4.5 Article

Efficient Treatment of Atherosclerosis by Dexamethasone Acetate and Rapamycin Co-Loaded mPEG-DSPE Calcium Phosphate Nanoparticles

期刊

JOURNAL OF BIOMEDICAL NANOTECHNOLOGY
卷 16, 期 6, 页码 810-826

出版社

AMER SCIENTIFIC PUBLISHERS
DOI: 10.1166/jbn.2020.2936

关键词

Atherosclerosis; Autophagy; Dexamethasone Acetate; Rapamycin; Calcium Phosphate Nanoparticle

资金

  1. Interdisciplinary Program of Shanghai Jiao Tong University [YG2015MS28]
  2. Shanghai Science and Technology Committee Fund [15411969100, 16411969300]
  3. Shanghai Health and Family Planning Commission Fund [201440290, 201640043]
  4. Three-year Plan for Clinical Skills and Innovation in Municipal Hospitals [16CR3105B]
  5. Technology Transfer Project of Sience and Technogy Dept., Shanghai Jiao Tong University School of Medicine [ZT201710, ZT201711]
  6. National Natural Science Foundation of China [81771839, 81773272]
  7. State Key Laboratory of Oncogenes and Related Genes [91-17-20]

向作者/读者索取更多资源

Atherosclerosis (AS) is one of the leading causes of vascular disease, producing high morbidity and mortality in many countries. Autophagy plays an important role when cells are facing serious circumstances, such as oxidative stress induced by Ox-LDL (oxidized low-density lipoprotein). Recent studies have revealed that DEX (dexamethasone acetate) and RAPA (rapamycin) exhibit efficient AS therapeutic ability by protecting endothelial cells and killing foam cells, respectively. Herein, we hypothesize that combining DEX and RAPA together in a specific nanocarrier system can achieve better AS therapy while limiting harmful effects. As a proof of concept, DEX and RAPA coloaded mPEG(2k)-DSPE calcium phosphate (CaP) nanoparticles (DR-NPs) were prepared by using a biomineralization method. DR-NPs increased HUVEC survival and induced foam cell apoptosis in vitro, which were correlated with autophagy activity. DR-NPs efficiently aggregated at AS plaques in the carotid artery and abdominal artery in ApoE(-/-) mice 24 h after i.v. injection. Moreover, DR-NPs exhibited excellent plaque regression ability, with smaller necrotic cores and lipid core areas observed after in vivo treatment. Furthermore, the function of vascular endothelial cells was largely promoted, as evidenced by the dramatically decreased expression levels of adhesion factors, such as MMP-2, MMP-9 and ICAM-1. Consequently, DR-NPs can act as an effective AS therapeutic agent and broaden the AS therapeutic approach by inducing autophagy.

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