Department of Medicinal and Pharmaceutical Chemistry, Pharmaceutical and Drug Industries Research Division, National Research Centre, Cairo, Egypt.
Department of Exact Sciences, National Higher School of Bechar, Bechar, Algeria.
Chirality. 2021 May;33(5):196-208. doi: 10.1002/chir.23303. Epub 2021 Mar 1.
Chiral molecules in relation to particular biological roles are stereoselective. Enantiomers differ significantly in their biochemical responses in biological environment. Despite the current advancement in drug discovery and pharmaceutical biotechnology, the chiral separation of some racemic mixtures continues to be one of the greatest challenges, because the available techniques are too costly and time consuming for the assessment of therapeutic drugs in the early stages of development worldwide. Various nanoparticles became one of the most investigated and explored nanotechnology-derived nanostructures especially in chirality where several studies are reported to improve enantiomeric separation of different racemic mixtures. The production of surface-modified nanoparticles has contributed to these limitations in terms of sensitivity, accuracy, and enantioselectivity that can be optimized and therefore makes these surface-modified nanoparticles convenient for enantiomeric identification and separation.
手性分子与特定的生物作用有关,具有立体选择性。对映体在生物环境中的生化反应有显著差异。尽管药物发现和药物生物技术取得了目前的进展,但一些外消旋混合物的手性分离仍然是最大的挑战之一,因为现有的技术对于评估全球开发早期阶段的治疗药物来说过于昂贵和耗时。各种纳米粒子已成为研究和探索最多的纳米技术衍生纳米结构之一,特别是在手性方面,据报道,许多研究都旨在改善不同外消旋混合物的对映体分离。表面修饰纳米粒子的生产有助于解决这些在灵敏度、准确性和对映选择性方面的限制,这些限制可以进行优化,因此使这些表面修饰纳米粒子便于对映体的鉴定和分离。