Institute of Pharmaceutical Sciences, Guru Ghasidas Vishwavidyalaya (A Central University), Bilaspur, 495 009, Chhattisgarh, India.
Curr Drug Targets. 2020;21(8):819-836. doi: 10.2174/1389450121666200106105633.
Traditional drug delivery approaches remained ineffective in offering better treatment to various neurodegenerative disorders (NDs). In this context, diverse types of nanocarriers have shown their great potential to cross the blood-brain barrier (BBB) and have emerged as a prominent carrier system in drug delivery. Moreover, nanotechnology-based methods usually involve numerous nanosized carrier platforms, which potentiate the effect of the therapeutic agents in the therapy of NDs especially in diagnosis and drug delivery with negligible side effects. In addition, nanotechnology-based techniques have offered several strategies to cross BBB to intensify the bioavailability of drug moieties in the brain. In the last few years, diverse kinds of nanoparticles (NPs) have been developed by incorporating various biocompatible components (e.g., polysaccharide-based NPs, polymeric NPs, selenium NPs, AuNPs, protein-based NPs, gadolinium NPs, etc.), that showed great therapeutic benefits against NDs. Eventually, this review provides deep insights to explore recent applications of some innovative nanocarriers enclosing active molecules for the efficient treatment of NDs.
传统的药物输送方法在为各种神经退行性疾病(NDs)提供更好的治疗方面仍然效果不佳。在这种情况下,各种类型的纳米载体已经显示出它们穿过血脑屏障(BBB)的巨大潜力,并成为药物输送中的突出载体系统。此外,基于纳米技术的方法通常涉及许多纳米级载体平台,这些平台增强了治疗剂在 NDs 治疗中的效果,特别是在诊断和药物输送方面,几乎没有副作用。此外,基于纳米技术的技术提供了几种穿越 BBB 的策略,以提高药物在大脑中的生物利用度。在过去的几年中,已经开发出了多种通过结合各种生物相容性成分(例如,基于多糖的 NPs、聚合物 NPs、硒 NPs、AuNPs、基于蛋白质的 NPs、钆 NPs 等)的纳米粒子(NPs),这些 NPs 对 NDs 表现出了很好的治疗效果。最终,这篇综述深入探讨了一些创新的纳米载体在封装活性分子以有效治疗 NDs 方面的最新应用。