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Candida albicans enhances initial biofilm growth of Cutibacterium acnes under aerobic conditions

机译:Candida albicans在有氧条件下增强了Cifbacterium Acnes的初始生物膜生长

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摘要

Candida albicans and Cutibacterium acnes are opportunistic pathogens that co-colonize the human body. They are involved in biofilm-related infections of implanted medical devices. The objective of this study was to evaluate the ability of these species to interact and form polymicrobial biofilms. SEM imaging and adhesion assays showed that C. acnes adhesion to C. albicans did not have a preference for a specific morphological state of C. albicans; bacteria adhered to both hyphal and yeast forms of C. albicans. C. albicans did not influence growth of C. acnes under anaerobic growth conditions, however under aerobic growth condition, C. albicans enhanced early C. acnes biofilm formation. This favorable impact of C. albicans was not mediated by secreted compounds accumulating in the medium, but required the presence of metabolically active C. albicans. The ability of these microorganisms to interact together could modulate the physiopathology of infections.
机译:念珠菌肽和Cifbacterium Acnes是机会主义的病原体,其共同殖民。它们参与了植入医疗装置的生物膜相关感染。本研究的目的是评估这些物种相互作用和形成多元化生物膜的能力。 SEM成像和粘合测定显示C. Acnes对C. albnes的粘附性对C. albicans的粘附性没有偏好于敏感的C. albicans的特定形态状态;细菌粘附在菌丝和酵母形式的C. albicans。 C. albicans在厌氧生长条件下没有影响C. Acnes的生长,然而在有氧生长条件下,C. albicans增强了痤疮丙纳生物膜的形成。对于在培养基中积累的分泌化合物而不是通过分泌的分泌化合物来介导的这种有利的影响,而是需要存在代谢活性C. albicans的存在。这些微生物共同相互作用的能力可以调节感染的地质病理学。

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