【2h】

A smart MnO

机译:一个聪明的mno.

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摘要

The combination of chemotherapy and photodynamic therapy provides a promising approach for enhanced tumor eradication by overcoming the limitations of each individual therapeutic modality. However, tumor is pathologically featured with extreme hypoxia together with the adaptable overexpression of anti-oxidants, such as glutathione (GSH), which greatly restricts the therapeutic efficiency. Here, a combinatorial strategy was designed to simultaneously relieve tumor hypoxia by self-oxygenation and reduce intracellular GSH level to sensitize chemo-photodynamic therapy. In our system, a novel multi-functional nanosystem based on MnO2-doped graphene oxide (GO) was developed to co-load cisplatin (CisPt) and a photosensitizer (Ce6). With MnO2 doping, the nanosystem was equipped with intelligent functionalities: (1) catalyzes the decomposition of H2O2 into oxygen to relieve the tumor hypoxia; (2) depletes GSH level in tumor cells, and (3) concomitantly generates Mn2+ to proceed Fenton-like reaction, all of which contribute to the enhanced anti-tumor efficacy. Meanwhile, the surface hyaluronic acid (HA) modification could facilitate the targeted delivery of the nanosystem into tumor cells, thereby resulting in amplified cellular toxicity, as well as tumor growth inhibition in nude mice model. This work sheds a new light on the development of intelligent nanosystems for synergistic combination therapy via regulating tumor microenvironment.
机译:化学疗法和光动力治疗的组合提供了通过克服每种疗效的局限性来增强肿瘤根除的有希望的方法。然而,肿瘤与极端缺氧一起出现病理上,与抗氧化剂的适应性过表达,例如谷胱甘肽(GSH),这极大地限制了治疗效率。这里,设计组合策略以通过自氧化同时缓解肿瘤缺氧,并降低细胞内GSH水平以敏化化学光动力疗法。在我们的系统中,开发了一种基于MNO2掺杂的石墨烯氧化物(GO)的新型多功能纳米系统以加上顺式顺铂(CISPT)和光敏剂(CE6)。通过MnO2掺杂,纳米系统配备智能功能:(1)催化H2O2分解成氧气以缓解肿瘤缺氧; (2)吞噬肿瘤细胞中的GSH水平,(3)伴随地产生MN2 +以进行芬顿样反应,所有这些反应都有助于增强的抗肿瘤效果。同时,表面透明质酸(HA)改性可以促进纳米系统的靶向递送到肿瘤细胞中,从而导致裸鼠模型中的肿瘤生长抑制。这项工作通过调节肿瘤微环境对协同组合治疗的智能纳米系统开发的新光。

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