4.7 Review

Smart gating porous particles as new carriers for drug delivery

期刊

ADVANCED DRUG DELIVERY REVIEWS
卷 174, 期 -, 页码 425-446

出版社

ELSEVIER
DOI: 10.1016/j.addr.2021.04.023

关键词

Stimuli-responsive polymers; Drug delivery; Biomedicine; Gatekeeper; Porous particles

资金

  1. Royal Golden Jubilee (RGJ) Ph.D. program of the National Research Council of Thailand [PHD/0108/2560]
  2. French Embassy fellowship
  3. Center of Excellence in Materials and Plasma Technology (CoE M@P Tech), Thammasat University, Thailand

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The design of smart drug delivery carriers, which can respond to environmental changes, allows for more flexibility and precision in drug delivery. The integration of porous materials with stimuli-responsive gatekeepers facilitates drug molecule diffusion and cell attachment. Controlled release systems enable targeted drug delivery to specific sites in the human body.
The design of smart drug delivery carriers has recently attracted great attention in the biomedical field. Smart carriers can specifically respond to physical and chemical changes in their environment, such as temperature, photoirradiation, ultrasound, magnetic field, pH, redox species, and biomolecules. This review summarizes recent advances in the integration of porous particles and stimuli-responsive gatekeepers for effective drug delivery. Their unique structural properties play an important role in facilitating the diffusion of drug molecules and cell attachment. Various techniques for fabricating porous materials, with their major advantages and limitations, are summarized. Smart gatekeepers provide advanced functions such as open-close switching by functionalized stimuli-responsive polymers on a particle's pores. These controlled delivery systems enable drugs to be targeted at specific rates, time programs, and sites of the human body. The gate structures, gating mechanisms, and controlled release mechanisms of each trigger are detailed. Current ongoing research and future trends in targeted drug delivery, tissue engineering, and regenerative medicine applications are highlighted. (c) 2021 Elsevier B.V. All rights reserved.

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