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乌干达荜茇叶中化合物对念珠菌和葡萄球菌生物膜的抑制特性。

Biofilm inhibiting properties of compounds from the leaves of Warburgia ugandensis Sprague subsp ugandensis against Candida and staphylococcal biofilms.

机构信息

Faculty of Pharmaceutical Sciences, KU Leuven, Belgium; Department of Biology, Animal Physiology and Neurobiology Division, KU Leuven, Belgium.

Faculty of Pharmaceutical Sciences, KU Leuven, Belgium.

出版信息

J Ethnopharmacol. 2020 Feb 10;248:112352. doi: 10.1016/j.jep.2019.112352. Epub 2019 Oct 30.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Warburgia ugandensis Sprague subspecies ugandensis is a plant widely distributed in Eastern, Central and Southern Africa. In humans, it is used to treat respiratory infections, tooth aches, malaria, skin infections, venereal diseases, diarrhea, fevers and aches.

AIM OF THE STUDY

This study aims to identify the bioactive compounds against clinically important biofilm-forming strains of Candida and staphylococci that are responsible for tissue and implanted device-related infections.

METHODS

Using a bioassay-guided fractionation approach, hexane -, ethanol -, acetone - and water extracts from the leaves of W. ugandensis, their subsequent fractions and isolated compounds were tested against both developing and preformed 24 h-biofilms of Candida albicans SC5314, Candida glabrata BG2, Candida glabrata ATCC 2001, Staphylococcus epidermidis 1457 and Staphylococcus aureus USA 300 using microtiter susceptibility tests. Planktonic cells were also tested in parallel for comparison purposes. Confocal scanning laser microscopy was also used to visualize effects of isolated compounds on biofilm formation.

RESULTS

Warburganal, polygodial and alpha-linolenic acid (ALA) were the major bioactive compounds isolated from the acetone extract of W. ugandensis. For both warburganal and polygodial, the biofilm inhibitory concentration that inhibits 50% of C. albicans developing biofilms (BIC) was 4.5 ± 1 and 10.8 ± 5 μg/mL respectively. Against S. aureus developing biofilms, this value was 37.9 ± 8 μg/mL and 25 μg/mL with warburganal and ALA respectively. Eradication of preformed 24 h biofilms was also observed. Interestingly, synergy between the sesquiterpenoids and azoles against developing C. albicans biofilms resulted in an approximately ten-fold decrease of the effective concentration required to completely inhibit growth of the biofilms by individual compounds. The hydroxyl group in position C-9 in warburganal was identified as essential for activity against staphylococcal biofilms. We also identified additional promising bioactive sesquiterpenoids; drimenol and drimendiol from the structure-activity relationship (SAR) studies.

CONCLUSIONS

ALA and four sesquiterpenoids: polygodial, warburganal, drimenol and drimendiol, have shown biofilm-inhibitory activity that has not been reported before and is worth following up. These compounds are potential drug candidates to manage biofilm-based infections, possibly in combination with azoles.

摘要

民族药理学相关性

Warburgia ugandensis Sprague 亚种 ugandensis 是一种广泛分布于东非、中非和南非的植物。在人类中,它被用于治疗呼吸道感染、牙痛、疟疾、皮肤感染、性病、腹泻、发烧和疼痛。

研究目的

本研究旨在鉴定对临床上重要的生物膜形成的念珠菌和葡萄球菌菌株具有生物活性的化合物,这些菌株负责组织和植入相关设备的感染。

方法

使用基于生物测定指导的分级分离方法,从 W. ugandensis 的叶子中提取正己烷、乙醇、丙酮和水提取物,以及它们的后续馏分和分离出的化合物,用于测试 24 小时生物膜形成的白念珠菌 SC5314、光滑念珠菌 BG2、光滑念珠菌 ATCC 2001、表皮葡萄球菌 1457 和金黄色葡萄球菌 USA300 的形成,使用微量肉汤药敏试验。同时也测试浮游细胞作为比较。共聚焦扫描激光显微镜也用于观察分离化合物对生物膜形成的影响。

结果

Warburganal、聚甲酚和α-亚麻酸(ALA)是从 W. ugandensis 的丙酮提取物中分离出的主要生物活性化合物。对于 Warburganal 和聚甲酚,抑制白念珠菌形成生物膜的生物膜抑制浓度(BIC)分别为 4.5±1 和 10.8±5μg/ml。对于金黄色葡萄球菌形成的生物膜,这个值分别为 37.9±8μg/ml 和 25μg/ml,分别用 Warburganal 和 ALA。也观察到对预先形成的 24 小时生物膜的清除作用。有趣的是,sesquiterpenoids 和唑类之间的协同作用导致单独化合物完全抑制生物膜生长所需的有效浓度降低约十倍。Warburganal 中 C-9 位的羟基被确定为对抗葡萄球菌生物膜所必需的。我们还从结构-活性关系(SAR)研究中确定了其他有前途的生物活性 sesquiterpenoids;drimenol 和 drimendiol。

结论

ALA 和四种倍半萜:聚甲酚、Warburganal、drimenol 和 drimendiol,表现出以前没有报道过的生物膜抑制活性,值得进一步研究。这些化合物是管理生物膜相关感染的潜在候选药物,可能与唑类药物联合使用。

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