Institute of Bast Fiber Crops, Chinese Academy of Agricultural Sciences, Changsha 410205, China.
College of Chemistry, Xiangtan University, Xiangtan 411105, China.
Molecules. 2017 Nov 6;22(11):1913. doi: 10.3390/molecules22111913.
Polyphenols are plant-derived natural products with well-documented health benefits to human beings, such as antibacterial activities. However, the antibacterial activities of polyphenols under hyperglycemic conditions have been rarely studied, which could be relevant to their antibacterial efficacy in disease conditions, such as in diabetic patients. Herein, the antibacterial activities of 38 polyphenols under mimicked hyperglycemic conditions were evaluated. The structure-antibacterial activity relationships of polyphenols were also tested and analyzed. The presence of glucose apparently promoted the growth of the bacterial strains tested in this study. The OD600 values of tested bacteria strains increased from 1.09-fold to 1.49-fold by adding 800 mg/dL glucose. The polyphenols showed structurally dependent antibacterial activities, which were significantly impaired under the hyperglycemic conditions. The results from this study indicated that high blood glucose might promote bacterial infection, and the hyperglycemic conditions resulting from diabetes were likely to suppress the antibacterial benefits of polyphenols.
多酚是植物源性天然产物,对人类健康有充分的益处,例如抗菌活性。然而,在高血糖条件下多酚的抗菌活性很少被研究,这可能与其在疾病状态下的抗菌功效相关,例如在糖尿病患者中。在此,评估了 38 种多酚在模拟高血糖条件下的抗菌活性。还测试和分析了多酚的结构-抗菌活性关系。在本研究中,葡萄糖的存在显然促进了所测试的细菌菌株的生长。通过添加 800mg/dL 葡萄糖,测试细菌菌株的 OD600 值从 1.09 倍增加到 1.49 倍。多酚表现出结构依赖性的抗菌活性,而在高血糖条件下其抗菌活性明显受损。本研究的结果表明,高血糖可能促进细菌感染,而糖尿病引起的高血糖条件可能会抑制多酚的抗菌益处。