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Posts tagged Madigan Research Day 2024
Gene Expression Analysis Reveals Differences in the Capsular Tissue of Patients with Anterior and Posterior Shoulder Instability - Madigan Research Day 2024

Galvin J, egan a, Rooney P, Grassbaugh J, Masini B, Free K, Bastian M, Gillette L, Colburn Z

Abstract accepted for a poster presentation at the 2024 Madigan Research Day

Little is known about the pathobiology of unidirectional anterior and posterior shoulder instability. The purpose of this study was to compare gene expression differences in the peripheral blood and capsular tissue of young patients with recurrent anterior shoulder instability and those patients with unidirectional posterior shoulder instability.

There are significant gene expression differences in the shoulder capsule of anterior and posterior shoulder instability patients. This transcriptomic data may provide an improved understanding of the pathobiology of various forms of shoulder instability which could lead to future precision medicine approaches.

Transcriptomics of Anterior Shoulder Instability: Differences in Gene Expression in the Blood of Patients with and without Significant Glenoid Bone Loss - Madigan Research Day 2024

Galvin J, Rooney P, Tokish J, Grassbaugh J, Masini B, Free K, Bastian M, Gillette L, Colburn Z

Abstract accepted for poster presentation at the 2024 Madigan Research Day

Currently the measurement of serum or synovial biomarkers does not have a role in diagnosis or monitoring of injury severity in young patients with recurrent anterior shoulder instability. The purpose of this study was to compare gene expression differences in the peripheral blood and tissue of young patients with recurrent anterior shoulder instability with and without significant glenoid bone loss (GBL). Additionally, we sought to determine a peripheral blood transcriptomic biomarker for the reliable delineation of the severity of GBL in anterior shoulder instability patients.

There are significant gene expression differences in the peripheral blood of anterior shoulder instability patients with and without significant (≥10%) GBL. The differential expression of 5 genes allowed development of an accurate predictive model and transcriptomic classifier to predict the severity of GBL. This novel peripheral blood transcriptomic biomarker may assist in tracking glenoid bone loss and injury severity and progression in young patients with recurrent anterior shoulder instability.