Yitian Chen , Lishan Liu , Ming Li , Xiaolian Chen , Yaoqi Li , Jing Tao , Yibin Deng
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引用次数: 0
Abstract
Cancer treatment faces significant challenges including inadequate tumor specificity, drug resistance, and severe side effects, often resulting in unsatisfactory patient outcomes. Nanomedicines offer a transformative platform for tumor-targeted drug delivery and antitumor potency activation, providing an indispensable strategy for overcoming the severe damage to normal tissues caused by the inherent "always-on" cytotoxicity of conventional therapeutic agents. This review focuses on the emerging concept of "nanoparticle-enabled in situ drug potency activation", where inactive or minimally toxic agents are selectively activated within tumors to enhance the therapeutic efficacy and minimize the adverse effects. We systematically analyzed literature from PubMed and Web of Science databases spanning the last two decades, emphasizing experimental evidence supporting this in situ drug potency activation concept. Key strategies including stimuli-responsive prodrug nanoparticles, metal-induced activation, and bioorthogonal reactions are critically evaluated for their potential to overcome limitations in current cancer therapies. The findings highlight the potential of in situ potency activation as a promising alternative to conventional therapeutics, with far-reaching implications for advancing effective and safe cancer treatments.
癌症治疗面临着重大挑战,包括肿瘤特异性不足、耐药和严重的副作用,往往导致患者预后不理想。纳米药物为肿瘤靶向药物传递和抗肿瘤效力激活提供了一个变革性的平台,为克服传统治疗药物固有的“永远在线”细胞毒性对正常组织造成的严重损伤提供了不可或缺的策略。这篇综述的重点是“纳米颗粒原位药物效力激活”这一新兴概念,即在肿瘤内选择性激活无活性或毒性最小的药物,以提高治疗效果并将不良反应降到最低。我们系统地分析了PubMed和Web of Science数据库中过去20年的文献,强调了支持这种原位药物效力激活概念的实验证据。关键策略包括刺激反应前药纳米颗粒、金属诱导活化和生物正交反应,因为它们有潜力克服当前癌症治疗的局限性。这些发现突出了原位效力激活作为传统治疗方法的一种有希望的替代方法的潜力,对推进有效和安全的癌症治疗具有深远的意义。
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The journal publishes research articles, review articles and scientific commentaries on all aspects of the pharmaceutical sciences with emphasis on conceptual novelty and scientific quality. The Editors welcome articles in this multidisciplinary field, with a focus on topics relevant for drug discovery and development.
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