Sobolev A S
Institute of Gene Biology, Russian Academy of Sciences, Moscow,119334 Russia.
Lomonosov Moscow State University, Moscow, 119234 Russia.
Acta Naturae. 2020 Oct-Dec;12(4):47-56. doi: 10.32607/actanaturae.11049.
Development of vehicles for the subcellular targeted delivery of biologically active agents is very promising for the purposes of translational medicine. This review summarizes the results obtained by researchers from the Laboratory of Molecular Genetics of Intracellular Transport, Institute of Gene Biology RAS, which allowed them to design the core technology: modular nanotransporters. This approach ensures high efficacy and cell specificity for different anti-cancer agents, as they are delivered into the most vulnerable subcellular compartment within the cells of interest and makes it possible for antibody mimetics to penetrate into a compartment of interest within the target cells ("diving antibodies"). Furthermore, polyplexes, complexes of polycationic block copolymers of DNA, have been developed and characterized. These complexes are efficient both and and demonstrate predominant transfection of actively dividing cells.
开发用于生物活性剂亚细胞靶向递送的载体对于转化医学而言极具前景。本综述总结了俄罗斯科学院基因生物学研究所细胞内运输分子遗传学实验室研究人员所取得的成果,这些成果使他们能够设计出核心技术:模块化纳米转运体。这种方法确保了不同抗癌药物的高效性和细胞特异性,因为它们被递送至目标细胞内最脆弱的亚细胞区室,并且使抗体模拟物能够渗透到靶细胞内的目标区室(“潜水抗体”)。此外,还开发并表征了聚复合物,即DNA的聚阳离子嵌段共聚物复合物。这些复合物在[具体方面1]和[具体方面2]都很有效,并且在活跃分裂细胞中表现出主要的转染作用。