Neurotensin receptor 2 agonism attenuates adverse cardiac remodeling in preclinical models

Агонисты рецептора нейротензина 2 ослабляют неблагоприятное ремоделирование сердца в доклинических моделях
Nina Wettschureck, Stefan Offermanns, Peter Gmeiner, Jingchen Shao, Haruya Kawase, Stefan Günther, Jürgen Einsiedel, Samuel Sossalla, Pieterjan Dierickx, Niharika Shiva, Jeonghyeon Kwon, Shamit Kumar, Zhaoyu Du, Natalia Kubin, Miho Shimari, Tiangang Li
2026-07-01

NTSR2 agonist NT150cGMP productioncardiac remodelingneurotensin (NTS)neurotensin receptor 2 (NTSR2)
The neuropeptide neurotensin (NTS) is up-regulated in cardiac lymphatic endothelial cells (LECs) in response to ischemic or mechanical damage, but its role in cardiac remodeling is unknown. Here, we aimed to define the role of LEC-derived NTS in cardiac injury responses and to assess the therapeutic potential of targeting cardiac NTS signaling. In cultured murine and human cells, NTS reduced cardiomyocyte hypertrophy and fibroblast activation, and these effects were mediated by NTS receptor 2 (NTSR2)–dependent guanosine 3′,5′-monophosphate (cGMP) production. Consistent with an antihypertrophic and antifibrotic role of NTS, mice with LEC-specific Nts deletion exhibited aggravated hypertrophy and fibrosis after transverse aortic constriction (TAC) and myocardial infarction (MI). Similarly, cardiomyocyte-specific or activated fibroblast-specific inactivation of Ntsr2 led to enhanced cardiac remodeling after TAC. NTSR2 agonist NT150 reproduced the beneficial effects of NTS in cultured human and murine cells and ameliorated cardiac remodeling and dysfunction in both TAC and MI. Additionally, in freshly isolated cardiac tissues from patients with heart failure, NT150 induced cGMP production and suppressed prohypertrophic signaling. These findings identify NTS as an endogenous inhibitor of adverse cardiac remodeling and suggest NTSR2 agonism as a therapeutic strategy in heart failure.
1
Cardiomyocyte-specific or activated fibroblast-specific inactivation of Ntsr2 similarly enhanced cardiac remodeling after TAC, implicating NTSR2 in multiple cardiac cell types.
2
In cultured murine and human cells, NTS reduced cardiomyocyte hypertrophy and fibroblast activation via NTS receptor 2 (NTSR2)-dependent cGMP production.
3
In freshly isolated cardiac tissues from patients with heart failure, NT150 induced cGMP production and suppressed prohypertrophic signaling, supporting translational potential of NTSR2 agonism.
4
Mice with LEC-specific deletion of Nts showed aggravated hypertrophy and fibrosis after transverse aortic constriction (TAC) and myocardial infarction (MI).
5
Neurotensin (NTS) is up-regulated in cardiac lymphatic endothelial cells (LECs) after ischemic or mechanical damage and acts as an endogenous inhibitor of adverse cardiac remodeling.
6
The NTSR2 agonist NT150 reproduced NTS benefits in cultured cells and ameliorated cardiac remodeling and dysfunction in both TAC and MI preclinical models.

Cardiac neurotensin (NTS) signaling via NTS receptor 2 (NTSR2) in heart tissue (including lymphatic endothelial cells, cardiomyocytes, and activated fibroblasts) during cardiac injury and remodeling

Effect of NTS/NTSR2 signaling and NTSR2 agonism (NT150) on adverse cardiac remodeling, specifically antihypertrophic and antifibrotic actions mediated by cGMP production and resulting changes in cardiac hypertrophy, fibrosis, and dysfunction after myocardial injury (TAC and MI)

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2026-07-01
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Nina Wettschureck
Stefan Offermanns
Peter Gmeiner
Jingchen Shao
Haruya Kawase
Stefan Günther
Jürgen Einsiedel
Samuel Sossalla
Pieterjan Dierickx
Niharika Shiva
Jeonghyeon Kwon
Shamit Kumar
Zhaoyu Du
Natalia Kubin
Miho Shimari
Tiangang Li
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