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Multifunctional single-drug loaded nanoparticles for enhanced cancer treatment with low toxicity in vivo

机译:多功能单药物负载纳米粒子,用于增强癌症治疗,体内毒性低

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Platinum( II ) complexes are used for treating over half of cancers in the clinic. However, their application is accompanied with acquired resistance and severe toxic side effects. To address these challenges, a multifunctional single drug constructed from a photo-activated oxaliplatin( IV ) complex and DMC was conjugated to polymer to form multifunctional single-drug-loaded nanoparticles. When the nanoparticles are internalized by cancer cells via endocytosis, active oxaliplatin( II ) can be released upon UVA irradiation to attack DNA, while DMC will be hydrolyzed subsequently from the polymer chain within the intracellular environment to block DNA repair by PP2A inhibition. The multifunctional single-drug-loaded nanoparticles exhibited enhanced anti-cancer efficacy and decreased toxicity compared to oxaliplatin( II ) in vitro and in vivo . This enhanced cancer treatment strategy could have potential clinical use in the near future.
机译:铂(II)复合物用于治疗临床中的一半癌症。然而,它们的应用伴随着获得的抗性和严重的毒性副作用。为了解决这些挑战,由光活化的奥沙利铂(IV)复合物和DMC构建的多功能单一药物与聚合物缀合,形成多功能单药物纳米颗粒。当纳米颗粒通过内吞作用的癌细胞内化时,可以在UVA照射到攻击DNA时释放有源oxaliplatin(II),而DMC将随后从细胞内环境内的聚合物链水解,以阻止通过PP2A抑制来阻止DNA修复。与奥沙利铂(II)在体外和体内相比,多功能单药物负载纳米颗粒表现出增强的抗癌疗效和毒性下降。这种增强的癌症治疗策略可以在不久的将来具有潜在的临床应用。

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