Hematology and Oncology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Cellular and Molecular Research Center, Qom University of Medical Sciences, Qom, Iran.
J Control Release. 2021 Feb 10;330:1046-1070. doi: 10.1016/j.jconrel.2020.11.011. Epub 2020 Nov 11.
Short interfering RNAs (siRNAs), as small non-coding RNA fragments, are one of the widely studied RNAi inducers for gene modulations. The reasonably designed siRNA probes provide a novel potential therapeutic strategy for cancer therapy via silencing the specific cancer-promoting gene. The optimization of physicochemical properties of delivery vectors, such as stability, the possibility of surface functionalization, size, charge, biocompatibility, biodegradability, and non-immunogenicity with receptor-mediated targeting ligands, is necessary for effective intracellular siRNA delivery. The present review is focused on the recent progress of the non-viral nanocarriers for siRNA cancer treatment based on synthetic approaches associated with cyclodextrin (CD)-based carbohydrate polymers, i.e. CD-cationic polymers, CD-polyrotaxanes, CD-dendrimers, and CD-modified tumor-specific targeting ligands. Besides, the efficiency of nanocarriers-based stimuli-responsive CDs is described for the simultaneous delivery of siRNAs and chemotherapeutic drugs. Further, theranostic CD compounds are introduced for the specific diagnosis and cargo-targeting delivery to the specific disease sites. In the meantime, the development of the inherent fluorescent CD-based supramolecular biomaterials without formal chromophores will open up a new strategy to design an effective theranostic non-viral carrier system.
短干扰 RNA(siRNA)作为小的非编码 RNA 片段,是研究广泛的 RNAi 诱导物之一,用于基因调控。合理设计的 siRNA 探针通过沉默特定的促进癌症的基因,为癌症治疗提供了一种新的潜在治疗策略。为了实现有效的细胞内 siRNA 递呈,必须优化递呈载体的物理化学性质,如稳定性、表面功能化的可能性、大小、电荷、生物相容性、生物可降解性和受体介导的靶向配体的非免疫原性。本综述重点介绍了基于合成方法的非病毒纳米载体在 siRNA 癌症治疗方面的最新进展,这些方法与环糊精(CD)基碳水化合物聚合物相关,即 CD-阳离子聚合物、CD-聚轮烷、CD-树枝状聚合物和 CD 修饰的肿瘤特异性靶向配体。此外,还描述了基于纳米载体的刺激响应性 CD 用于同时递呈 siRNA 和化疗药物的效率。此外,还介绍了治疗诊断学 CD 化合物,用于特定疾病部位的特异性诊断和货物靶向递呈。同时,具有内在荧光的 CD 基超分子生物材料的开发无需引入发色团,为设计有效的治疗诊断学非病毒载体系统开辟了新的策略。