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细菌脂多糖可改变念珠菌属体外生物膜形成。

Bacterial lipopolysaccharides variably modulate in vitro biofilm formation of Candida species.

机构信息

Oral Biosciences, Faculty of Dentistry, University of Hong Kong, 5/F Prince Philip Dental Hospital, 34 Hospital Road, Sai Ying Pun, Hong Kong SAR.

Oral Rehabilitation, Faculty of Dentistry, University of Hong Kong, Sai Ying Pun, Hong Kong SAR.

出版信息

J Med Microbiol. 2010 Oct;59(Pt 10):1225-1234. doi: 10.1099/jmm.0.021832-0. Epub 2010 Jun 24.

Abstract

The objective of this study was to evaluate the effect of the bacterial endotoxin LPS on Candida biofilm formation in vitro. The effect of the LPS of Pseudomonas aeruginosa, Klebsiella pneumoniae, Serratia marcescens and Salmonella typhimurium on six different species of Candida, comprising Candida albicans ATCC 90028, Candida glabrata ATCC 90030, Candida krusei ATCC 6258, Candida tropicalis ATCC 13803, Candida parapsilosis ATCC 22019 and Candida dubliniensis MYA 646, was studied using a standard biofilm assay. The metabolic activity of in vitro Candida biofilms treated with LPS at 90 min, 24 h and 48 h was quantified by XTT reduction assay. Viable biofilm-forming cells were qualitatively analysed using confocal laser scanning microscopy (CLSM), while scanning electron microscopy (SEM) was employed to visualize the biofilm structure. Initially, adhesion of C. albicans was significantly stimulated by Pseudomonas and Klebsiella LPS. A significant inhibition of Candida adhesion was noted for the following combinations: C. glabrata with Pseudomonas LPS, C. tropicalis with Serratia LPS, and C. glabrata, C. parapsilosis or C. dubliniensis with Salmonella LPS (P<0.05). After 24 h of incubation, a significant stimulation of initial colonization was noted for the following combinations: C. albicans/C. glabrata with Klebsiella LPS, C. glabrata/C. tropicalis/C. krusei with Salmonella LPS. In contrast, a significant inhibition of biofilm formation was observed in C. glabrata/C. dubliniensis/C. krusei with Pseudomonas LPS, C. krusei with Serratia LPS, C. dubliniensis with Klebsiella LPS and C. parapsilosis/C. dubliniensis /C. krusei with Salmonella LPS (P<0.05). On further incubation for 48 h, a significant enhancement of biofilm maturation was noted for the following combinations: C. glabrata/C. tropicalis with Serratia LPS, C. dubliniensis with Klebsiella LPS and C. glabrata with Salmonella LPS, and a significant retardation was noted for C. parapsilosis/C. dubliniensis/C. krusei with Pseudomonas LPS, C. tropicalis with Serratia LPS, C. glabrata/C. parapsilosis/C. dubliniensis with Klebsiella LPS and C. dubliniensis with Salmonella LPS (P<0.05). These findings were confirmed by SEM and CLSM analyses. In general, the inhibition of the biofilm development of LPS-treated Candida spp. was accompanied by a scanty architecture with a reduced numbers of cells compared with the profuse and densely colonized control biofilms. These data are indicative that bacterial LPSs modulate in vitro Candida biofilm formation in a species-specific and time-dependent manner. The clinical and the biological relevance of these findings have yet to be explored.

摘要

本研究旨在评估细菌内毒素 LPS 对体外念珠菌生物膜形成的影响。采用标准生物膜测定法研究了铜绿假单胞菌、肺炎克雷伯菌、粘质沙雷氏菌和鼠伤寒沙门氏菌 LPS 对 6 种不同念珠菌(白色念珠菌 ATCC 90028、近平滑念珠菌 ATCC 90030、克柔念珠菌 ATCC 6258、热带念珠菌 ATCC 13803、近平滑念珠菌 ATCC 22019 和都柏林念珠菌 MYA 646)的影响。用 XTT 还原测定法在 90 分钟、24 小时和 48 小时测量 LPS 处理的体外念珠菌生物膜的代谢活性。使用共聚焦激光扫描显微镜 (CLSM) 定性分析活菌生物膜形成细胞,而扫描电子显微镜 (SEM) 用于观察生物膜结构。最初,铜绿假单胞菌和肺炎克雷伯菌 LPS 显著刺激白色念珠菌的黏附。以下组合中观察到念珠菌黏附的显著抑制:与铜绿假单胞菌 LPS 的光滑念珠菌、与粘质沙雷氏菌 LPS 的热带念珠菌,以及与沙门氏菌 LPS 的光滑念珠菌、近平滑念珠菌或都柏林念珠菌(P<0.05)。孵育 24 小时后,以下组合中观察到初始定植的显著刺激:与肺炎克雷伯菌 LPS 的白色念珠菌/光滑念珠菌、与沙门氏菌 LPS 的光滑念珠菌/热带念珠菌/克柔念珠菌(P<0.05)。相反,与铜绿假单胞菌 LPS 的光滑念珠菌/都柏林念珠菌/克柔念珠菌、与粘质沙雷氏菌 LPS 的克柔念珠菌、与沙门氏菌 LPS 的都柏林念珠菌、与肺炎克雷伯菌 LPS 的近平滑念珠菌、与沙门氏菌 LPS 的近平滑念珠菌和都柏林念珠菌的生物膜形成显著抑制(P<0.05)。进一步孵育 48 小时后,与粘质沙雷氏菌 LPS 的光滑念珠菌/热带念珠菌、与沙门氏菌 LPS 的都柏林念珠菌、与沙门氏菌 LPS 的光滑念珠菌中观察到生物膜成熟的显著增强,与铜绿假单胞菌 LPS 的近平滑念珠菌/都柏林念珠菌/克柔念珠菌、与粘质沙雷氏菌 LPS 的热带念珠菌、与肺炎克雷伯菌 LPS 的光滑念珠菌/近平滑念珠菌/都柏林念珠菌和与沙门氏菌 LPS 的都柏林念珠菌的生物膜成熟显著延迟(P<0.05)。这些发现通过 SEM 和 CLSM 分析得到证实。一般来说,与丰富且密集定植的对照生物膜相比,LPS 处理的念珠菌生物膜的发展受到抑制,表现为稀疏的结构和细胞数量减少。这些数据表明,细菌内毒素 LPS 以种特异性和时间依赖性的方式调节体外念珠菌生物膜的形成。这些发现的临床和生物学意义仍有待探索。

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