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Published on: October 30, 2013
Growth Hormone Signaling in Bladder Cancer: Transcriptomic Profiling of Patient Samples and In Vitro Evidence of
Emily Davis1,2,3, Lydia J Caggiano1,4, Hannah Munholland1,3
1Institute for Molecular Medicine and Aging, Heritage College of Osteopathic Medicine, Ohio University, Athens, OH 45701, USA.
Abstract:
Growth hormone (GH) signaling has been implicated in tumor progression and therapy resistance across multiple cancer types, yet its role in bladder cancer remains largely unexplored. In this study, we investigated the impact of GH and its receptor (GHR) on therapy resistance and disease progression in urothelial carcinoma (UC) through integrated transcriptomic and in vitro analyses. Transcriptomic profiling of The Cancer Genome Atlas bladder cancer cohort revealed that high tumoral GHR expression was associated with differential upregulation of genes involved in drug efflux, epithelial-to-mesenchymal transition (EMT), and extracellular matrix (ECM) remodeling. Notably, elevated GHR levels correlated with significantly reduced overall survival in patients with UC. In parallel, in vitro experiments demonstrated that GH promotes chemoresistance in UC cell lines via upregulation of ATP-binding cassette-containing (ABC) transporters and activation of EMT. GH also modulated ECM-remodeling-associated genes in a chemotherapy-dependent manner, including matrix metalloproteinases and tissue inhibitors of metalloproteinases. Importantly, these effects were abrogated by Pegvisomant, a GHR antagonist, indicating the functional relevance of GH/GHR signaling in the mediation of these phenotypes. Collectively, our findings support a mechanistic role for GH signaling in driving therapy resistance and tumor aggressiveness in bladder cancer and suggest GHR antagonism as a potential therapeutic strategy to improve treatment outcomes.
Insights
Growth hormone (GH) signaling drives bladder cancer progression and therapy resistance by upregulating drug efflux and EMT. Targeting the GH receptor (GHR) with antagonists may improve treatment outcomes.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Growth hormone (GH) signaling is linked to cancer progression and therapy resistance.
- Its specific role in bladder cancer (urothelial carcinoma, UC) is not well understood.
Purpose of the Study:
- To investigate the impact of GH and its receptor (GHR) on therapy resistance and disease progression in UC.
- To explore the mechanistic role of GH/GHR signaling in bladder cancer aggressiveness.
Main Methods:
- Integrated transcriptomic analysis of The Cancer Genome Atlas bladder cancer cohort.
- In vitro experiments using UC cell lines.
- Assessment of gene expression related to drug efflux, EMT, and ECM remodeling.
- Evaluation of GH/GHR signaling blockade using Pegvisomant.
Main Results:
- High tumoral GHR expression correlated with upregulation of drug efflux, EMT, and ECM remodeling genes.
- Elevated GHR levels were associated with reduced overall survival in UC patients.
- GH promoted chemoresistance and EMT in UC cells via ABC transporters and modulated ECM genes.
- Pegvisomant abrogated these GH-induced effects, confirming GHR functional relevance.
Conclusions:
- GH signaling plays a mechanistic role in promoting therapy resistance and tumor aggressiveness in bladder cancer.
- GHR antagonism represents a potential therapeutic strategy to enhance treatment efficacy in UC.

