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Improving cancer immunotherapy through nanotechnology

机译:通过纳米技术改善癌症免疫疗法

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The 2018 Nobel Prize in Physiology or Medicine was awarded to pioneers in the field of cancer immunotherapy, as the utility of leveraging a patient's coordinated and adaptive immune system to fight the patient's unique tumour has now been validated robustly in the clinic. Still, the proportion of patients who respond to immunotherapy remains modest (similar to 15% objective response rate across indications), as tumours have multiple means of immune evasion. The immune system is spatiotemporally controlled, so therapies that influence the immune system should be spatiotemporally controlled as well, in order to maximize the therapeutic index. Nanoparticles and biomaterials enable one to program the location, pharmacokinetics and co-delivery of immunomodulatory compounds, eliciting responses that cannot be achieved upon administration of such compounds in solution. The convergence of cancer immunotherapy, nanotechnology, bioengineering and drug delivery is opportune, as each of these fields has matured independently to the point that it can now be used to complement the others substantively and rationally, rather than modestly and empirically. As a result, unmet needs increasingly can be addressed with deductive intention. This Review explores how nanotechnology and related approaches are being applied to augmenting both endogenous leukocytes and adoptively transferred ones by informing specificity, influencing localization and improving function.
机译:2018年诺贝尔生理学或医学奖授予先驱在癌症免疫治疗领域,如利用病人的协调和适应性免疫系统来对抗病人的肿瘤独特的效用,现已强劲的临床验证。不过,谁的病人以免疫响应仍然不大(类似于跨迹象表明15%的客观反应率),为肿瘤具有免疫逃避的多种方式的比例。免疫系统时空控制,从而影响免疫系统的治疗应时空控制为好,以便最大化治疗指数。纳米颗粒和生物材料使得一个的位置,药代动力学和免疫调节化合物的共同递送编程,引发不能当在溶液这样的化合物的给药可以实现响应。肿瘤免疫治疗,纳米技术,生物工程和药物传递的融合是适时的,因为这些领域的自主成熟,它现在可以用来实质合理补充别人,而不是谦虚和经验点。其结果是,未满足的需求越来越多,可以用演绎的意图解决。本回顾探讨如何纳米技术及相关的方法正被应用于通过告知特异性,影响定位和改进功能增强内源性白细胞和过继转移的。

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