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Apelin analog treatment reverses severe pulmonary arterial hypertension and right ventricular heart failure
Jennie Vu, Pavel Zhabyeyev, Kemar J. Brown, Joshua Gorham, Daniel M. DeLaughter, Huachen Chen, Thilina U. Jayawardena, Ander Vergara, Maria Alexiou, Anjalee Wijewardane, Conrad Fischer, Charlotte Avet, Abby Ewasiuk, Faqi Wang, Mark C. Chappell, Yuri Kim, Michel Bouvier, John C. Vederas, Christine E. Seidman, Jonathan G. Seidman, Gavin Y. Oudit
Jennie Vu, Pavel Zhabyeyev, Kemar J. Brown, Joshua Gorham, Daniel M. DeLaughter, Huachen Chen, Thilina U. Jayawardena, Ander Vergara, Maria Alexiou, Anjalee Wijewardane, Conrad Fischer, Charlotte Avet, Abby Ewasiuk, Faqi Wang, Mark C. Chappell, Yuri Kim, Michel Bouvier, John C. Vederas, Christine E. Seidman, Jonathan G. Seidman, Gavin Y. Oudit
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Research Article Cardiology Pulmonology Vascular biology

Apelin analog treatment reverses severe pulmonary arterial hypertension and right ventricular heart failure

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Abstract

Pulmonary arterial hypertension (PAH) is a progressive vascular syndrome characterized by aberrant signaling, severe pulmonary artery remodeling, and right ventricular (RV) failure, a major driver of morbidity and mortality. Dysregulation of the apelinergic pathway has been implicated in pulmonary vascular remodeling in PAH. Using a sugen-hypoxia rat model of PAH, we assessed the ability of a potentially novel apelin analog, resistant to native peptidase degradation, to reverse the pathological hallmarks of PAH and RV dysfunction. Apelin analog therapy corrected the vascular lesions in the lungs and nearly normalized pulmonary arterial pressures. Early cardiorenal syndrome, RV dilation, and dysfunction, as well as RV cardiomyocyte and fibroblast activation induced by pressure overload, were also reversed by apelin analog treatment. Single-nucleus RNA-seq of the lungs and RV revealed apelin-analog treatment activated several protective pathways, including rebalancing protective bone morphogenetic protein receptor type 2 (BMPR2) signaling to counteract excessive pathogenic TGF-β receptor 2 (TGFBR2) activity in PAH. These findings highlight the therapeutic potential of exogenous apelin in reversing pulmonary vascular and cardiac pathologies in PAH and support further investigation to evaluate the clinical benefits of apelin analog treatment in patients with PAH and RV failure.

Authors

Jennie Vu, Pavel Zhabyeyev, Kemar J. Brown, Joshua Gorham, Daniel M. DeLaughter, Huachen Chen, Thilina U. Jayawardena, Ander Vergara, Maria Alexiou, Anjalee Wijewardane, Conrad Fischer, Charlotte Avet, Abby Ewasiuk, Faqi Wang, Mark C. Chappell, Yuri Kim, Michel Bouvier, John C. Vederas, Christine E. Seidman, Jonathan G. Seidman, Gavin Y. Oudit

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Figure 8

Apelin analog restores endothelial barrier integrity, viability, and nitric oxide–cGMP signaling in pulmonary arterial hypertension.

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Apelin analog restores endothelial barrier integrity, viability, and nit...
(A) Bioplanet enrichment analyses of significantly altered pathways within endothelial cells due to PAH (PAH-P versus CTRL). (B) Representative images and quantification of immunofluorescent costaining of human pulmonary artery endothelial cells (HPAEC) with VE-cadherin (VE; green), F-actin (red), and DAPI (blue) (n = 8 replicates). Scale bar: 200 µm. (C) Viability assay for HPAEC across treatment groups (n = 8 replicates). (D) Annexin V (B586)/propidium iodide (Y586) dual-staining flow cytometry and quantification of live cells (Annexin V–/PI–) (n = 3 replicates). (E) p-Akt/Akt S473 and p-ERK/ERK ratio from Western blots (n = 4 replicates). (F) Quantification of p-eNOS/eNOS S1177 ratio from Western blots (n = 4 replicates). (G) Nitric oxide (NO) production in HPAECs across treatment groups (n = 8 replicates). (H) cGMP production in HPAECs across treatment groups (n = 8 replicates). CTRL, control rats or cells cultured in aerobic conditions; PAH-P, PAH rats treated with placebo; PAH-A, PAH rats treated with apelin analog. eNOS, endothelial nitric oxide synthase; p-eNOS, phospho eNOS; ERK, extracellular signal-regulated kinase; p-ERK, phospho-ERK; SU/Hx+P, cell cultured in sugen with hypoxia; SU/Hx+A, SU/Hx plus apelin-17 analog; RFU, relative fluorescent unit; L-NAME, NG-nitro-L-arginine methyl ester. snRNA-seq data: n = 4 animals per treatment condition. Data are shown as mean ± SD. Comparisons are done with 1-way ANOVA Tukey’s post hoc analysis for multiple comparisons. *P < 0.05, **P < 0.01, ***P < 0.001.

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