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Hydrop 可利用可溶解水凝胶珠进行基于液滴的单细胞 ATAC-seq 和单细胞 RNA-seq。

Hydrop enables droplet-based single-cell ATAC-seq and single-cell RNA-seq using dissolvable hydrogel beads.

机构信息

VIB-KU Leuven/VIB Center for Brain & Disease Research, Leuven, Belgium.

Laboratory of Computational Biology, Department of Human Genetics, KU Leuven, Leuven, Belgium.

出版信息

Elife. 2022 Feb 23;11:e73971. doi: 10.7554/eLife.73971.

Abstract

Single-cell RNA-seq and single-cell assay for transposase-accessible chromatin (ATAC-seq) technologies are used extensively to create cell type atlases for a wide range of organisms, tissues, and disease processes. To increase the scale of these atlases, lower the cost and pave the way for more specialized multiome assays, custom droplet microfluidics may provide solutions complementary to commercial setups. We developed HyDrop, a flexible and open-source droplet microfluidic platform encompassing three protocols. The first protocol involves creating dissolvable hydrogel beads with custom oligos that can be released in the droplets. In the second protocol, we demonstrate the use of these beads for HyDrop-ATAC, a low-cost noncommercial scATAC-seq protocol in droplets. After validating HyDrop-ATAC, we applied it to flash-frozen mouse cortex and generated 7996 high-quality single-cell chromatin accessibility profiles in a single run. In the third protocol, we adapt both the reaction chemistry and the capture sequence of the barcoded hydrogel bead to capture mRNA, and demonstrate a significant improvement in throughput and sensitivity compared to previous open-source droplet-based scRNA-seq assays (Drop-seq and inDrop). Similarly, we applied HyDrop-RNA to flash-frozen mouse cortex and generated 9508 single-cell transcriptomes closely matching reference single-cell gene expression data. Finally, we leveraged HyDrop-RNA's high capture rate to analyze a small population of fluorescence-activated cell sorted neurons from the brain, confirming the protocol's applicability to low input samples and small cells. HyDrop is currently capable of generating single-cell data in high throughput and at a reduced cost compared to commercial methods, and we envision that HyDrop can be further developed to be compatible with novel (multi) omics protocols.

摘要

单细胞 RNA 测序和转座酶可及染色质 (ATAC-seq) 技术被广泛用于为广泛的生物体、组织和疾病过程创建细胞类型图谱。为了扩大这些图谱的规模、降低成本并为更多专业化的多组学检测铺平道路,定制液滴微流控技术可能提供与商业设备互补的解决方案。我们开发了 HyDrop,这是一个灵活的开源液滴微流控平台,包含三个协议。第一个协议涉及使用带有定制寡核苷酸的可溶解水凝胶珠的创建,这些寡核苷酸可以在液滴中释放。在第二个协议中,我们展示了这些珠子在 HyDrop-ATAC 中的用途,这是一种低成本的非商业 scATAC-seq 液滴检测方案。在验证了 HyDrop-ATAC 之后,我们将其应用于快速冷冻的小鼠皮层,并在单次运行中生成了 7996 个高质量的单细胞染色质可及性谱。在第三个协议中,我们适应了反应化学和带条码的水凝胶珠的捕获序列,以捕获 mRNA,并与之前的开源液滴 scRNA-seq 检测方案(Drop-seq 和 inDrop)相比,显著提高了通量和灵敏度。同样,我们将 HyDrop-RNA 应用于快速冷冻的小鼠皮层,并生成了 9508 个单细胞转录组,与参考单细胞基因表达数据非常匹配。最后,我们利用 HyDrop-RNA 的高捕获率分析了大脑中一小群经荧光激活细胞分选的神经元,证实该方案适用于低输入样本和小细胞。与商业方法相比,HyDrop 目前能够以更高的通量和更低的成本生成单细胞数据,我们设想 HyDrop 可以进一步开发以兼容新型(多)组学方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3d8/8993220/02bd4d1de294/elife-73971-fig1.jpg

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