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Stimuli-responsive nanoscale drug delivery systems for cancer therapy

机译:刺激响应性纳米级药物递送系统,用于癌症治疗

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摘要

Currently, with the rapid development of nanotechnology, novel drug delivery systems (DDSs) have made rapid progress, in which nanocarriers play an important role in the tumour treatment. In view of the conventional chemotherapeutic drugs with many restrictions such as nonspecific systemic toxicity, short half-life and low concentration in the tumour sites, stimuli-responsive DDSs can deliver anti-tumour drugs targeting to the specific sites of tumours. Owing to precise stimuli response, stimuli-responsive DDSs can control drug release, so as to improve the curative effects, reduce the damage of normal tissues and organs, and decrease the side effects of traditional anticancer drugs. At present, according to the physico-chemical properties and structures of nanomaterials, they can be divided into three categories: (1) endogenous stimuli-responsive materials, including pH, enzyme and redox responsive materials; (2) exogenous stimuli-responsive materials, such as temperature, light, ultrasound and magnetic field responsive materials; (3) multi-stimuli responsive materials. This review mainly focuses on the researches and developments of these novel stimuli-responsive DDSs based on above-mentioned nanomaterials and their clinical applications.
机译:目前,随着纳米技术的快速发展,新型药物递送系统(DDS)进行了快速进展,其中纳米载波在肿瘤治疗中发挥着重要作用。鉴于常规化学治疗药物具有许多限制的诸如非特异性的全身毒性,肿瘤位点的短半衰期和低浓度,刺激响应性DDS可以递送靶向肿瘤的特定部位的抗肿瘤药物。由于精确的刺激反应,刺激响应性DDS可以控制药物释放,以改善疗效,降低正常组织和器官的损伤,降低传统抗癌药物的副作用。目前,根据纳米材料的物理化学性质和结构,它们可分为三类:(1)内源性刺激响应材料,包括pH,酶和氧化还原响应材料; (2)外源刺激响应材料,如温度,光,超声波和磁场响应材料; (3)多刺激反应材料。本综述主要侧重于基于上述纳米材料及其临床应用的这些新型刺激性DDS的研究和开发。

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