首页> 外文期刊>Molecules >Anti-Quorum Sensing Activity of Stevia Extract, Stevioside, Rebaudioside A and Their Aglycon Steviol
【24h】

Anti-Quorum Sensing Activity of Stevia Extract, Stevioside, Rebaudioside A and Their Aglycon Steviol

机译:甜叶菊提取物,甜菊糖,莱鲍迪甙A及其Aglycon Steviol的抗法力感应活性

获取原文
           

摘要

Governments are creating regulations for consumers to reduce their sugar intake, prompting companies to increase the ratio of artificial sweeteners in their products. However, there is evidence of some deleterious effects ascribed to the aforementioned synthetic agents and therefore consumers and food manufacturers have turned their attention to natural dietary sweeteners, such as stevia, to meet their sweetening needs. Stevia is generally considered safe; however, emerging scientific evidence has implicated the agent in gut microbial imbalance. In general, regulation of microbial behavior is known to depend highly on signaling molecules via quorum sensing (QS) pathways. This is also true for the gut microbial community. We, therefore, evaluated the possible role of these stevia-based natural sweeteners on this bacterial communication pathway. The use of a commercial stevia herbal supplement resulted in an inhibitory effect on bacterial communication, with no observable bactericidal effect. Purified stevia extracts, including stevioside, rebaudioside A (Reb A), and steviol revealed a molecular interaction, and possible interruption of Gram-negative bacterial communication, via either the LasR or RhlR receptor. Our in-silico analyses suggest a competitive-type inhibitory role for steviol, while Reb A and stevioside are likely to inhibit LasR-mediated QS in a non-competitive manner. These results suggest the need for further safety studies on the agents.
机译:政府正在为消费者制定法规,以减少含糖摄入量,促使公司提高其产品中人造甜味剂的比例。然而,有一些有害效应归因于上述合成试剂,因此消费者和食品制造商已经关注自然饮食甜味剂,如甜叶菊,以满足他们的甜味需求。甜叶菊通常被认为是安全的;然而,新兴的科学证据对肠道微生物不平衡的药物致力于肠道。通常,已知微生物行为的调节通过Quorum感测(QS)途径依赖于信号分子高度。这对于肠道微生物群落也是如此。因此,我们评估了这些基于甜叶菊的天然甜味剂对这种细菌通信途径的可能作用。使用商业甜叶菊草药补充剂导致对细菌通信的抑制作用,没有可观察的杀菌作用。纯化的甜叶菊提取物,包括甜菊糖,莱鲍迪甙A(REB A)和Steviol揭示了通过LASR或RHLR受体的分子相互作用,以及可能的革兰氏阴性细菌通信的中断。我们的In-Silico分析表明Steviol的竞争型抑制作用,而Reb A和甜菊甙可能以不竞争的方式抑制LASR介导的QS。这些结果表明需要对药剂进行进一步的安全性研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号