Department of Pharmaceutical Sciences, College of Pharmacy, Princess Nourah Bint Abdulrahman University, Riyadh, Saudi Arabia.
Medical and Bio-allied Health Sciences Research Centre, Ajman University, Ajman, United Arab Emirates.
Int J Nanomedicine. 2021 Nov 11;16:7517-7533. doi: 10.2147/IJN.S333657. eCollection 2021.
The advent of nanotechnologies such as nanocarriers and nanotherapeutics has changed the treatment strategy and developed a more efficacious novel drug delivery system. Various drug delivery systems are focused on drug-targeting of brain cells. However, the manifestation of the brain barrier is the main hurdle for the effective delivery of chemotherapeutics, ultimately causing treatment failure of various drugs. To solve this problem, various nanocarrier-based drug delivery system has been developed for brain targeting. This review outlines nanocarrier-based composites for different brain diseases and highlights nanocarriers for drug targeting towards brain cells. It also summarizes the latest developments in nanocarrier-based delivery systems containing liposomal systems, dendrimers, polymeric micelles, polymeric nanocarriers, quantum dots (QDs), and gold nanoparticles. Besides, the optimal properties of nanocarriers and therapeutic implications for brain targeting have been extensively studied. Finally, the potential applications and research opportunities for nanocarriers in brain targeting are discussed.
纳米技术的出现,如纳米载体和纳米疗法,改变了治疗策略,并开发了更有效的新型药物传递系统。各种药物传递系统都集中在针对脑细胞的药物靶向上。然而,血脑屏障的表现是化学治疗药物有效传递的主要障碍,最终导致各种药物的治疗失败。为了解决这个问题,已经开发了各种基于纳米载体的药物传递系统用于脑靶向。本综述概述了用于治疗不同脑部疾病的基于纳米载体的复合材料,并重点介绍了用于靶向脑细胞的纳米载体。它还总结了基于纳米载体的递药系统的最新进展,其中包括脂质体系统、树枝状大分子、聚合物胶束、聚合物纳米载体、量子点(QD)和金纳米颗粒。此外,还广泛研究了纳米载体的最佳特性和脑靶向的治疗意义。最后,讨论了纳米载体在脑靶向中的潜在应用和研究机会。