Cargando…

Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro

BACKGROUND: Investigations into alternative treatments for hypertension are necessary because current treatments cannot fully reduce the risk for the development of cardiovascular diseases. Chronic activation of unfolded protein response attributable to the endoplasmic reticulum stress has been prop...

Descripción completa

Detalles Bibliográficos
Autores principales: Cicalese, Stephanie, Torimoto, Keiichi, Okuno, Keisuke, Elliott, Katherine J., Rizzo, Victor, Hashimoto, Tomoki, Eguchi, Satoru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851446/
https://www.ncbi.nlm.nih.gov/pubmed/36444851
http://dx.doi.org/10.1161/JAHA.122.028201
_version_ 1784872397519716352
author Cicalese, Stephanie
Torimoto, Keiichi
Okuno, Keisuke
Elliott, Katherine J.
Rizzo, Victor
Hashimoto, Tomoki
Eguchi, Satoru
author_facet Cicalese, Stephanie
Torimoto, Keiichi
Okuno, Keisuke
Elliott, Katherine J.
Rizzo, Victor
Hashimoto, Tomoki
Eguchi, Satoru
author_sort Cicalese, Stephanie
collection PubMed
description BACKGROUND: Investigations into alternative treatments for hypertension are necessary because current treatments cannot fully reduce the risk for the development of cardiovascular diseases. Chronic activation of unfolded protein response attributable to the endoplasmic reticulum stress has been proposed as a potential therapeutic target for hypertension and associated vascular remodeling. Triggered by the accumulation of misfolded proteins, chronic unfolded protein response leads to downstream signaling of cellular inflammation and dysfunction. Here, we have tested our hypothesis that a novel chemical chaperone, 3‐hydroxy‐2‐naphthoic acid (3HNA) can attenuate angiotensin II (AngII)‐induced vascular remodeling and hypertension. METHODS AND RESULTS: Mice were infused with AngII for 2 weeks to induce vascular remodeling and hypertension with or without 3HNA treatment. We found that injections of 3HNA prevented hypertension and increase in heart weight body weight ratio induced by AngII infusion. Histological assessment revealed that 3HNA treatment prevented vascular medial thickening as well as perivascular fibrosis in response to AngII infusion. In cultured vascular smooth muscle cells, 3HNA attenuated enhancement in protein synthesis induced by AngII. In vascular adventitial fibroblasts, 3HNA prevented induction of unfolded protein response markers. CONCLUSIONS: We present evidence that a chemical chaperone 3HNA prevents vascular remodeling and hypertension in mice with AngII infusion, and 3HNA further prevents increase in protein synthesis in AngII‐stimulated vascular smooth muscle cells. Using 3HNA may represent a novel therapy for hypertension with multiple benefits by preserving protein homeostasis under cardiovascular stress.
format Online
Article
Text
id pubmed-9851446
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-98514462023-01-24 Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro Cicalese, Stephanie Torimoto, Keiichi Okuno, Keisuke Elliott, Katherine J. Rizzo, Victor Hashimoto, Tomoki Eguchi, Satoru J Am Heart Assoc Original Research BACKGROUND: Investigations into alternative treatments for hypertension are necessary because current treatments cannot fully reduce the risk for the development of cardiovascular diseases. Chronic activation of unfolded protein response attributable to the endoplasmic reticulum stress has been proposed as a potential therapeutic target for hypertension and associated vascular remodeling. Triggered by the accumulation of misfolded proteins, chronic unfolded protein response leads to downstream signaling of cellular inflammation and dysfunction. Here, we have tested our hypothesis that a novel chemical chaperone, 3‐hydroxy‐2‐naphthoic acid (3HNA) can attenuate angiotensin II (AngII)‐induced vascular remodeling and hypertension. METHODS AND RESULTS: Mice were infused with AngII for 2 weeks to induce vascular remodeling and hypertension with or without 3HNA treatment. We found that injections of 3HNA prevented hypertension and increase in heart weight body weight ratio induced by AngII infusion. Histological assessment revealed that 3HNA treatment prevented vascular medial thickening as well as perivascular fibrosis in response to AngII infusion. In cultured vascular smooth muscle cells, 3HNA attenuated enhancement in protein synthesis induced by AngII. In vascular adventitial fibroblasts, 3HNA prevented induction of unfolded protein response markers. CONCLUSIONS: We present evidence that a chemical chaperone 3HNA prevents vascular remodeling and hypertension in mice with AngII infusion, and 3HNA further prevents increase in protein synthesis in AngII‐stimulated vascular smooth muscle cells. Using 3HNA may represent a novel therapy for hypertension with multiple benefits by preserving protein homeostasis under cardiovascular stress. John Wiley and Sons Inc. 2022-12-06 /pmc/articles/PMC9851446/ /pubmed/36444851 http://dx.doi.org/10.1161/JAHA.122.028201 Text en © 2022 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Research
Cicalese, Stephanie
Torimoto, Keiichi
Okuno, Keisuke
Elliott, Katherine J.
Rizzo, Victor
Hashimoto, Tomoki
Eguchi, Satoru
Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro
title Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro
title_full Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro
title_fullStr Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro
title_full_unstemmed Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro
title_short Endoplasmic Reticulum Chemical Chaperone 3‐Hydroxy‐2‐Naphthoic Acid Reduces Angiotensin II‐Induced Vascular Remodeling and Hypertension In Vivo and Protein Synthesis In Vitro
title_sort endoplasmic reticulum chemical chaperone 3‐hydroxy‐2‐naphthoic acid reduces angiotensin ii‐induced vascular remodeling and hypertension in vivo and protein synthesis in vitro
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851446/
https://www.ncbi.nlm.nih.gov/pubmed/36444851
http://dx.doi.org/10.1161/JAHA.122.028201
work_keys_str_mv AT cicalesestephanie endoplasmicreticulumchemicalchaperone3hydroxy2naphthoicacidreducesangiotensiniiinducedvascularremodelingandhypertensioninvivoandproteinsynthesisinvitro
AT torimotokeiichi endoplasmicreticulumchemicalchaperone3hydroxy2naphthoicacidreducesangiotensiniiinducedvascularremodelingandhypertensioninvivoandproteinsynthesisinvitro
AT okunokeisuke endoplasmicreticulumchemicalchaperone3hydroxy2naphthoicacidreducesangiotensiniiinducedvascularremodelingandhypertensioninvivoandproteinsynthesisinvitro
AT elliottkatherinej endoplasmicreticulumchemicalchaperone3hydroxy2naphthoicacidreducesangiotensiniiinducedvascularremodelingandhypertensioninvivoandproteinsynthesisinvitro
AT rizzovictor endoplasmicreticulumchemicalchaperone3hydroxy2naphthoicacidreducesangiotensiniiinducedvascularremodelingandhypertensioninvivoandproteinsynthesisinvitro
AT hashimototomoki endoplasmicreticulumchemicalchaperone3hydroxy2naphthoicacidreducesangiotensiniiinducedvascularremodelingandhypertensioninvivoandproteinsynthesisinvitro
AT eguchisatoru endoplasmicreticulumchemicalchaperone3hydroxy2naphthoicacidreducesangiotensiniiinducedvascularremodelingandhypertensioninvivoandproteinsynthesisinvitro