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丁香酚的生物活性:一种具有最小生态毒理学影响的潜在抗生素佐剂。

Bioactivity of Eugenol: A Potential Antibiotic Adjuvant with Minimal Ecotoxicological Impact.

机构信息

Facultad de Ciencias de la Salud, Universidad San Jorge, Campus Universitario, Autovía Mudéjar, km. 299, 50830 Villanueva de Gállego, Spain.

Facultad de Educación, Universidad de Zaragoza, Pedro Cerbuna 12, 50009 Zaragoza, Spain.

出版信息

Int J Mol Sci. 2024 Jun 27;25(13):7069. doi: 10.3390/ijms25137069.

Abstract

Combining commercial antibiotics with adjuvants to lower their minimum inhibitory concentration (MIC) is vital in combating antimicrobial resistance. Evaluating the ecotoxicity of such compounds is crucial due to environmental and health risks. Here, eugenol was assessed as an adjuvant for 7 commercial antibiotics against 14 pathogenic bacteria in vitro, also examining its acute ecotoxicity on various soil and water organisms (microbiota, , , , and . Using microdilution methods, checkerboard assays, and kinetic studies, the MICs for eugenol were determined together with the nature of its combinations with antibiotics against bacteria, some unexposed to eugenol previously. The lethal dose for the non-target organisms was also determined, as well as the Average Well Color Development and the Community-Level Physiological Profiling for soil and water microbiota. Our findings indicate that eugenol significantly reduces MICs by 75 to 98%, which means that it could be a potent adjuvant. Ecotoxicological assessments showed eugenol to be less harmful to water and soil microbiota compared to studied antibiotics. While and were susceptible, and were minimally affected. Given that only 0.1% of eugenol is excreted by humans without metabolism, its environmental risk when used with antibiotics appears minimal.

摘要

将商业抗生素与佐剂结合使用以降低其最低抑菌浓度 (MIC) 对于对抗抗菌药物耐药性至关重要。由于存在环境和健康风险,评估此类化合物的生态毒性至关重要。在这里,评估了丁香酚作为 7 种商业抗生素的佐剂,在体外针对 14 种致病性细菌进行评估,还研究了其对各种土壤和水生物(微生物群落、原生动物、线虫、藻类和昆虫幼虫)的急性生态毒性。使用微量稀释法、棋盘试验和动力学研究,确定了丁香酚与抗生素对细菌的联合 MIC,其中一些细菌以前未接触过丁香酚。还确定了非靶标生物的致死剂量,以及土壤和水微生物群落的平均良好显色发展和群落水平生理分析。我们的研究结果表明,丁香酚可将 MIC 降低 75%至 98%,这意味着它可能是一种有效的佐剂。生态毒理学评估表明,丁香酚对水和土壤微生物群落的危害小于研究中的抗生素。虽然 和 敏感, 和 则受影响最小。鉴于人类在不代谢的情况下仅排泄 0.1%的丁香酚,因此当与抗生素一起使用时,其环境风险似乎很小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1252/11241589/b0fe70ffc3ba/ijms-25-07069-g001.jpg

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