Biomedical Engineering Chemical and Biochemical Engineering, Rutgers University, Piscataway, NJ 08854-5610, USA.
Curr Pharm Biotechnol. 2012 Jun;13(7):1306-16. doi: 10.2174/138920112800624256.
Solid tumors constitute the majority of diagnosed cancers. For effective killing, therapeutic agents should ideally be delivered uniformly and at lethal doses to all cancer cells comprising the tumors, while keeping normal organ toxicities to a minimum. This requirement sets two of the major challenges in drug delivery to solid cancers: uniformity in delivery, and delivery of at least a minimum amount of therapeutics per cancer cell. Herein we review various approaches that aim to improve the penetration and content release of delivered therapeutic agents from nanocarriers of self-assembling nature. Biophysical characteristics of solid tumors are briefly discussed to motivate and rationalize the design of reported nanoparticle structures. This review does not aim to be exhaustive of the various designs and strategies, but to mostly give a flavor of the general current directions aiming to address these challenges.
实体瘤构成了大多数已诊断的癌症。为了有效杀伤,治疗剂理想地应均匀地递送至肿瘤中所有的癌细胞,并达到致死剂量,同时将正常器官毒性降至最低。这一要求给药物递送至实体瘤带来了两个主要挑战:递送至肿瘤的均匀性,以及每个癌细胞递送达至少最小量的治疗剂。在此,我们综述了旨在改善自组装纳米载体中治疗剂的渗透和释放含量的各种方法。简要讨论了实体瘤的生物物理特性,以激发和合理化所报道的纳米颗粒结构的设计。本综述并非详尽无遗地涵盖各种设计和策略,而是主要展示了一般当前方向,旨在应对这些挑战。