TY - JOUR
T1 - Growth hormone receptor antagonism improves tumoral chemo-immunotherapy response in a mouse model of lung cancer
AU - Ahmad, Arshad
AU - Basu, Reetobrata
AU - Fyffe, Caden
AU - Geiger, Reece
AU - Walsh, Christopher
AU - Brown, Farrah N.
AU - Bashir, Badra
AU - Alur, Amrutha Varshini
AU - List, Edward
AU - Berryman, Darlene
AU - Neggers, Sebastian J.C.M.M.
AU - Kopchick, John J.
N1 - Copyright © 2026 The Authors. Published by Elsevier Inc. All rights reserved.
PY - 2026/6
Y1 - 2026/6
N2 - Despite the clinical success of immune checkpoint inhibitors (ICIs), most patients with non–small cell lung cancer (NSCLC) fail to achieve durable responses due to intrinsic and acquired resistance. Growth hormone (GH) receptor (GHR) signaling has been implicated in tumor progression and therapy resistance, but its role in shaping anti-tumor immunity and chemo-immunotherapy response in NSCLC is unknown. To address this, syngeneic murine lung tumors were established in wild-type (WT) and GH antagonist transgenic (GHA) mice and treated with cisplatin, anti–PD-1 antibody, or their combination. Additionally, tumor growth was monitored longitudinally, while systemic and intratumoral insulin-like growth factor-1 (IGF-1) levels were quantified by ELISA. Tumor tissues were further analyzed by western blotting to assess immune checkpoint molecules, chemokine signaling components, and mediators of therapeutic resistance, and fibrotic remodeling was quantified using a hydroxyproline assay. High tumoral GHR expression was positively correlated with transcriptional signatures of therapy resistance, including ABC transporters, EMT markers, and ECM remodeling factors, and inversely associated with immune activation pathways. However, GHR antagonism in combination with cisplatin and anti–PD-1 therapy significantly suppressed tumor growth and enhanced therapeutic efficacy. Importantly, the combination of GHR blockade selectively increased PD-L1, PD-L2, and PD-1 expression, enhanced CXCL10–CXCR3 signaling, and downregulated the mediators of tumoral drug resistance and stromal remodeling. Therefore, we present the first indications that GHR signaling promotes immune suppression, therapy resistance, and fibrotic remodeling in NSCLC and support pharmacologic GHR antagonism as a novel strategy to sensitize tumors to chemo-immunotherapy.
AB - Despite the clinical success of immune checkpoint inhibitors (ICIs), most patients with non–small cell lung cancer (NSCLC) fail to achieve durable responses due to intrinsic and acquired resistance. Growth hormone (GH) receptor (GHR) signaling has been implicated in tumor progression and therapy resistance, but its role in shaping anti-tumor immunity and chemo-immunotherapy response in NSCLC is unknown. To address this, syngeneic murine lung tumors were established in wild-type (WT) and GH antagonist transgenic (GHA) mice and treated with cisplatin, anti–PD-1 antibody, or their combination. Additionally, tumor growth was monitored longitudinally, while systemic and intratumoral insulin-like growth factor-1 (IGF-1) levels were quantified by ELISA. Tumor tissues were further analyzed by western blotting to assess immune checkpoint molecules, chemokine signaling components, and mediators of therapeutic resistance, and fibrotic remodeling was quantified using a hydroxyproline assay. High tumoral GHR expression was positively correlated with transcriptional signatures of therapy resistance, including ABC transporters, EMT markers, and ECM remodeling factors, and inversely associated with immune activation pathways. However, GHR antagonism in combination with cisplatin and anti–PD-1 therapy significantly suppressed tumor growth and enhanced therapeutic efficacy. Importantly, the combination of GHR blockade selectively increased PD-L1, PD-L2, and PD-1 expression, enhanced CXCL10–CXCR3 signaling, and downregulated the mediators of tumoral drug resistance and stromal remodeling. Therefore, we present the first indications that GHR signaling promotes immune suppression, therapy resistance, and fibrotic remodeling in NSCLC and support pharmacologic GHR antagonism as a novel strategy to sensitize tumors to chemo-immunotherapy.
KW - Chemotherapy
KW - Growth hormone receptor
KW - Immunotherapy
KW - NSCLC
KW - Pegvisomant
UR - https://www.scopus.com/pages/publications/105037025241
UR - https://www.mendeley.com/catalogue/18bf270b-b0ed-3d52-8fd6-7528fcbece8f/
U2 - 10.1016/j.tranon.2026.102787
DO - 10.1016/j.tranon.2026.102787
M3 - Article
C2 - 42061046
AN - SCOPUS:105037025241
SN - 1936-5233
VL - 68
JO - Translational oncology
JF - Translational oncology
M1 - 102787
ER -