Development of Pro-resolving and Pro-efferocytic Nanoparticles for Atherosclerosis Therapy.


Journal

ACS pharmacology & translational science
ISSN: 2575-9108
Titre abrégé: ACS Pharmacol Transl Sci
Pays: United States
ID NLM: 101721411

Informations de publication

Date de publication:
11 Oct 2024
Historique:
received: 20 05 2024
revised: 13 08 2024
accepted: 15 08 2024
pmc-release: 13 09 2025
medline: 17 10 2024
pubmed: 17 10 2024
entrez: 17 10 2024
Statut: epublish

Résumé

Atherosclerosis is a major contributor to cardiovascular diseases with a high global prevalence. It is characterized by the formation of lipid-laden plaques in the arteries, which eventually lead to plaque rupture and thrombosis. While the current lipid-lowering therapies are generally effective in lowering the risk of cardiovascular events, they do not address the underlying causes of disease. Defective resolution of inflammation and impaired efferocytosis are the main driving forces of atherosclerosis. Macrophages recognize cells for clearance by the expression of "eat me" and "do not eat me" signals, including the CD47-SIRPα axis. However, the "do not eat me" signal CD47 is overexpressed in atherosclerotic plaques, leading to compromised efferocytosis and secondary necrosis. In this context, prophagocytic antibodies have been explored to stimulate the clearance of apoptotic cells, but they are nonspecific and impact healthy tissues. In macrophages, downstream of signal regulatory protein α, lie protein tyrosine phosphatases, SHP 1/2, which can serve as effective targets for selectively phagocytosing apoptotic cells. While increasing the efferocytosis targets the end stages of lesion development, the underlying issue of inflammation still persists. Simultaneously increasing efferocytosis and reducing inflammation can be effective therapeutic strategies for managing atherosclerosis. For instance, IL-10 is a key anti-inflammatory mediator that enhances efferocytosis via phosphoSTAT3 (pSTAT3) activation. In this study, we developed a combination nanotherapy by encapsulating an SHP-1 inhibitor (NSC 87877) and IL-10 in a single nanoparticle platform [(S + IL)-NPs] to enhance efferocytosis and inflammation resolution. Our studies suggest that (S + IL)-NPs successfully encapsulated both agents, entered the macrophages, and delivered the agents into intracellular compartments. Additionally, (S + IL)-NPs decreased inflammation by suppressing pro-inflammatory markers and enhancing anti-inflammatory mediators. They also exhibited the potential for improved phagocytic activity via pSTAT3 activation. Our nanomedicine-mediated upregulation of the anti-inflammatory and efferocytic responses in macrophages shows promise for the treatment of atherosclerosis.

Identifiants

pubmed: 39416959
doi: 10.1021/acsptsci.4c00292
pmc: PMC11475319
doi:

Types de publication

Journal Article

Langues

eng

Pagination

3086-3095

Informations de copyright

© 2024 The Authors. Published by American Chemical Society.

Déclaration de conflit d'intérêts

The authors declare no competing financial interest.

Auteurs

Yukta Patel (Y)

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Kidney Research Centre, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8M5, Canada.
Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.

Shireesha Manturthi (S)

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Kidney Research Centre, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8M5, Canada.
Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.

Saras Tiwari (S)

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Kidney Research Centre, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8M5, Canada.
Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.

Esha Gahunia (E)

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Kidney Research Centre, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8M5, Canada.
Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.

Amandine Courtemanche (A)

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Kidney Research Centre, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8M5, Canada.
Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.

Michelle Gandelman (M)

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Kidney Research Centre, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8M5, Canada.
Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.

Marceline Côté (M)

Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Department of Biochemistry Microbiology and Immunology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.

Suresh Gadde (S)

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Kidney Research Centre, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8M5, Canada.
Ottawa Institute of Systems Biology, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Centre for Infection, Immunity, and Inflammation, Faculty of Medicine, University of Ottawa, Ottawa K1H 8M5, Canada.
Ottawa-Carleton Institute for Biomedical Engineering (OCIBME), Ottawa K1N 6N5, Canada.

Classifications MeSH