Univ Lyon, University Claude Bernard Lyon-1, CNRS, ISA-UMR 5280, 69622 Villeurbanne, France; School of Bio-Chemical Engineering and Technology, Sirindhorn International Institute of Technology (SIIT), Thammasat University, Pathum Thani 12121, Thailand.
School of Bio-Chemical Engineering and Technology, Sirindhorn International Institute of Technology (SIIT), Thammasat University, Pathum Thani 12121, Thailand.
Adv Drug Deliv Rev. 2021 Jul;174:425-446. doi: 10.1016/j.addr.2021.04.023. Epub 2021 Apr 28.
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.
智能药物输送载体的设计最近在生物医学领域引起了极大关注。智能载体可以特异性地响应其环境中的物理和化学变化,例如温度、光照射、超声、磁场、pH 值、氧化还原物种和生物分子。本文综述了最近在将多孔颗粒与响应性门控器集成以实现有效药物输送方面的进展。它们独特的结构特性在促进药物分子扩散和细胞附着方面发挥着重要作用。总结了用于制造多孔材料的各种技术,以及它们的主要优点和局限性。智能门控器通过在颗粒孔上功能化响应性聚合物提供了“开-关”切换等先进功能。这些控制释放系统能够使药物以特定的速率、时间程序和人体部位进行靶向输送。详细介绍了每种触发物的门控结构、门控机制和控制释放机制。强调了靶向药物输送、组织工程和再生医学应用中当前正在进行的研究和未来趋势。