使用Xenium平台对人类骨骼肌进行原位空间转录组学分析。

IF 3.2 3区 生物学 Q3 CELL BIOLOGY
Nejc Umek, Marija Meznarič, Žiga Šink, Kaja Blagotinšek Cokan, Uršula Prosenc Zmrzljak, Simon Horvat
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引用次数: 0

摘要

传统的转录组学研究往往忽略了骨骼肌的复杂异质性,因为它们通常从混合的肌肉纤维和细胞群中分离RNA,导致平均转录组谱模糊了纤维类型特异性差异。本研究评估了最近开发的Xenium平台对人类骨骼肌组织切片进行高分辨率空间转录组分析的潜力。使用Xenium平台和Human Multi-Tissue and Cancer Panel对来自两个人的人类股外侧肌样本进行分析,针对377个基因,并通过连续切片的Myosin重链异型染色来区分1型和2型肌纤维。手工分割肌纤维可以准确比较纤维类型和亚细胞区域的转录本密度,克服了平台自动分割的局限性。分析显示,1型纤维的转录本密度更高,特别是在核和核周区域,并鉴定出377个基因中的191个在肌纤维和肌围膜之间具有差异表达。PROX1、S100A1、LGR5、ACTA2和LPL等基因在1型纤维中表达较高,而PEBP4、CAVIN1、GATM和PVALB在2型纤维中表达较高。我们证明了Xenium平台能够对骨骼肌组织切片进行高分辨率的空间原位转录组分析。这项研究表明,通过人工分割,Xenium平台有效地执行纤维类型特异性转录组分析,为骨骼肌生物学提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In situ spatial transcriptomic analysis of human skeletal muscle using the Xenium platform.

Traditional transcriptomic studies often overlook the complex heterogeneity of skeletal muscle, as they typically isolate RNA from mixed muscle fibre and cell populations, resulting in an averaged transcriptomic profile that obscures fibre type-specific differences. This study assessed the potential of the recently developed Xenium platform for high-resolution spatial transcriptomic analysis of human skeletal muscle histological sections. Human vastus lateralis muscle samples from two individuals were analysed using the Xenium platform and Human Multi-Tissue and Cancer Panel targeting 377 genes complemented by staining of successive sections for Myosin Heavy Chain isoforms to differentiate between type 1 and type 2 muscle fibres. Manual segmentation of muscle fibres allowed accurate comparisons of transcript densities across fibre types and subcellular regions, overcoming limitations in the platform's automated segmentation. The analysis revealed higher transcript density in type 1 fibres, particularly in nuclear and perinuclear areas, and identified 191 out of 377 genes with differential expression between muscle fibres and perimysium. Genes such as PROX1, S100A1, LGR5, ACTA2, and LPL exhibited higher expression in type 1 fibres, whereas PEBP4, CAVIN1, GATM, and PVALB in type 2 fibres. We demonstrated that the Xenium platform is capable of high-resolution spatial in situ transcriptomic analysis of skeletal muscle histological sections. This study demonstrates that, with manual segmentation, the Xenium platform effectively performs fibre type-specific transcriptomic analysis, providing new insights into skeletal muscle biology.

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来源期刊
Cell and Tissue Research
Cell and Tissue Research 生物-细胞生物学
CiteScore
7.00
自引率
2.80%
发文量
142
审稿时长
1 months
期刊介绍: The journal publishes regular articles and reviews in the areas of molecular, cell, and supracellular biology. In particular, the journal intends to provide a forum for publishing data that analyze the supracellular, integrative actions of gene products and their impact on the formation of tissue structure and function. Submission of papers with an emphasis on structure-function relationships as revealed by recombinant molecular technologies is especially encouraged. Areas of research with a long-standing tradition of publishing in Cell & Tissue Research include: - neurobiology - neuroendocrinology - endocrinology - reproductive biology - skeletal and immune systems - development - stem cells - muscle biology.
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