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Protective nature of low molecular weight chitosan in a chitosan-Amphotericin B nanocomplex - A physicochemical study

机译:低分子量壳聚糖在壳聚糖-两性霉素B纳米复合物中的保护性质-物理化学研究

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摘要

Chitosan, a biopolymer of immense potential, has been well-explored over the past decade in the biomedical field. Despite its numerous biological properties like anti-microbial, anti-inflammatory, anti-diabetic etc., limited studies have been conducted on its ability to protect therapeutic molecules in nano-formulations. Amphotericin B (AMP) is one such therapeutic molecule which requires protection as it possesses inherent limitations of poor water-solubility, susceptibility to oxidation- and/or light-induced degradation etc. Although AMP formulations have been quite successful in treating chronic fungal infections, their high cost, prolonged nature of therapy and instability over longer durations has necessitated the development of alternative carriers. In the present study, a stable nanoparticulate formulation was successfully prepared using low molecular weight chitosan and the anti-fungal agent AMP and this was found to offer protection to the labile AMP. The developed nanocomplexes could prevent degradation of AMP up to six months, in solution form, unlike the native drug which degraded in <24 h. Antifungal studies of the developed nanocomplexes revealed a surface charge-dependent antifungal activity. Furthermore, the nanocomplexes did not affect the viability of mammalian cells and showed excellent intracellular uptake and retention, and hence suggested potential of the nanocomplexes in alleviating systemic fungal infections.
机译:壳聚糖是一种具有巨大潜力的生物聚合物,在过去的十年中在生物医学领域得到了广泛的研究。尽管其具有多种抗微生物,抗炎,抗糖尿病等生物学特性,但对其在纳米制剂中保护治疗性分子的能力进行了有限的研究。两性霉素B(AMP)是一种需要保护的治疗分子,因为其固有的局限性包括水溶性差,易受氧化和/或光诱导的降解等作用。尽管AMP制剂在治疗慢性真菌感染方面非常成功,它们的高成本,长期的治疗性质以及较长时间的不稳定性使得必须开发替代载体。在本研究中,使用低分子量壳聚糖和抗真菌剂AMP成功制备了稳定的纳米颗粒制剂,发现该制剂可为不稳定的AMP提供保护。所开发的纳米复合物可以以溶液形式防止AMP降解长达六个月,这与天然药物在<24 h内降解不同。对已开发的纳米复合物的抗真菌研究表明,表面电荷依赖性抗真菌活性。此外,纳米复合物不影响哺乳动物细胞的生存力,并且表现出优异的细胞内摄取和保留,因此表明纳米复合物在减轻全身性真菌感染中具有潜力。

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