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空间转录组学:技术、应用及实验考量。

Spatial transcriptomics: Technologies, applications and experimental considerations.

机构信息

Clinical Laboratory, The Affiliated Qingdao Central Hospital of Medical College of Qingdao University, Qingdao 266042, China.

Departments of Medical Oncology, Cancer Hospital of China Medical University, Liaoning Cancer Hospital and Institute, Shenyang 110042, China.

出版信息

Genomics. 2023 Sep;115(5):110671. doi: 10.1016/j.ygeno.2023.110671. Epub 2023 Jun 21.

Abstract

The diverse cell types of an organ have a highly structured organization to enable their efficient and correct function. To fully appreciate gene functions in a given cell type, one needs to understand how much, when and where the gene is expressed. Classic bulk RNA sequencing and popular single cell sequencing destroy cell structural organization and fail to provide spatial information. However, the spatial location of gene expression or of the cell in a complex tissue provides key clues to comprehend how the neighboring genes or cells cross talk, transduce signals and work together as a team to complete the job. The functional requirement for the spatial content has been a driving force for rapid development of the spatial transcriptomics technologies in the past few years. Here, we present an overview of current spatial technologies with a special focus on the commercially available or currently being commercialized technologies, highlight their applications by category and discuss experimental considerations for a first spatial experiment.

摘要

器官的多种细胞类型具有高度结构化的组织,以实现其高效和正确的功能。为了充分了解特定细胞类型中基因的功能,需要了解基因在何时、何地以及表达量的多少。经典的批量 RNA 测序和流行的单细胞测序会破坏细胞结构组织,无法提供空间信息。然而,基因表达或细胞在复杂组织中的空间位置为理解相邻基因或细胞如何相互交流、传递信号以及作为一个团队共同协作完成任务提供了关键线索。对空间内容的功能需求一直是推动过去几年空间转录组学技术快速发展的动力。在这里,我们概述了当前的空间技术,特别关注商业上可用或正在商业化的技术,按类别展示它们的应用,并讨论首次空间实验的实验注意事项。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b0f/10571167/b85c5d7802b1/nihms-1933876-f0001.jpg

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