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合成具有增强抗食源微生物抗菌性能的 A 型原花青素天然产物类似物。

Synthesis of Analogs to A-Type Proanthocyanidin Natural Products with Enhanced Antimicrobial Properties against Foodborne Microorganisms.

机构信息

Department of Health Sciences, Faculty of Experimental Sciences, University of Jaén, Campus of International Excellence in Agri-Food (ceiA3), 23071 Jaén, Spain.

Department of Inorganic and Organic Chemistry, Faculty of Experimental Sciences, University of Jaén, Campus of International Excellence in Agri-Food (ceiA3), 23071 Jaén, Spain.

出版信息

Molecules. 2023 Jun 19;28(12):4844. doi: 10.3390/molecules28124844.

Abstract

Developing new types of effective antimicrobial compounds derived from natural products is of interest for the food industry. Some analogs to A-type proanthocyanidins have shown promising antimicrobial and antibiofilm activities against foodborne bacteria. We report herein the synthesis of seven additional analogs with NO group at A-ring and their abilities for inhibiting the growth and the biofilm formation by twenty-one foodborne bacteria. Among them, analog (one OH at B-ring; two OHs at D-ring) showed the highest antimicrobial activity. The best results with these new analogs were obtained in terms of their antibiofilm activities: analog (two OHs at B-ring; one OH at D-ring) inhibited at least 75% of biofilm formation by six strains at all of the concentrations tested, analog (two OHs at B-ring; two OHs at D-ring; one CH at C-ring) also showed antibiofilm activity on thirteen of the bacteria tested, and analog (one OH at B-ring; one OH at D-ring) was able to disrupt preformed biofilms in eleven strains. The description of new and more active analogs of natural compounds and the elucidation of their structure-activity relationships may contribute to the active development of new food packaging for preventing biofilm formation and lengthening the food shelf life.

摘要

开发源自天然产物的新型有效抗菌化合物对食品工业具有重要意义。一些 A 型原花青素类似物表现出对食源性病原体的良好抗菌和抗生物膜活性。本文报道了 7 种在 A 环中具有 NO 基团的 A 型原花青素类似物的合成及其对 21 种食源性病原体生长和生物膜形成的抑制能力。其中,类似物(B 环有一个 OH;D 环有两个 OH)表现出最高的抗菌活性。这些新类似物在抗生物膜活性方面表现出最好的结果:类似物(B 环有两个 OH;D 环有一个 OH)在所有测试浓度下至少抑制了 6 株菌的生物膜形成 75%,类似物(B 环有两个 OH;D 环有两个 OH;C 环有一个 CH)在 13 株测试菌中也表现出抗生物膜活性,类似物(B 环有一个 OH;D 环有一个 OH)能够破坏 11 株菌的已形成生物膜。新型天然化合物更有效类似物的描述及其构效关系的阐明,可能有助于积极开发新的食品包装,以防止生物膜形成并延长食品保质期。

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