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将微生物快速封装到可溶解的水凝胶珠中,可实现临床微生物组样本的高通量微生物单细胞RNA测序。

Fast Encapsulation of Microbes into Dissolvable Hydrogel Beads Enables High-Throughput Microbial Single-Cell RNA Sequencing of Clinical Microbiome Samples.

作者信息

Wang Yuting, Ma Junjie, Cai Wenjie, Song Mengdi, Wang Zhaolun, Xu Ziye, Shen Yifei, Zheng Shufa, Zhang Shunji, Tang Zhengmin, Wang Yongcheng

机构信息

Department of Laboratory Medicine of The First Affiliated Hospital & Liangzhu Laboratory, Zhejiang University School of Medicine, Hangzhou, 311121, China.

College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou, 310027, China.

出版信息

Adv Mater. 2025 Jun;37(24):e2500481. doi: 10.1002/adma.202500481. Epub 2025 Apr 8.

DOI:10.1002/adma.202500481
PMID:40200683
Abstract

Microbial single-cell RNA-seq (mscRNA-seq) can achieve resolution at the cellular level, enhancing the understanding of microbial communities. However, current high-throughput mscRNA-seq methods are limited by multiple centrifugation steps, which can lead to microbial loss and bias. smGel-seq is reported, a high-throughput single-microbe RNA sequencing method for clinical microbiome samples that employs hydrogel beads to encapsulate individual microbes to reduce microbial loss and input requirements. In this method, a novel microchannel array device is implemented for encapsulating single microbe in dissolvable hydrogel beads (smDHBs), along with an optimized automated microfluidic platform to co-encapsulate barcoded beads and smDHBs, enabling high-throughput barcoding of individual microbes. smGel-seq significantly increases the microbial recovery rate in a gut microbiome sample from 8.8% to 91.8%. Furthermore, this method successfully processes clinical microbiome samples with microbial inputs 20 times lower than those required by previous methods. Notably, smGel-seq enables the first mscRNA-seq in a clinical sputum microbiome sample, revealing a specific microbial subpopulation that may play a key role in environmental adaptability, antibiotic resistance, and pathogenicity. These results highlight the compatibility of smGel-seq with clinical microbiome samples and demonstrate its potential for widespread application in diverse clinical and research settings.

摘要

微生物单细胞RNA测序(mscRNA-seq)能够在细胞水平上实现分辨率,增进对微生物群落的理解。然而,当前的高通量mscRNA-seq方法受到多个离心步骤的限制,这可能导致微生物损失和偏差。据报道,smGel-seq是一种用于临床微生物组样本的高通量单微生物RNA测序方法,它采用水凝胶珠包裹单个微生物,以减少微生物损失和样本输入要求。在该方法中,一种新型微通道阵列装置用于将单个微生物封装在可溶解的水凝胶珠(smDHBs)中,同时还有一个优化的自动化微流控平台用于共同封装带条形码的珠子和smDHBs,从而实现单个微生物的高通量条形码标记。smGel-seq显著提高了肠道微生物组样本中的微生物回收率,从8.8%提高到91.8%。此外,该方法成功处理了微生物输入量比以前方法低20倍的临床微生物组样本。值得注意的是,smGel-seq实现了临床痰液微生物组样本中的首次mscRNA-seq,揭示了一个可能在环境适应性、抗生素抗性和致病性方面起关键作用的特定微生物亚群。这些结果突出了smGel-seq与临床微生物组样本的兼容性,并证明了其在各种临床和研究环境中广泛应用的潜力。

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