Laboratory of Drug Development and Technologies, Faculty of Pharmacy, University of Coimbra, 3000-548 Coimbra, Portugal.
Instituto de Investigação e Inovação em Saúde, University of Porto, 4200-135 Porto, Portugal.
Int J Mol Sci. 2024 Sep 1;25(17):9516. doi: 10.3390/ijms25179516.
Most chemotherapeutic agents are poorly soluble in water, have low selectivity, and cannot reach the tumor in the desired therapeutic concentration. On the other hand, sensitive hydrophilic therapeutics like nucleic acids and proteins suffer from poor bioavailability and cell internalization. To solve this problem, new types of controlled release systems based on nano-sized self-assemblies of cyclodextrins able to control the speed, timing, and location of therapeutic release are being developed. Cyclodextrins are macrocyclic oligosaccharides characterized by a high synthetic plasticity and potential for derivatization. Introduction of new hydrophobic and/or hydrophilic domains and/or formation of nano-assemblies with therapeutic load extends the use of CDs beyond the tried-and-tested CD-drug host-guest inclusion complexes. The recent advances in nano drug delivery have indicated the benefits of the hybrid amphiphilic CD nanosystems over individual CD and polymer components. This review provides a comprehensive overview of the most recent advances in the design of CDs self-assemblies and their use for delivery of a wide range of therapeutic molecules. It aims to offer a valuable insight into the many roles of CDs within this class of drug nanocarriers as well as current challenges and future perspectives.
大多数化疗药物在水中溶解度差、选择性低,无法达到所需的治疗浓度的肿瘤部位。另一方面,像核酸和蛋白质这样的敏感亲水性治疗剂则存在生物利用度差和细胞内化的问题。为了解决这个问题,正在开发基于能够控制治疗释放速度、时间和位置的纳米尺寸环糊精自组装的新型控制释放系统。环糊精是具有高合成可塑性和衍生化潜力的大环寡糖。引入新的疏水性和/或亲水性基团和/或与治疗负荷形成纳米组装体,将 CD 的用途扩展到经过验证的 CD-药物主体包合物之外。最近在纳米药物输送方面的进展表明,混合两亲性 CD 纳米系统优于单独的 CD 和聚合物成分。本文综述了 CD 自组装设计及其在广泛治疗分子传递中的最新进展。它旨在深入了解 CD 在这类药物纳米载体中的多种作用,以及当前的挑战和未来的前景。