Case Center for Biomolecular Engineering, Department of Biomedical Engineering , Case Western Reserve University , Cleveland , Ohio 44106 , United States.
Mol Pharm. 2018 Sep 4;15(9):3603-3616. doi: 10.1021/acs.molpharmaceut.8b00037. Epub 2018 Mar 22.
The treatment of malignancies has undergone dramatic changes in the past few decades. Advances in drug delivery techniques and nanotechnology have allowed for new formulations of old drugs, so as to improve the pharmacokinetics, to enhance accumulation in solid tumors, and to reduce the significant toxic effects of these important therapeutic agents. Here, we review the published clinical data in cancer therapy of several major drug delivery systems, including targeted radionuclide therapy, antibody-drug conjugates, liposomes, polymer-drug conjugates, polymer implants, micelles, and nanoparticles. The clinical outcomes of these delivery systems from various phases of clinical trials are summarized. The success and limitations of the drug delivery strategies are discussed based on the clinical observations. In addition, the challenges in applying drug delivery for efficacious cancer therapy, including physical barriers, tumor heterogeneity, drug resistance, and metastasis, are discussed along with future perspectives of drug delivery in cancer therapy. In doing so, we intend to underscore that efficient delivery of cancer therapeutics to solid malignancies remains a major challenge in cancer therapy, and requires a multidisciplinary approach that integrates knowledge from the diverse fields of chemistry, biology, engineering, and medicine. The overall objective of this review is to improve our understanding of the clinical fate of commonly investigated drug delivery strategies, and to identify the limitations that must be addressed in future drug delivery strategies, toward the pursuit of curative therapies for cancer.
在过去的几十年中,恶性肿瘤的治疗发生了巨大的变化。药物输送技术和纳米技术的进步使得旧药物有了新的配方,从而改善了药物动力学,增强了在实体瘤中的积累,并减少了这些重要治疗剂的显著毒性作用。在这里,我们回顾了几种主要药物输送系统在癌症治疗中的已发表的临床数据,包括靶向放射性核素治疗、抗体药物偶联物、脂质体、聚合物药物偶联物、聚合物植入物、胶束和纳米颗粒。总结了这些输送系统在不同临床试验阶段的临床结果。根据临床观察讨论了药物输送策略的成功和局限性。此外,还讨论了应用药物输送进行有效癌症治疗所面临的挑战,包括物理屏障、肿瘤异质性、耐药性和转移,以及癌症治疗中药物输送的未来展望。这样做的目的是强调将癌症治疗药物有效递送至实体恶性肿瘤仍然是癌症治疗中的一个主要挑战,需要从化学、生物学、工程学和医学等多个领域整合知识的多学科方法。本综述的总体目标是提高我们对常用药物输送策略的临床结果的理解,并确定在未来药物输送策略中必须解决的局限性,以追求癌症的治愈疗法。