Cox Amon, Nowshad Farrhin, Callaway Evelyn, Jayaraman Arul
Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, TX 77843, USA.
Metabolites. 2024 Dec 18;14(12):713. doi: 10.3390/metabo14120713.
The gut microbiota are an important interface between the host and the environment, mediating the host's interactions with nutritive and non-nutritive substances. Dietary contaminants like Bisphenol A (BPA) may disrupt the microbial community, leaving the host susceptible to additional exposures and pathogens. BPA has long been a controversial and well-studied contaminant, so its structural analogues like Bisphenol S (BPS) are replacing it in consumer products, but have not been well studied.
This study aimed to determine the impact of BPS on C57BL/6 murine gut microbiota using shotgun metagenomic sequencing and the metabolomic profiling of in vitro anaerobic cultures.
The results demonstrated that a supraphysiologic BPS dose did not overtly distort the metagenomic or metabolomic profiles of exposed cultures compared to controls. A distinct BPS-associated metabolite profile was not observed, but several metabolites, including saturated fatty acids, were enriched in the BPS-exposed cultures. In the absence of a BPS-associated enterotype, species specifically were associated with BPS exposure in a discriminant model.
Our study provides evidence contrasting the effects of BPS in the gut microbiome to its predecessor, BPA, but also emphasizes the role of inter-animal variation in microbiome composition, indicating that further study is needed to characterize BPS in this context.
肠道微生物群是宿主与环境之间的重要界面,介导宿主与营养物质和非营养物质的相互作用。双酚A(BPA)等饮食污染物可能会破坏微生物群落,使宿主更容易受到其他暴露和病原体的影响。BPA长期以来一直是一种有争议且经过充分研究的污染物,因此其结构类似物双酚S(BPS)正在取代它在消费品中的使用,但尚未得到充分研究。
本研究旨在使用鸟枪法宏基因组测序和体外厌氧培养物的代谢组学分析来确定BPS对C57BL/6小鼠肠道微生物群的影响。
结果表明,与对照组相比,超生理剂量的BPS并未明显扭曲暴露培养物的宏基因组或代谢组学图谱。未观察到与BPS相关的独特代谢物谱,但包括饱和脂肪酸在内的几种代谢物在暴露于BPS的培养物中有所富集。在没有与BPS相关的肠型的情况下,在判别模型中,特定物种与BPS暴露相关。
我们的研究提供了证据,对比了BPS在肠道微生物群中的作用与其前身BPA的作用,但也强调了动物间微生物群组成差异的作用,表明在这种情况下需要进一步研究以表征BPS。