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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Erythrocyte membrane nano-capsules: biomimetic delivery and controlled release of photothermal-photochemical coupling agents for cancer cell therapy
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Erythrocyte membrane nano-capsules: biomimetic delivery and controlled release of photothermal-photochemical coupling agents for cancer cell therapy

机译:红细胞膜纳米胶囊:染色递送和控制释放的光热 - 光化学偶联剂用于癌细胞疗法

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Photothermal therapy (PTT), which involves an increase in temperature triggered only by light signals at tumor sites to remove cancer cells, has been considered an attractive strategy in cancer therapy. Nevertheless, the in vivo applications of photosensitizer-based PTT are limited due to the poor biocompatibility of photothermal agents. Employing red blood cell (RBC) membranes to encapsulate photothermal agents can solve this issue, but the extra surface coating will suppress heat dissipation, which is unfavorable for the subsequent treatment. Herein, biomimetic nano-capsules have been fabricated for light signal-activated cancer therapy by encapsulating photocatalyst titanium dioxide colloid and photothermal agent gold nanorods (Au NRs) in erythrocyte membrane vesicles. The fabricated Au/TiO2@RBC nano-capsules can achieve the controlled release of Au NRs upon the photocatalytic degradation of their surface cell membrane coatings, and generate therapeutic signals after the released Au NRs are irradiated by an NIR laser. Meanwhile, the reactive oxygen species (ROS) produced by photocatalysis are helpful for killing tumor cells photodynamically. Thus, the biomimetic nano-capsules prepared herein will contribute to the research and development in cancer cell therapy.
机译:光热疗法(PTT),涉及仅通过在肿瘤部位的光信号触发的温度增加以去除癌细胞,已被认为是癌症治疗的有吸引力的策略。然而,由于光热试剂的生物相容性差,基于光敏剂的PTT的体内应用受到限制。使用红细胞(RBC)膜来包封光热试剂可以解决该问题,但额外的表面涂层将抑制散热,这对于随后的治疗是不利的。这里,通过在红细胞膜囊泡中包封光催化剂钛二氧化钛胶体和光热试剂金纳米棒(Au NRS)来制造仿生纳米胶囊的光信号活化癌疗法。制造的Au / TiO 2 @ RBC纳米胶囊可以在其表面细胞膜涂层的光催化降解时实现Au nrs的控制释放,并在释放的Au nrs被Nir激光照射后产生治疗信号。同时,光催宿分析产生的反应性氧物质(ROS)有助于杀死光动力学的肿瘤细胞。因此,本文制备的仿生纳米胶囊将有助于癌细胞疗法的研究和发育。

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