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Candida albicans susceptibility to lactoperoxidase-generated hypoiodite

机译:白色念珠菌对乳过氧化物酶产生的次碘酸盐的敏感性

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摘要

In vivo, lactoperoxidase produces hypothiocyanite (OSCN) from thiocyanate (SCN) in the presence of hydrogen peroxide (H2O2); in vitro, iodide (I) can be oxidized into hypoiodite (OI) by this enzyme. The aim of this study was to compare in vitro the anti-Candida effect of iodide versus thiocyanate used as lactoperoxidase substrate to prevent Candida biofilms development. Candida albicans ATCC 10231 susceptibility upon both peroxidase systems was tested in three different experimental designs: (i) in a liquid culture medium, (ii) in an interface model between solid culture medium and gel containing the enzymic systems, (iii) in a biofilm model onto titanium and acrylic resin. Yeast growth in liquid medium was monitored by turbidimetry at 600 nm. Material-adherent yeast biomass was evaluated by the tetrazolium salt MTT method. The iodide-peroxidase system has been shown to inhibit Candida biofilm formation at lower substrate concentrations (~200 fold less H2O2 donor) and for longer incubation periods than the thiocyanate-peroxidase system. In conclusion, efficiency of lactoperoxidase-generated OI to prevent C. albicans biofilm development allows refining iodine antifungal use in ex vivo conditions.
机译:在体内,过氧化氢(H2O2)的存在下,乳过氧化物酶从硫氰酸盐(SCN -)生成次硫氰酸盐(OSCN -);在体外,碘化物(I -)可被该酶氧化为次碘酸盐(OI -)。这项研究的目的是在体外比较碘化物和硫氰酸盐作为乳过氧化物酶底物的预防念珠菌作用,以防止念珠菌生物膜形成。在三种不同的实验设计中测试了白色念珠菌ATCC 10231对两种过氧化物酶系统的敏感性:(i)在液体培养基中,(ii)在固体培养基和含有酶系统的凝胶之间的界面模型中,(iii)在生物膜中在钛和丙烯酸树脂上建模。通过比浊法在600nm下监测液体培养基中的酵母生长。通过四唑盐MTT法评估材料附着的酵母生物量。与硫氰酸酯-过氧化物酶系统相比,碘化物-过氧化物酶系统已显示出在较低的底物浓度(H2O2供体少约200倍)下抑制念珠菌生物膜形成的潜伏期更长。总之,通过乳过氧化物酶生成的OI -防止白色念珠菌生物膜发育的效率可以改善离体条件下碘抗真菌剂的使用。

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