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Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms

Abdominal aortic aneurysm (AAA) is a progressive aortic dilatation, causing ∼80% mortality upon rupture. Currently, there is no approved drug therapy for AAA. Surgical repairs are invasive and risky and thus not recommended to patients with small AAAs which, however, account for ∼90% of the newly di...

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Autores principales: Yodsanit, Nisakorn, Shirasu, Takuro, Huang, Yitao, Yin, Li, Islam, Zain Husain, Gregg, Alexander Christopher, Riccio, Alessandra Marie, Tang, Runze, Kent, Eric William, Wang, Yuyuan, Xie, Ruosen, Zhao, Yi, Ye, Mingzhou, Zhu, Jingcheng, Huang, Yi, Hoyt, Nicholas, Zhang, Mengxue, Hossack, John A., Salmon, Morgan, Kent, K. Craig, Guo, Lian-Wang, Gong, Shaoqin, Wang, Bowen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9975632/
https://www.ncbi.nlm.nih.gov/pubmed/36875050
http://dx.doi.org/10.1016/j.bioactmat.2023.02.009
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author Yodsanit, Nisakorn
Shirasu, Takuro
Huang, Yitao
Yin, Li
Islam, Zain Husain
Gregg, Alexander Christopher
Riccio, Alessandra Marie
Tang, Runze
Kent, Eric William
Wang, Yuyuan
Xie, Ruosen
Zhao, Yi
Ye, Mingzhou
Zhu, Jingcheng
Huang, Yi
Hoyt, Nicholas
Zhang, Mengxue
Hossack, John A.
Salmon, Morgan
Kent, K. Craig
Guo, Lian-Wang
Gong, Shaoqin
Wang, Bowen
author_facet Yodsanit, Nisakorn
Shirasu, Takuro
Huang, Yitao
Yin, Li
Islam, Zain Husain
Gregg, Alexander Christopher
Riccio, Alessandra Marie
Tang, Runze
Kent, Eric William
Wang, Yuyuan
Xie, Ruosen
Zhao, Yi
Ye, Mingzhou
Zhu, Jingcheng
Huang, Yi
Hoyt, Nicholas
Zhang, Mengxue
Hossack, John A.
Salmon, Morgan
Kent, K. Craig
Guo, Lian-Wang
Gong, Shaoqin
Wang, Bowen
author_sort Yodsanit, Nisakorn
collection PubMed
description Abdominal aortic aneurysm (AAA) is a progressive aortic dilatation, causing ∼80% mortality upon rupture. Currently, there is no approved drug therapy for AAA. Surgical repairs are invasive and risky and thus not recommended to patients with small AAAs which, however, account for ∼90% of the newly diagnosed cases. It is therefore a compelling unmet clinical need to discover effective non-invasive strategies to prevent or slow down AAA progression. We contend that the first AAA drug therapy will only arise through discoveries of both effective drug targets and innovative delivery methods. There is substantial evidence that degenerative smooth muscle cells (SMCs) orchestrate AAA pathogenesis and progression. In this study, we made an exciting finding that PERK, the endoplasmic reticulum (ER) stress Protein Kinase R-like ER Kinase, is a potent driver of SMC degeneration and hence a potential therapeutic target. Indeed, local knockdown of PERK in elastase-challenged aorta significantly attenuated AAA lesions in vivo. In parallel, we also conceived a biomimetic nanocluster (NC) design uniquely tailored to AAA-targeting drug delivery. This NC demonstrated excellent AAA homing via a platelet-derived biomembrane coating; and when loaded with a selective PERK inhibitor (PERKi, GSK2656157), the NC therapy conferred remarkable benefits in both preventing aneurysm development and halting the progression of pre-existing aneurysmal lesions in two distinct rodent models of AAA. In summary, our current study not only establishes a new intervention target for mitigating SMC degeneration and aneurysmal pathogenesis, but also provides a powerful tool to facilitate the development of effective drug therapy of AAA.
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spelling pubmed-99756322023-03-02 Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms Yodsanit, Nisakorn Shirasu, Takuro Huang, Yitao Yin, Li Islam, Zain Husain Gregg, Alexander Christopher Riccio, Alessandra Marie Tang, Runze Kent, Eric William Wang, Yuyuan Xie, Ruosen Zhao, Yi Ye, Mingzhou Zhu, Jingcheng Huang, Yi Hoyt, Nicholas Zhang, Mengxue Hossack, John A. Salmon, Morgan Kent, K. Craig Guo, Lian-Wang Gong, Shaoqin Wang, Bowen Bioact Mater Article Abdominal aortic aneurysm (AAA) is a progressive aortic dilatation, causing ∼80% mortality upon rupture. Currently, there is no approved drug therapy for AAA. Surgical repairs are invasive and risky and thus not recommended to patients with small AAAs which, however, account for ∼90% of the newly diagnosed cases. It is therefore a compelling unmet clinical need to discover effective non-invasive strategies to prevent or slow down AAA progression. We contend that the first AAA drug therapy will only arise through discoveries of both effective drug targets and innovative delivery methods. There is substantial evidence that degenerative smooth muscle cells (SMCs) orchestrate AAA pathogenesis and progression. In this study, we made an exciting finding that PERK, the endoplasmic reticulum (ER) stress Protein Kinase R-like ER Kinase, is a potent driver of SMC degeneration and hence a potential therapeutic target. Indeed, local knockdown of PERK in elastase-challenged aorta significantly attenuated AAA lesions in vivo. In parallel, we also conceived a biomimetic nanocluster (NC) design uniquely tailored to AAA-targeting drug delivery. This NC demonstrated excellent AAA homing via a platelet-derived biomembrane coating; and when loaded with a selective PERK inhibitor (PERKi, GSK2656157), the NC therapy conferred remarkable benefits in both preventing aneurysm development and halting the progression of pre-existing aneurysmal lesions in two distinct rodent models of AAA. In summary, our current study not only establishes a new intervention target for mitigating SMC degeneration and aneurysmal pathogenesis, but also provides a powerful tool to facilitate the development of effective drug therapy of AAA. KeAi Publishing 2023-02-21 /pmc/articles/PMC9975632/ /pubmed/36875050 http://dx.doi.org/10.1016/j.bioactmat.2023.02.009 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Yodsanit, Nisakorn
Shirasu, Takuro
Huang, Yitao
Yin, Li
Islam, Zain Husain
Gregg, Alexander Christopher
Riccio, Alessandra Marie
Tang, Runze
Kent, Eric William
Wang, Yuyuan
Xie, Ruosen
Zhao, Yi
Ye, Mingzhou
Zhu, Jingcheng
Huang, Yi
Hoyt, Nicholas
Zhang, Mengxue
Hossack, John A.
Salmon, Morgan
Kent, K. Craig
Guo, Lian-Wang
Gong, Shaoqin
Wang, Bowen
Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms
title Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms
title_full Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms
title_fullStr Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms
title_full_unstemmed Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms
title_short Targeted PERK inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms
title_sort targeted perk inhibition with biomimetic nanoclusters confers preventative and interventional benefits to elastase-induced abdominal aortic aneurysms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9975632/
https://www.ncbi.nlm.nih.gov/pubmed/36875050
http://dx.doi.org/10.1016/j.bioactmat.2023.02.009
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