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SRX16984429: GSM6436954: 6L: muscle, 2 weeks tenotomy, stored 6 years; Oryctolagus cuniculus; RNA-Seq
1 ILLUMINA (Illumina NovaSeq 6000) run: 92.4M spots, 18.7G bases, 6.6Gb downloads

External Id: GSM6436954_r1
Submitted by: Muscle Physiology, Orthopaedic Surgery, Radiology, and Bioengineering, University of California San Diego
Study: Spatial transcriptomics tools allow for regional exploration of heterogeneous muscle pathology in the pre-clinical rabbit model of rotator cuff tear
show Abstracthide Abstract
Conditions affecting skeletal muscle, such as chronic rotator cuff tears, low back pain, dystrophies, and many others often share changes in muscle phenotype: intramuscular adipose and fibrotic tissue increase while contractile tissue is lost. The underlying changes in cell populations and cell ratios observed with these phenotypic changes complicate the interpretation of tissue-level transcriptional data. Novel single cell transcriptomics has limited capacity to address this problem because muscle fibers are too long to be engulfed in single cell droplets and single nuclei transcriptomics are complicated by muscle fibers' multinucleation. Therefore, the goal of this project was to evaluate the potential and challenges of a spatial transcriptomics technology to add dimensionality to transcriptional data in an attempt to better understand regional cellular activity in heterogeneous skeletal muscle tissue. Overall design: Fresh and 6 years old snapfrozen healthy and tenotomized rabbit supraspinatus muscle sections were mounted on 10x Visium slides
Sample: 6L: muscle, 2 weeks tenotomy, stored 6 years
SAMN30197908 • SRS14570193 • All experiments • All runs
Library:
Name: GSM6436954
Instrument: Illumina NovaSeq 6000
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC
Selection: cDNA
Layout: PAIRED
Construction protocol: Permeabilization protocol by 10x Genomics CG000238 Rev E. 18 min incubation time. 10x Genomics Protocol CG000239 Rev E
Runs: 1 run, 92.4M spots, 18.7G bases, 6.6Gb
Run# of Spots# of BasesSizePublished
SRR2096671692,421,87818.7G6.6Gb2022-10-12

ID:
23761905

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