Inhibition of Streptococcus pneumoniae hyaluronidase by honeys of Malaysian origins

Hanani Ahmad Yusof, Nurul Azahana Mohd Nayian
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Abstract

Streptococcus pneumoniae, a major human pathogen causing meningitis, pneumonia and bacteraemia produce hyaluronidase as its virulence factor. This enzyme increase bacterial permeability to the host tissue by degrading hyaluronic acids that maintain the viscosity of connective tissues. Limited hyaluronidase inhibitor are available at the moment, thus lead us to identify potential hyaluronidase inhibitor from local products which is honeys. Three local honeys (Tualang, Kelulut and Gelam) have been selected and undergo hyaluronidase inhibition test through hyaluronic acids turbidity reduction assay. Honeys that show highest and lowest anti-hyaluronidase were analysed for flavonoid and phenolic content, to identify association between the contents and hyaluronidase inhibition rate. All honeys showed various degrees of inhibition against hyaluronidase of S. pneumoniae where honey with the highest anti-hyaluronidase activity is Kelulut with 18% inhibition  while honey with the lowest anti-hyaluronidase activity is Gelam with 2% inhibition. Kelulut also demonstrated highest phenolic content, where significant association was found between the inhibition and the content. Therefore, this study supported the claim that higher phenolic contents indicate greater inhibitory activity on hyaluronidase enzyme. The findings suggest that local Malaysian honey have potential as hyaluronidase inhibitor which could be beneficial for future treatment against S. pneumoniae infections.
马来西亚蜂蜜对肺炎链球菌透明质酸酶的抑制作用
肺炎链球菌是引起脑膜炎、肺炎和菌血症的主要人类病原体,其毒力因子为透明质酸酶。这种酶通过降解维持结缔组织黏性的透明质酸来增加细菌对宿主组织的渗透性。目前可用的透明质酸酶抑制剂有限,因此我们从当地产品蜂蜜中鉴定出潜在的透明质酸酶抑制剂。选择当地三种蜂蜜(Tualang, Kelulut和Gelam),通过透明质酸减浊试验进行透明质酸酶抑制试验。对抗透明质酸酶活性最高和最低的蜂蜜进行了类黄酮和酚类含量的分析,以确定其含量与透明质酸酶抑制率之间的关系。所有蜂蜜对肺炎链球菌的透明质酸酶都有不同程度的抑制作用,其中抗透明质酸酶活性最高的蜂蜜是克鲁特蜂蜜,抑制率为18%,而抗透明质酸酶活性最低的蜂蜜是明胶蜂蜜,抑制率为2%。Kelulut还显示出最高的酚含量,其中发现抑制作用与含量之间存在显着关联。因此,本研究支持了酚类物质含量越高,对透明质酸酶的抑制活性越强的说法。研究结果表明,马来西亚当地蜂蜜具有作为透明质酸酶抑制剂的潜力,这可能对未来治疗肺炎链球菌感染有益。
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