1208/s12248-024-00936-4.
Addressing the intertwined challenges of antimicrobial resistance and impaired wound healing in diabetic patients, an oil/water emulsion-based nano-ointment integrating phenylpropanoids-Eugenol and Cinnamaldehyde-with positively-charged silver nanoparticles was synthesized. The process began with the synthesis and characterization of nano-silver, aimed at ensuring the effectiveness and safety of the nanoparticles in biological applications. Subsequent experiments determined the minimum inhibitory concentration (MIC) against pathogens such as Streptococcus aureus, Pseudomonas aeruginosa and Candida albicans. These MIC values of all three active leads guided the strategic formulation of an ointment base, which effectively integrated the bioactive components. Evaluations of this nano-ointment revealed enhanced antimicrobial activity against both clinical and reference bacterial strains and it maintained stability after freeze-thaw cycles. Furthermore, the ointment demonstrated superior in-vitro diabetic wound healing capabilities and significantly promoted angiogenesis, as shown by enhanced blood vessel formation in the Chorioallantoic Membrane assay. These findings underscore the formulation's therapeutic potential, marking a significant advance in the use of nanotechnology for topical wound care.
针对糖尿病患者中存在的抗菌药物耐药性和伤口愈合受损这两个相互交织的挑战,我们合成了一种基于油/水乳液的纳米软膏,其中整合了苯丙素 - 丁香酚和肉桂醛 - 与带正电荷的纳米银颗粒。该过程首先合成和表征纳米银,旨在确保纳米颗粒在生物应用中的有效性和安全性。随后的实验确定了纳米银对金黄色葡萄球菌、铜绿假单胞菌和白色念珠菌等病原体的最小抑菌浓度(MIC)。这三种活性先导物的所有 MIC 值都指导了软膏基质的战略配方,有效地整合了生物活性成分。对这种纳米软膏的评估表明,它对临床和参考细菌菌株都具有增强的抗菌活性,并且在经过冻融循环后仍保持稳定。此外,该软膏在体外糖尿病伤口愈合方面表现出优异的性能,并且通过在鸡胚绒毛尿囊膜试验中增强血管生成,显著促进了血管形成。这些发现强调了该制剂的治疗潜力,标志着纳米技术在局部伤口护理中的应用取得了重大进展。