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Multi-targeting cancer chemotherapy using temperature-responsive drug carrier systems

机译:使用温度响应性药物载体系统的多靶点癌症化疗

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Recently, a growing number of nano-scale drug carrier systems (e.g., drug-polymer conjugates, lipo-somes, and polymeric micelles) attract great attention for targeting cancer therapy due to a passively selective accumulation at solid tumor tissues and a subsequent anti-cancer activity. However, for the present drug targeting carrier systems, the target-selective delivery and release of loaded drugs are incapable to control completely. To overcome these current issues, stimuli-responsive drug carriers have been developed as the next-generation drug targeting systems. If drugs can be delivered to target sites via passive targeting of stimuli-responsive carriers and then released from the carriers by external physical signals, the systems are termed "multi-targeting systems" which are quite attractive for achieving the target site selective pharmaceutical action with reducing adverse effects. As possible external signals, temperature change is one of useful stimuli due to its low invasiveness to living body system and simple site-selective application using medical devices. To install temperature-responsive function to drug carriers, temperature-responsive polymers play significant roles in signal-triggering drug release and carrier-interaction with target cells and tissues. This review introduces several molecular designs for temperature-responsive drug carriers and discusses their potentials as a smart drug targeting system for an effective cancer chemotherapy.
机译:最近,由于在实体瘤组织上的被动选择性蓄积以及随后的抗肿瘤治疗,越来越多的纳米级药物载体系统(例如,药物-聚合物结合物,脂质体和聚合物胶束)引起了对靶向癌症治疗的极大关注。癌症活动。然而,对于本发明的药物靶向载体系统,负载药物的靶标选择性递送和释放不能完全控制。为了克服这些当前问题,已经开发了刺激响应性药物载体作为下一代药物靶向系统。如果可以通过被动响应刺激响应载体将药物传递到目标部位,然后通过外部物理信号从载体中释放出来,则该系统被称为“多目标系统”,对于实现目标部位的选择性药物作用非常有吸引力。减少不良影响。作为可能的外部信号,温度变化是一种有用的刺激,因为它对活体系统的侵袭性低,并且使用医疗设备的位置选择应用简单。为了对药物载体安装温度响应功能,温度响应聚合物在触发信号释放药物以及与靶细胞和组织的载体相互作用中起重要作用。这篇综述介绍了对温度敏感的药物载体的几种分子设计,并讨论了它们作为有效的癌症化学疗法的智能药物靶向系统的潜力。

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