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Continuous sheath-free separation of drug-treated human fungal pathogen Cryptococcus Neoformans by morphology in biocompatible polymer solutions

机译:在生物相容性聚合物溶液中通过形态连续无鞘分离药物处理的人类真菌病原体新隐球菌

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摘要

Cryptococcal meningitis caused by Cryptococcus neoformans is the leading cause of fungal central nervous system infections. Current antifungal treatments for cryptococcal infections are inadequate partly due to the occurrence of drug resistance. Recent studies indicate that the treatment of the azole drug fluconazole changes the morphology of C. neoformans to form enlarged “multimeras” that consist of three or more connected cells/buds. To analyze if these multimeric cells are a prerequisite for C. neoformans to acquire drug resistance, a tool capable of separating them from normal cells is critical. We extend our recently demonstrated sheath-free elasto-inertial particle separation technique to fractionate drug-treated C. neoformans cells by morphology in biocompatible polymer solutions. The separation performance is evaluated for both multimeric and normal cells in terms of three dimensionless metrics: efficiency, purity and enrichment ratio. The effects of flow rate, polymer concentration and microchannel height on cell separation are studied.
机译:新型隐球菌引起的隐球菌脑膜炎是真菌中枢神经系统感染的主要原因。当前用于隐球菌感染的抗真菌治疗是不充分的,部分是由于产生了耐药性。最近的研究表明,唑类药物氟康唑的治疗改变了新孢子虫的形态,形成了由三个或更多相连细胞/芽组成的扩大的“多聚体”。为了分析这些多聚体细胞是否是新孢梭菌获得耐药性的先决条件,一种能够将其与正常细胞分离的工具至关重要。我们扩展了我们最近证明的无鞘弹性惯性粒子分离技术,通过在生物相容性聚合物溶液中的形态来分离药物处理的新孢子虫细胞。根据三个无量纲指标评估多聚体和正常细胞的分离性能:效率,纯度和富集率。研究了流速,聚合物浓度和微通道高度对细胞分离的影响。

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