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β-Cyclodextrin and Hyaluronic Acid-Modified Targeted Nanodelivery System for Atherosclerosis Prevention

  • Jinjin Yu
  • , Yajing Ma
  • , Xinya Zhang
  • , Siqi Wang
  • , Lili Zhou
  • , Xinyao Liu
  • , Lingli Li
  • , Lingyi Liu
  • , Huixin Song
  • , Yuzhi Luo
  • , Sha Wen
  • , Weifeng Li
  • , Xiaofeng Niu
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

Natural products have been widely recognized in clinical treatment because of their low toxicity and high activity. It is worth paying attention to modifying the biopolymer into nanostructures to give natural active ingredients additional targeting effects. In this study, based on the multifunctional modification of β-cyclodextrin (β-CD), a nanoplatform encapsulating the unstable drug (−)-epicatechin gallate (ECG) was designed to deliver to atherosclerotic plaques. Acetalization cyclodextrin (PH-CD), which responds to low-pH environments, and hyaluronic acid cyclodextrin, which targets the CD44 receptor on macrophage membranes, were synthesized from β-CD and hyaluronic acid using acetalization and transesterification, respectively. The resulting dual-carrier nanoparticles (Double-NPs) loaded with ECG were prepared using a solvent evaporation method. The Double-NPs effectively scavenged reactive oxygen species, promoted macrophage migration, inhibited macrophage apoptosis, and suppressed abnormal proliferation and migration of vascular smooth muscle cells. Furthermore, the Double-NPs actively accumulated in atherosclerotic plaques in ApoE-/- mice fed with a high-fat diet, leading to a reduced plaque area, inflammatory infiltration, and plaque instability. Our findings demonstrate that the newly developed ECG nanopreparation represents an effective and safe nanotherapy for diseases such as atherosclerosis.

Original languageEnglish
Pages (from-to)35421-35437
Number of pages17
JournalACS Applied Materials and Interfaces
Volume16
Issue number27
DOIs
StatePublished - 10 Jul 2024

Keywords

  • CD44 targeting
  • low pH-responsive
  • naturally active products
  • targeted vascular plaque
  • β-cyclodextrin

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