Journal of Shanghai Jiao Tong University (Medical Science) ›› 2025, Vol. 45 ›› Issue (12): 1687-1693.doi: 10.3969/j.issn.1674-8115.2025.12.015

• Review • Previous Articles    

Application progress of nanomaterial-based delivery systems in atherosclerosis

CHEN Liang, WU Biao, YUAN Liangxi()   

  1. Department of Vascular Surgery, The First Affiliated Hospital of the Naval Medical University, Shanghai 200433, China
  • Received:2025-06-05 Accepted:2025-09-28 Online:2025-12-28 Published:2025-12-28
  • Contact: YUAN Liangxi E-mail:yuanlx116@163.com
  • Supported by:
    National Natural Science Foundation of China(82270521)

Abstract:

Atherosclerosis (AS), a chronic vascular inflammatory disease characterized by scattered and deep-seated lesions, is a major cause of cardiovascular disease. Efficient drug delivery is crucial for enhancing therapeutic efficacy in this condition. Nanomaterials exhibit significant advantages in drug delivery systems owing to their unique physicochemical properties. Through targeted surface functionalization, they enable precise drug targeting, promote enhanced accumulation at pathological sites, reduce off-target biodistribution, and ultimately improve both therapeutic efficacy and safety profiles. Nano-delivery systems, categorized based on material characteristics into four major classes—lipid-based, polymeric, inorganic, and biomimetic nanocarriers—have multifunctional composite designs that support multimodal synergistic therapies (e.g., photothermal conversion and magnetic-responsive imaging-guided therapy). These approaches hold significant potential for enhancing therapeutic efficiency in AS management. This review synthesizes recent advances in nanocarrier-based strategies for AS management, focusing on the synthesis of diverse nanocarrier types, targeting mechanisms, and multimodal applications. It covers representative achievements ranging from basic research to preclinical studies and partial clinical trials, while outlining future development directions for nanotechnology-based therapeutic strategies and providing critical perspectives on technical innovations and persistent translational hurdles in this field.

Key words: nanomaterial, nanotechnology, atherosclerosis

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