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Toward the next-generation nanomedicines: Design of multifunctional multiblock polyurethanes for effective cancer treatment

机译:迈向下一代纳米药物:多功能多嵌段聚氨酯的设计,可有效治疗癌症

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摘要

Specific accumulation of therapeutics at tumor sites to improve in vivo biodistribution and therapeutic efficacy of anticancer drugs is a major challenge for cancer therapy. Herein, we demonstrate a new generation of intelligent nanosystem integrating multiple functionalities in a single carrier based on multifunctional multiblock polyurethane (MMPU). The smart nanocarriers equipped with stealth, active targeting, and internalizable properties can ferry paclitaxel selectively into tumor tissue, rapidly enter cancer cells, and controllably release their payload in response to an intracellular acidic environment, thus resulting in an improved biodistribution and excellent antitumor activity in vivo. Our work provides a facile and versatile approach for the design and fabrication of smart intracellular targeted nanovehicles for effective cancer treatment, and opens a new era in the development of biodegradable polyurethanes for next-generation nanodelivery systems.
机译:治疗剂在肿瘤部位的特定积累以改善体内抗癌药物的生物分布和治疗功效是癌症治疗的主要挑战。本文中,我们展示了基于多功能多嵌段聚氨酯(MMPU)在单一载体中整合多种功能的新一代智能纳米系统。具有隐身,主动靶向和可内化特性的智能纳米载体可以选择性地将紫杉醇运送到肿瘤组织中,迅速进入癌细胞,并响应细胞内酸性环境而可控地释放其有效负载,从而改善了生物分布并具有出色的抗肿瘤活性。体内。我们的工作为设计和制造用于有效癌症治疗的智能细胞内靶向纳米载体提供了一种简便而通用的方法,并为下一代纳米递送系统的可生物降解聚氨酯的开发开辟了新纪元。

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