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Differential Bacteriostatic Effects of Sucralose on Various Species of Environmental Bacteria

机译:三氯蔗糖对多种环境细菌的抑菌作用

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摘要

Sucralose was developed as a low-cost artificial sweetener that is nonmetabolizable and can withstand changes in pH and temperature. It is not degraded by the wastewater treatment process and thus has been found in waste water, estuaries, rivers and the Gulf Stream. Since the molecule can withstand heat, acidification, and microbial degradation, it is accumulating in the environment. The highest concentration of environmental sucralose detected to date is 300 ng/L. Our lab has isolated six bacterial species from areas that have been exposed to sucralose. We then cultured these isolates in the presence of sucralose looking for potential sucralose metabolism or growth acceleration. Instead we found something very interesting, bacteriostatic effects exhibited on all six isolates. This inhibition was directly proportional to the concentration of sucralose exposure. The efficiency of the growth inhibition seemed to be species specific, with various concentrations inhibiting each organism differently.
机译:三氯蔗糖是一种低成本的人造甜味剂,不可代谢,可以承受pH和温度的变化。它不会被废水处理过程降解,因此已在废水,河口,河流和墨西哥湾流中发现。由于该分子可以承受热量,酸化和微生物降解,因此会在环境中累积。迄今为止,检测到的环境三氯蔗糖的最高浓度为300µng / L。我们的实验室从暴露于三氯蔗糖的区域中分离出六种细菌。然后,我们在三氯蔗糖存在下培养这些分离株,寻找潜在的三氯蔗糖代谢或生长促进作用。取而代之的是,我们发现了所有六个分离物都表现出非常有趣的抑菌作用。这种抑制作用与三氯蔗糖暴露的浓度成正比。生长抑制的效率似乎是物种特异性的,不同浓度对每种生物的抑制作用不同。

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