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首页> 外文期刊>Nature reviews Cancer >Impact of manganese on biofilm formation and cell morphology of Candida parapsilosis clinical isolates with different biofilm forming abilities
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Impact of manganese on biofilm formation and cell morphology of Candida parapsilosis clinical isolates with different biofilm forming abilities

机译:锰对不同生物膜形成能力的念珠菌患者临床分离株生物膜形成和细胞形态的影响

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The commensal species Candida parapsilosis is an emerging human pathogen that has the ability to form biofilms. In this study, we explored the impact of the divalent cations cobalt (Co2+), copper (Cu2+), iron (Fe3+), manganese (Mn2+), nickel (Ni2+) and zinc (Zn2+) on biofilm formation of clinical isolates of C. parapsilosis with no, low and high biofilm forming abilities at 30 and 37 degrees C. All strains besides one isolate showed a concentration-dependent enhancement of biofilm formation at 30 degrees C in the presence of Mn2+ with a maximum at 2 mM. The biofilm forming ability of no and low biofilm forming isolates was >2-fold enhanced in the presence of 2 mM Mn2+, while the effect in high biofilm forming isolate was significantly less pronounced. Of note, cells in the biofilms of no and low biofilm forming strains differentiated into yeast and pseudohyphal cells similar in morphology to high biofilm formers. The biofilm transcriptional activator BCR1 has a dual developmental role in the absence and presence of 2 mM Mn2+ as it promoted biofilm formation of no biofilm forming strains, and, surprisingly, suppressed cells of no biofilm forming strains to develop into pseudohyphae and/or hyphae. Thus, environmental conditions can significantly affect the amount of biofilm formation and cell morphology of C. parapsilosis with Mn2+ to overcome developmental blocks to trigger biofilm formation and to partially relieve BCR1 suppressed cell differentiation.
机译:共同物种念珠菌甲状腺素是一种新兴人类病原体,具有形成生物膜的能力。在本研究中,我们探讨了二价阳离子钴(CO2 +),铜(Cu2 +),铁(Fe3 +),锰(Mn2 +),镍(Ni2 +)和锌(Zn2 +)对C的生物膜形成的影响。在30和37摄氏度的NO,低和高生物膜形成能力的靶向途径除了一个分离物之外的所有菌株在MN2 +的存在下在30℃下在30℃下呈浓度依赖性增强Biofilm形成。在2mM MN2 +存在下,NO和低生物膜形成分离株的生物膜形成能力和低生物膜形成分离物的能力> 2倍,而在高生物膜形成分离物中的效果显着不太明显。值得注意的是,NO和低生物膜形成菌株的生物膜中的细胞分化为与高生物膜成型剂的形态相似的酵母和假胚细胞。生物膜转录活化剂BCR1在不存在和存在的情况下具有2mM MN2 +的存在双发育作用,因为它促进了无生物膜形成菌株的生物膜形成,并且令人惊讶的是,没有生物膜形成菌株的抑制细胞,以发展成假豚和/或菌株。因此,环境条件可以显着影响C.Parapsilosis的生物膜形成和细胞形态与MN2 +以克服发育块以引发生物膜形成,并部分地缓解BCR1抑制细胞分化。

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