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Droplet Microfluidics Enables Tracing of Target Cells at the Single-Cell Transcriptome Resolution.


ABSTRACT: The rapid promotion of single-cell omics in various fields has begun to help solve many problems encountered in research, including precision medicine, prenatal diagnosis, and embryo development. Meanwhile, single-cell techniques are also constantly updated with increasing demand. For some specific target cells, the workflow from droplet screening to single-cell sequencing is a preferred option and should reduce the impact of operation steps, such as demulsification and cell recovery. We developed an all-in-droplet method integrating cell encapsulation, target sorting, droplet picoinjection, and single-cell transcriptome profiling on chips to achieve labor-saving monitoring of TCR-T cells. As a proof of concept, in this research, TCR-T cells were encapsulated, sorted, and performed single-cell transcriptome sequencing (scRNA-seq) by injecting reagents into droplets. It avoided the tedious operation of droplet breakage and re-encapsulation between droplet sorting and scRNA-seq. Moreover, convenient device operation will accelerate the progress of chip marketization. The strategy achieved an excellent recovery performance of single-cell transcriptome with a median gene number over 4000 and a cross-contamination rate of 8.2 ± 2%. Furthermore, this strategy allows us to develop a device with high integrability to monitor infused TCR-T cells, which will promote the development of adoptive T cell immunotherapy and their clinical application.

SUBMITTER: Liu Y 

PROVIDER: S-EPMC9687293 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Droplet Microfluidics Enables Tracing of Target Cells at the Single-Cell Transcriptome Resolution.

Liu Yang Y   Wang Shiyu S   Lyu Menghua M   Xie Run R   Guo Weijin W   He Ying Y   Shi Xuyang X   Wang Yang Y   Qi Jingyu J   Zhu Qianqian Q   Zhang Hui H   Luo Tao T   Chen Huaying H   Zhu Yonggang Y   Dong Xuan X   Li Zida Z   Gu Ying Y   Liu Longqi L   Xu Xun X   Liu Ya Y  

Bioengineering (Basel, Switzerland) 20221110 11


The rapid promotion of single-cell omics in various fields has begun to help solve many problems encountered in research, including precision medicine, prenatal diagnosis, and embryo development. Meanwhile, single-cell techniques are also constantly updated with increasing demand. For some specific target cells, the workflow from droplet screening to single-cell sequencing is a preferred option and should reduce the impact of operation steps, such as demulsification and cell recovery. We develop  ...[more]

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