Modulation of Candida albicans Biofilm by Different Carbon Sources
被引:0
|
作者:
Suma C. Pemmaraju
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机构:Indian Institute of Technology Roorkee (IIT Roorkee),Molecular Microbiology Lab, Department of Biotechnology
Suma C. Pemmaraju
Parul A. Pruthi
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机构:Indian Institute of Technology Roorkee (IIT Roorkee),Molecular Microbiology Lab, Department of Biotechnology
Parul A. Pruthi
R. Prasad
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机构:Indian Institute of Technology Roorkee (IIT Roorkee),Molecular Microbiology Lab, Department of Biotechnology
R. Prasad
Vikas Pruthi
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机构:Indian Institute of Technology Roorkee (IIT Roorkee),Molecular Microbiology Lab, Department of Biotechnology
Vikas Pruthi
机构:
[1] Indian Institute of Technology Roorkee (IIT Roorkee),Molecular Microbiology Lab, Department of Biotechnology
[2] Indian Institute of Technology Roorkee (IIT Roorkee),Molecular Biology and Proteomics Lab, Department of Biotechnology
来源:
Mycopathologia
|
2016年
/
181卷
关键词:
Biofilm;
Virulence;
XTT assay;
FTIR;
-glucan;
D O I:
暂无
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学科分类号:
摘要:
In the present investigation, the role of carbon sources (glucose, lactate, sucrose, and arabinose) on Candida albicans biofilm development and virulence factors was studied on polystyrene microtiter plates. Besides this, structural changes in cell wall component β-glucan in presence of different carbon sources have also been highlighted. Biofilm formation was analyzed by XTT (2,3-bis[2-Methoxy-4-nitro-5-sulfophenyl]-2H-tetrazolium-5-carboxanilide) reduction assay. Glucose-grown cells exhibited the highest metabolic activity during adhesion among all carbon sources tested (p < 0.05). However, cells exposed to sucrose exhibited highest biofilm formation and matrix polysaccharides secretion after 48 h. The results also correlated with the biofilm height and roughness measurements by atomic force microscopy. Exposure to lactate induced hyphal structures with the highest proteinase activity while arabinose-grown cells formed pseudohyphal structures possessing the highest phospholipase activity. Structural changes in β-glucan characterized by Fourier transform infrared (FTIR) spectroscopy displayed characteristic band of β-glucan at 892 cm−1 in all carbon sources tested. The β(1→6) to β(1→3) glucan ratio calculated as per the band area of the peak was less in lactate (1.15) as compared to glucose (1.73), sucrose (1.62), and arabinose (2.85). These results signify that carbon sources influence C. albicans biofilm development and modulate virulence factors and structural organization of cell wall component β-glucan.