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Hyperthermia and Temperature-Sensitive Nanomaterials for Spatiotemporal Drug Delivery to Solid Tumors

机译:高温和温度敏感的纳米材料用于时尚药物输送到实体瘤

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摘要

Nanotechnology has great capability in formulation, reduction of side effects, and enhancing pharmacokinetics of chemotherapeutics by designing stable or long circulating nano-carriers. However, effective drug delivery at the cellular level by means of such carriers is still unsatisfactory. One promising approach is using spatiotemporal drug release by means of nanoparticles with the capacity for content release triggered by internal or external stimuli. Among different stimuli, interests for application of external heat, hyperthermia, is growing. Advanced technology, ease of application and most importantly high level of control over applied heat, and as a result triggered release, and the adjuvant effect of hyperthermia in enhancing therapeutic response of chemotherapeutics, i.e., thermochemotherapy, make hyperthermia a great stimulus for triggered drug release. Therefore, a variety of temperature sensitive nano-carriers, lipid or/and polymeric based, have been fabricated and studied. Importantly, in order to achieve an efficient therapeutic outcome, and taking the advantages of thermochemotherapy into consideration, release characteristics from nano-carriers should fit with applicable clinical thermal setting. Here we introduce and discuss the application of the three most studied temperature sensitive nanoparticles with emphasis on release behavior and its importance regarding applicability and therapeutic potentials.
机译:纳米技术通过设计稳定或长循环的纳米载体来制定,减少副作用和增强化学治疗药的药代动力学的能力很大。然而,借助于这种载体的细胞水平的有效药物递送仍然不令人满意。一种有希望的方法是通过纳米颗粒使用时颞尿药物释放,其具有由内部或外部刺激引发的含量释放的能力。在不同的刺激之外,施用外部热量,热疗的兴趣日益增长。先进的技术,易于应用和最重要的控制水平对应用的热量,并且作为触发的释放,以及热疗在增强化学治疗剂的治疗反应中的佐剂效果,即热化学疗法,使热疗成为触发药物释放的巨大刺激。因此,已经制造和研究了各种温度敏感的纳米载体,脂质或/和聚合物。重要的是,为了达到有效的治疗结果,并考虑到热化学疗法的优点,从纳米载体的释放特性应适用于适用的临床热凝固。在这里,我们介绍并讨论了三种最具研究的温度敏感纳米粒子的应用,重点是释放行为及其关于适用性和治疗潜力的重要性。

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