Wang Ruoning, Zhang Xinru, Feng Kuanhan, Zeng Wei, Wu Jie, Sun Danni, Lu Ziyi, Feng Hao, Di Liuqing
School of Pharmacy, Nanjing University of Chinese Medicine, Nanjing 210023, China.
Jiangsu Provincial TCM Engineering Technology Research Center of High Efficient Drug Delivery System, Nanjing 210023, China.
Asian J Pharm Sci. 2023 Sep;18(5):100857. doi: 10.1016/j.ajps.2023.100857. Epub 2023 Oct 19.
Biological nanotechnologies have provided considerable opportunities in the management of malignancies with delicate design and negligible toxicity, from preventive and diagnostic to therapeutic fields. Lipoproteins, because of their inherent blood-brain barrier permeability and lesion-homing capability, have been identified as promising strategies for high-performance theranostics of brain diseases. However, the application of natural lipoproteins remains limited owing to insufficient accumulation and complex purification processes, which can be critical for individual therapeutics and clinical translation. To address these issues, lipoprotein-inspired nano drug-delivery systems (nano-DDSs), which have been learned from nature, have been fabricated to achieve synergistic drug delivery involving site-specific accumulation and tractable preparation with versatile physicochemical functions. In this review, the barriers in brain disease treatment, advantages of state-of-the-art lipoprotein-inspired nano-DDSs, and bio-interactions of such nano-DDSs are highlighted. Furthermore, the characteristics and advanced applications of natural lipoproteins and tailor-made lipoprotein-inspired nano-DDSs are summarized. Specifically, the key designs and current applications of lipoprotein-inspired nano-DDSs in the field of brain disease therapy are intensively discussed. Finally, the current challenges and future perspectives in the field of lipoprotein-inspired nano-DDSs combined with other vehicles, such as exosomes, cell membranes, and bacteria, are discussed.
生物纳米技术通过精巧的设计和可忽略不计的毒性,在恶性肿瘤的管理方面提供了相当多的机会,涵盖从预防、诊断到治疗等领域。脂蛋白因其固有的血脑屏障通透性和病灶归巢能力,已被确定为脑部疾病高性能诊疗一体化的有前景的策略。然而,天然脂蛋白的应用仍然有限,这是由于积累不足和纯化过程复杂,而这些对于个体化治疗和临床转化可能至关重要。为了解决这些问题,受脂蛋白启发的纳米药物递送系统(纳米DDS)已被制造出来,它们借鉴了自然界的经验,以实现协同药物递送,包括位点特异性积累和具有多种物理化学功能的易于处理的制备。在这篇综述中,强调了脑部疾病治疗中的障碍、最先进的受脂蛋白启发的纳米DDS的优势以及此类纳米DDS的生物相互作用。此外,总结了天然脂蛋白和定制的受脂蛋白启发的纳米DDS的特性及先进应用。具体而言,深入讨论了受脂蛋白启发的纳米DDS在脑部疾病治疗领域的关键设计和当前应用。最后,讨论了受脂蛋白启发的纳米DDS与其他载体(如外泌体、细胞膜和细菌)结合领域当前面临的挑战和未来前景。