Zia Qamar, Khan Aijaz Ahmed, Swaleha Zubair, Owais Mohammad
Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh, India.
Department of Anatomy, Aligarh Muslim University, Aligarh, India.
Int J Nanomedicine. 2015 Mar 5;10:1769-90. doi: 10.2147/IJN.S63155. eCollection 2015.
In the present study, we developed a self-assembled biodegradable polyglutamic acid (PGA)-based formulation of amphotericin B (AmB) and evaluated its in vitro antifungal potential against Candida albicans. The AmB-loaded PGA nanoparticles were prepared in-house and had a mean size dimension of around 98±2 nm with a zeta potential of -35.2±7.3 mV. Spectroscopic studies revealed that the drug predominantly acquires an aggregated form inside the formulation with an aggregation ratio above 2. The PGA-based AmB formulation was shown to be highly stable in phosphate-buffered saline as well as in serum (only 10%-20% of the drug was released after 10 days). The AmB-PGA nanoparticles were less toxic to red blood cells (<15% lysis at an AmB concentration of 100 μg/mL after 24 hours) when compared with Fungizone(®), a commercial antifungal product. An MTT assay showed that the viability of mammalian cells (KB and RAW 264.7) was negligibly affected at AmB concentrations as high as 200 μg/mL. Histopathological examination of mouse kidney revealed no signs of tissue necrosis. The AmB-PGA formulation showed potent antimicrobial activity similar to that of Fungizone against C. albicans. Interestingly, AmB-bearing PGA nanoparticles were found to inhibit biofilm formation to a considerable extent. In summary, AmB-PGA nanoparticles showed highly attenuated toxicity when compared with Fungizone, while retaining equivalent active antifungal properties. This study indicates that the AmB-PGA preparation could be a promising treatment for various fungal infections.
在本研究中,我们开发了一种基于自组装可生物降解聚谷氨酸(PGA)的两性霉素B(AmB)制剂,并评估了其对白色念珠菌的体外抗真菌潜力。载有AmB的PGA纳米颗粒是在内部制备的,平均尺寸约为98±2 nm,ζ电位为-35.2±7.3 mV。光谱研究表明,药物在制剂中主要以聚集形式存在,聚集率高于2。基于PGA的AmB制剂在磷酸盐缓冲盐水以及血清中显示出高度稳定性(10天后仅释放10%-20%的药物)。与商业抗真菌产品Fungizone(®)相比,AmB-PGA纳米颗粒对红细胞的毒性较小(在24小时后,AmB浓度为100 μg/mL时溶血率<15%)。MTT分析表明,在高达200 μg/mL的AmB浓度下,哺乳动物细胞(KB和RAW 264.7)的活力受到的影响可忽略不计。小鼠肾脏的组织病理学检查未发现组织坏死迹象。AmB-PGA制剂对白色念珠菌显示出与Fungizone相似的强效抗菌活性。有趣的是,发现载有AmB的PGA纳米颗粒在很大程度上抑制生物膜形成。总之,与Fungizone相比,AmB-PGA纳米颗粒的毒性大大降低,同时保留了同等的抗真菌活性。本研究表明,AmB-PGA制剂可能是治疗各种真菌感染的一种有前景的疗法。