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百里香酚作为开发具有增强抗菌活性的生物基材料的起始原料:合成、表征及潜在应用

Thymol as Starting Material for the Development of a Biobased Material with Enhanced Antimicrobial Activity: Synthesis, Characterization, and Potential Application.

作者信息

Parolin Giovana A, Vital Vitor G, de Vasconcellos Suzan P, Lago João Henrique G, Péres Laura O

机构信息

Laboratory of Hybrid Materials, Chemistry Department, Federal University of São Paulo, Diadema 09913-030, SP, Brazil.

Multidisciplinary Laboratory of Health and Environment Sciences, Department of Pharmaceutical Sciences, Federal University of São Paulo, Diadema 09913-030, SP, Brazil.

出版信息

Molecules. 2024 Feb 26;29(5):1010. doi: 10.3390/molecules29051010.

Abstract

A biobased material, polythymol (PTF), was prepared using thymol, a monoterpene obtained from the essential oil of (Lamiaceae), as a starting material with the aim of enhancing the antimicrobial properties of this natural product. Initially, different processes were performed in order to optimize the reaction conditions to obtain a macromolecule with a high purity and yield. PTF was characterized using different techniques, such as NMR, infrared, UV-Vis, and thermogravimetric analyses. The antimicrobial activity of both PTF and thymol was evaluated against different microorganisms, including , , , and . The obtained MIC values showed a higher potential for PTF than the monomer thymol-for example, against (500 and 31.5 µg·mL for thymol and PTF, respectively). Therefore, the obtained results show that the polymerization of thymol afforded more active biomaterial than the starting monomeric antimicrobial compound (thymol), suggesting that PTF is an important biomaterial.

摘要

以百里酚为起始原料制备了一种生物基材料聚百里酚(PTF),百里酚是一种从唇形科植物精油中提取的单萜,目的是增强这种天然产物的抗菌性能。最初,进行了不同的工艺以优化反应条件,从而获得高纯度和高产率的大分子。使用不同技术对PTF进行了表征,如核磁共振、红外、紫外可见和热重分析。评估了PTF和百里酚对不同微生物的抗菌活性,包括金黄色葡萄球菌、大肠杆菌、白色念珠菌和黑曲霉。所获得的最低抑菌浓度(MIC)值表明,PTF比单体百里酚具有更高的抗菌潜力——例如,对金黄色葡萄球菌(百里酚和PTF的MIC值分别为500和31.5μg·mL)。因此,所获得的结果表明,百里酚聚合得到的生物材料比起始单体抗菌化合物(百里酚)更具活性,这表明PTF是一种重要的生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cff/10933892/dcee5b07de1a/molecules-29-01010-g001.jpg

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