Accelerating Gut Microbiome Research with Robust Sample Collection

Zoe J. Zreloff, Danielle Lange, S. Vernon, M. Carlin, R. Cano
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引用次数: 2

Abstract

Background: Inferior quality of biological material compromises data, slows discovery, and wastes research funds. The gut microbiome plays a critical role in human health and disease, yet little attention has been given to optimizing collection and processing methods of human stool. Methods: We collected the entire bowel movement from 2 healthy volunteers: one to examine stool sample heterogeneity and one to test stool sample handling parameters. Sequencing and bioinformatic analyses were used to examine the microbiome composition. Results: The microbiome profile varied depending on where the subsample was obtained from the stool. The exterior cortex of the stool was rich in specific phyla and deficient in others while the interior core of the stool revealed opposite microbiome profiles. Sample processing also resulted in varying microbiome profiles. Homogenization and stabilization at 4°C gave superior microbial diversity profiles compared to the fresh or frozen subsamples of the same stool sample. Bacterial proliferation continued in the fresh subsample when processed at ambient temperature. Bacteroidetes proliferated and Firmicutes diminished during the 30-minute processing of fresh sample. The frozen sample had good overall diversity but Proteobacteria diminished likely because of the freeze/thaw. Conclusion: The microbiome profile is specific to the section of the stool being sampled. Stool sample collection, homogenization and stabilization at 4°C for 24 hours provides a neat, high-quality sample of sufficient quantity that can be banked into aliquots with nearly identical microbial diversity profiles. This collection pipeline is essential to accelerate our understanding of the gut microbiome in health and disease.
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通过稳健的样本收集加速肠道微生物组研究
背景:劣质的生物材料损害了数据,延缓了发现,浪费了研究经费。肠道微生物群在人类健康和疾病中起着至关重要的作用,但很少有人关注如何优化人类粪便的收集和处理方法。方法:我们收集了2名健康志愿者的整个排便过程,其中一名用于检查粪便样本的异质性,另一名用于测试粪便样本处理参数。测序和生物信息学分析用于检测微生物组的组成。结果:微生物组谱根据从粪便中获得亚样本的位置而变化。粪便的外部皮层富含特定的门,而其他门缺乏,而粪便的内部核心显示相反的微生物群特征。样品处理也导致不同的微生物组概况。与同一粪便样本的新鲜或冷冻亚样本相比,在4°C下均质和稳定可以获得更好的微生物多样性。当在环境温度下处理时,细菌在新鲜亚样品中继续增殖。在30分钟的新鲜样品处理过程中,拟杆菌门增殖,厚壁菌门减少。冷冻样品具有良好的整体多样性,但变形菌群可能因冻结/解冻而减少。结论:微生物组谱是特定于所取样的粪便部分的。粪便样品收集,均质和稳定在4°C下24小时提供了一个整洁,高质量的样品,足够的数量,可以存入具有几乎相同的微生物多样性谱的等分液。这个收集管道对于加速我们对健康和疾病中的肠道微生物群的理解至关重要。
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Accelerating Gut Microbiome Research with Robust Sample Collection. Accelerating Gut Microbiome Research with Robust Sample Collection
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