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1.
Biomedicines ; 12(7)2024 Jul 06.
Artículo en Inglés | MEDLINE | ID: mdl-39062077

RESUMEN

Atherosclerosis is a common form of cardiovascular disease, which is one of the most prevalent causes of death worldwide, particularly among older individuals. Surgery is the mainstay of treatment for severe stenotic lesions, though the rate of restenosis remains relatively high. Current medication therapy for atherosclerosis has limited efficacy in reversing the formation of atherosclerotic plaques. The search for new drug treatment options is imminent. Some potent medications have shown surprising therapeutic benefits in inhibiting inflammation and endothelial proliferation in plaques. Unfortunately, their use is restricted due to notable dose-dependent systemic side effects or degradation. Nevertheless, with advances in nanotechnology, an increasing number of nano-related medical applications are emerging, such as nano-drug delivery, nano-imaging, nanorobots, and so forth, which allow for restrictions on the use of novel atherosclerotic drugs to be lifted. This paper reviews new perspectives on the targeted delivery of nanoparticles to blood vessels for the treatment of atherosclerosis in both systemic and local drug delivery. In systemic drug delivery, nanoparticles inhibit drug degradation and reduce systemic toxicity through passive and active pathways. To further enhance the precise release of drugs, the localized delivery of nanoparticles can also be accomplished through blood vessel wall injection or using endovascular interventional devices coated with nanoparticles. Overall, nanotechnology holds boundless potential for the diagnosis and treatment of atherosclerotic diseases in the future.

2.
Front Immunol ; 15: 1364161, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38803504

RESUMEN

Introduction: Atherosclerosis, a leading cause of global cardiovascular mortality, is characterized by chronic inflammation. Central to this process is the NOD-like receptor pyrin domain containing 3 (NLRP3) inflammasome, which significantly influences atherosclerotic progression. Recent research has identified that the olfactory receptor 2 (Olfr2) in vascular macrophages is instrumental in driving atherosclerosis through NLRP3- dependent IL-1 production. Methods: To investigate the effects of Corilagin, noted for its anti-inflammatory attributes, on atherosclerotic development and the Olfr2 signaling pathway, our study employed an atherosclerosis model in ApoE-/- mice, fed a high-fat, high-cholesterol diet, alongside cellular models in Ana-1 cells and mouse bone marrow-derived macrophages, stimulated with lipopolysaccharides and oxidized low-density lipoprotein. Results: The vivo and vitro experiments indicated that Corilagin could effectively reduce serum lipid levels, alleviate aortic pathological changes, and decrease intimal lipid deposition. Additionally, as results showed, Corilagin was able to cut down expressions of molecules associated with the Olfr2 signaling pathway. Discussion: Our findings indicated that Corilagin effectively inhibited NLRP3 inflammasome activation, consequently diminishing inflammation, macrophage polarization, and pyroptosis in the mouse aorta and cellular models via the Olfr2 pathway. This suggests a novel therapeutic mechanism of Corilagin in the treatment of atherosclerosis.


Asunto(s)
Aterosclerosis , Glucósidos , Taninos Hidrolizables , Inflamasomas , Macrófagos , Proteína con Dominio Pirina 3 de la Familia NLR , Transducción de Señal , Animales , Taninos Hidrolizables/farmacología , Taninos Hidrolizables/uso terapéutico , Proteína con Dominio Pirina 3 de la Familia NLR/metabolismo , Aterosclerosis/tratamiento farmacológico , Aterosclerosis/metabolismo , Ratones , Transducción de Señal/efectos de los fármacos , Inflamasomas/metabolismo , Glucósidos/farmacología , Glucósidos/uso terapéutico , Macrófagos/metabolismo , Macrófagos/inmunología , Macrófagos/efectos de los fármacos , Masculino , Modelos Animales de Enfermedad , Ratones Endogámicos C57BL , Ratones Noqueados para ApoE
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