纳米技术
药物输送
门控
靶向给药
智能聚合物
控制释放
材料科学
毒品携带者
生物物理学
聚合物
生物
复合材料
作者
Kamonchanok Thananukul,Chariya Kaewsaneha,Pakorn Opaprakasit,Noureddine Lebaz,Abdelhamid Errachid,Abdelhamid Elaı̈ssari
标识
DOI:10.1016/j.addr.2021.04.023
摘要
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.
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