4.7 Article

Hyaluronic Acid-Functionalized Mesoporous Silica Nanoparticles Loading Simvastatin for Targeted Therapy of Atherosclerosis

期刊

PHARMACEUTICS
卷 14, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics14061265

关键词

atherosclerosis; mesoporous silica nanoparticles; simvastatin; hyaluronic acid; enzyme-responsive drug release

资金

  1. Macau Science and Technology Development Fund [FDCT 0009/2020/AMJ, 0009/2019/A, 0083/2019/A2, 0007/2019/AKP]
  2. Natural Science Foundation of Guangdong Province [2019A1515011258, 2019A1515011150]
  3. National Natural Science Foundation of China [51903253]

向作者/读者索取更多资源

In this study, an enzyme-responsive and macrophage-targeting drug delivery system was constructed for precise treatment of atherosclerosis. The results showed that the system had high drug loading efficiency and enzyme-responsive release, as well as robust targeting, anti-inflammatory, and anti-foaming effects, with low cytotoxicity and excellent hemocompatibility.
Atherosclerosis (AS) constitutes a major threat to human health, yet most current therapeutics are hindered in achieving desirable clinical outcomes by low bioavailability or serious side effects. Herein, we constructed an enzyme-responsive and macrophage-targeting drug delivery system (SIM@HA-MSN) which can potentially modulate the microenvironment of the atherosclerotic plaques characterized by excessive inflammation and overexpression of hyaluronidase (HAase) for precise AS treatment. More specifically, mesoporous silica nanoparticles (MSNs) were loaded with a lipid-lowering drug simvastatin (SIM) and further gated with hyaluronic acid (HA) coating, which endowed the nanosystem with HAase responsiveness and targetability to inflammatory macrophages. Our results showed that a high loading efficiency (>20%) and excellent enzyme-responsive release of SIM were simultaneously achieved for the first time by silica-based nanocarriers through formulation optimizations. Moreover, in vitro experiments confirmed that SIM@HA-MSN possessed robust targeting, anti-inflammatory, and anti-foaming effects, along with low cytotoxicity and excellent hemocompatibility. In addition, preliminary animal experiments demonstrated the as-established nanosystem had a long plasma-retention time and good biocompatibility in vivo. Taken together, SIM@HA-MSN with HA playing triple roles including gatekeeping, lesion-targeting, and long-circulating holds great potential for the management of atherosclerosis.

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