Department of Polymers, Faculty of Chemical Technology, University of Chemistry and Technology Prague, Technická 5, 16628 Prague, Czech Republic.
Nanoscale. 2019 Apr 4;11(14):6519-6532. doi: 10.1039/c8nr08022d.
Conventional drug delivery systems face several issues in medical applications, such as cyto/genotoxicity and off-targeting. These issues are particularly significant for cancer therapeutics because many of the currently used systems are toxic in their free form. Self-propelled autonomous micro/nanomachines offer promising alternative drug delivery systems based on high cargo loading, fast autonomous movement, precise targeting and the on-demand release of therapeutics in vivo. With this unique set of properties, it is not surprising that they are receiving considerable research attention. However, much less is reported about the drawbacks that hinder their systemic in vivo application. In this review, a biomedical perspective is used to assess micro/nanomotor-based anticancer drug delivery systems reported to date. Advantages along with present issues are highlighted and recommendations which need to be considered to develop an effective biocompatible micro/nanomotor-based delivery system for cancer therapy are discussed.
传统的药物输送系统在医学应用中面临着一些问题,如细胞/遗传毒性和脱靶。这些问题在癌症治疗中尤为重要,因为目前许多使用的系统在游离形式下是有毒的。自推进自主微/纳米机器提供了有前途的替代药物输送系统,基于高载药量、快速自主运动、精确靶向和按需在体内释放治疗剂。由于具有这组独特的特性,它们受到广泛关注也就不足为奇了。然而,关于阻碍它们系统体内应用的缺点的报道却很少。在这篇综述中,从生物医学的角度评估了迄今为止报道的基于微/纳米马达的抗癌药物输送系统。强调了优点和目前存在的问题,并讨论了为癌症治疗开发有效生物相容的基于微/纳米马达的输送系统需要考虑的建议。