Key Laboratory of Pesticide and Chemical Biology, Ministry of Education, College of Chemistry, Central China Normal University (CCNU), Wuhan, 430079, PR China.
College of Resources and Environmental Science, South-Central Minzu University, Wuhan 430074, PR China.
J Agric Food Chem. 2022 Oct 12;70(40):12746-12759. doi: 10.1021/acs.jafc.2c04822. Epub 2022 Sep 12.
Traditional drugs have the disadvantages of poor permeability and low solubility, which makes the utilization of pesticides lower and brings many side effects. With the continuous development of supramolecular chemistry in recent years, it has also played an irreplaceable role in the field of pharmaceutical science. Supramolecular macrocycles, such as crown ethers, cyclodextrins, calixarenes, pillararenes and cucurbiturils, are potentially good candidates for drug carriers due to their biocompatibility, hydrophobic cavity and ease of derivatization. The encapsulation of drugs based on host-guest interaction has the advantage of being adjustable and reversible as well as improving the low availability of drugs. Here, the recent advances in methods and strategies for drug encapsulation and release based on supramolecular macrocycles with host-guest interactions have been systematically summarized, laying a bright foundation for the development of novel nanopesticide preparations in the future and pointing out future directions of novel biopesticide research.
传统药物具有渗透性差和溶解度低的缺点,这使得农药的利用率降低,并带来许多副作用。近年来,超分子化学的不断发展,也在药物科学领域发挥了不可替代的作用。超分子大环,如冠醚、环糊精、杯芳烃、柱芳烃和瓜环,由于其生物相容性、疏水性空腔和易于衍生化,是药物载体的潜在良好候选物。基于主客体相互作用的药物包封具有可调节和可逆的优点,并且可以提高药物的低可用性。在这里,系统地总结了基于主客体相互作用的超分子大环的药物包封和释放方法和策略的最新进展,为未来新型纳米农药制剂的发展奠定了良好的基础,并指出了新型生物农药研究的未来方向。