Laboratorio Clínica Dávila, Santiago de Chile, Chile.
Med Mycol. 2010 Dec;48(8):1018-23. doi: 10.3109/13693786.2010.486412. Epub 2010 May 20.
Chitosan is a natural polymer derived from chitin, a structural component of fungi, insects and shrimp, which exerts antimicrobial effects against bacteria and fungi. The aim of this study was to investigate the in vitro antifungal activity of low molecular weight chitosan (LMWC), and the potential synergy between chitosan and a currently used antifungal drug, fluconazole. The in vitro minimal inhibitory concentrations (MICs) of chitosan and fluconazole against 105 clinical Candida isolates were measured by the broth microdilution method. LMWC exhibited a significant antifungal activity, inhibiting over 89.9% of the clinical isolates examined (68.6% of which was completely inhibited). The species included several fluconazole-resistant strains and less susceptible species such as C. glabrata, which was inhibited at a concentration of 4.8 mg/l LMWC. Although some strains were susceptible at pH 7.0, a greater antifungal activity of LMWC was observed at pH 4.0. There was no evidence of a synergistic effect of the combination of LMWC and fluconazole at pH 7.0. This is the first report in which the antifungal activity of LMWC was investigated with clinical Candida strains. The use of LMWC as an antifungal compound opens new therapeutic perspectives, as the low toxicity of LMWC in humans supports its use in new applications in an environment of pH 4.0-4.5, such as a topical agent for vulvovaginal candidiasis.
壳聚糖是一种天然聚合物,来源于真菌、昆虫和虾的结构成分几丁质,对细菌和真菌具有抗菌作用。本研究旨在研究低分子量壳聚糖(LMWC)的体外抗真菌活性,以及壳聚糖与目前使用的抗真菌药物氟康唑之间的潜在协同作用。采用肉汤微量稀释法测定壳聚糖和氟康唑对 105 株临床念珠菌分离株的体外最小抑菌浓度(MIC)。LMWC 表现出显著的抗真菌活性,抑制了 89.9%以上的临床分离株(其中 68.6%完全被抑制)。这些物种包括一些氟康唑耐药株和较少敏感的物种,如 C. glabrata,其在 4.8mg/L LMWC 的浓度下被抑制。虽然一些菌株在 pH 7.0 时敏感,但在 pH 4.0 时 LMWC 的抗真菌活性更大。在 pH 7.0 时,LMWC 和氟康唑联合使用没有协同作用的证据。这是首次报道用临床念珠菌株研究 LMWC 的抗真菌活性。LMWC 作为一种抗真菌化合物的使用开辟了新的治疗前景,因为 LMWC 在人体中的低毒性支持其在 pH 4.0-4.5 环境中的新应用,如阴道念珠菌病的局部制剂。