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用于检测微生物β-D-半乳糖苷酶、β-D-葡萄糖醛酸酶和β-D-核糖苷酶的基于生色羟基蒽醌的酶底物。

Chromogenic hydroxyanthraquinone-based enzyme substrates for the detection of microbial β-d-galactosidase, β-d-glucuronidase and β-d-ribosidase.

作者信息

Burton Michael, Garcha Amy, Marrs Emma C L, Perry John D, Stanforth Stephen P, Turnbull Graeme, Turner Hayley J

机构信息

Glycosynth Ltd 14 Craven Court, Winwick Quay, Cheshire Warrington WA2 8QU UK

Department of Microbiology, Freeman Hospital Newcastle upon Tyne NE7 7DN UK.

出版信息

RSC Adv. 2025 Feb 7;15(6):4229-4235. doi: 10.1039/d4ra06418f. eCollection 2025 Feb 6.

DOI:10.1039/d4ra06418f
PMID:39926229
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11804412/
Abstract

Di-β-d-galactopyranoside derivatives of quinizarin (1,4-dihydroxyanthraquinone) and anthrarufin (1,5-dihydroxyanthraquinone) were evaluated as microbial enzyme substrates in Columbia agar medium for the detection of clinically important microorganisms. Furthermore, these substrates were evaluated both in the presence and absence of iron salts which could chelate to the aglycone after microbial hydrolysis of the substrate. The quinizarin-based substrate resulted in the formation of black microbial colonies in the presence of iron salts and orange colonies in their absence. In contrast, yellow-coloured microbial colonies were observed with the anthrarufin-based substrate regardless of whether iron salts were present or not. 1-Hydroxyanthraquinone-β-d-galactopyranoside also resulted in yellow-coloured microbial colonies in the absence of iron salts and an extended study of this substrate using 38 clinical strains of indicated its potential for identifying this microorganism when compared to a commercially available indoxyl based substrate. 1-Hydroxyanthraquinone-β-d-glucopyranuronide was also evaluated for detection, but this substrate was deemed less effective than its indoxyl-based counterpart. 1-Hydroxyanthraquinone-β-d-ribofuranoside was evaluated for its potential to detect and this substrate shows promise for this application.

摘要

对茜素(1,4 - 二羟基蒽醌)和蒽 Rufin(1,5 - 二羟基蒽醌)的二 -β -d -吡喃半乳糖苷衍生物作为微生物酶底物在哥伦比亚琼脂培养基中进行评估,以检测临床重要微生物。此外,在有和没有铁盐的情况下对这些底物进行评估,铁盐在底物被微生物水解后可与糖苷配基螯合。基于茜素的底物在有铁盐存在时形成黑色微生物菌落,在没有铁盐时形成橙色菌落。相比之下,无论是否存在铁盐,基于蒽 Rufin 的底物都观察到黄色微生物菌落。1 - 羟基蒽醌 -β -d -吡喃半乳糖苷在没有铁盐时也产生黄色微生物菌落,并且使用38株临床菌株对该底物进行的扩展研究表明,与市售的基于吲哚酚的底物相比,其在鉴定这种微生物方面具有潜力。还对1 - 羟基蒽醌 -β -d -吡喃葡萄糖醛酸苷进行了检测评估,但该底物被认为比其基于吲哚酚的对应物效果差。对1 - 羟基蒽醌 -β -d -呋喃核糖苷检测 的潜力进行了评估,该底物在该应用中显示出前景。

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The synthesis of novel chromogenic enzyme substrates for detection of bacterial glycosidases and their applications in diagnostic microbiology.新型显色酶底物的合成及其在细菌糖苷酶检测中的应用。
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