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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Cancer cell membrane-cloaked mesoporous silica nanoparticles with a pH-sensitive gatekeeper for cancer treatment
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Cancer cell membrane-cloaked mesoporous silica nanoparticles with a pH-sensitive gatekeeper for cancer treatment

机译:癌细胞膜 - 克隆介孔二氧化硅纳米粒子,具有pH敏感的癌症治疗

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Nanoparticular drug delivery system (NDDS) has great potential for enhancing the efficacy of traditional chemotherapeutic drugs. However, it is still a great challenge to fabricate a biocompatible NDDS with simple structure capable of optimizing therapeutic efficacy, such as high tumor accumulation, suitable drug release profile (e.g. no premature drug leakage in normal physiological conditions while having a rapid release in cancer cells), low immunogenicity, as well as good biocompatibility. In this work, a simple core/shell structured nanoparticle was fabricated for prostate cancer treatment, in which a mesoporous silica nanoparticle core was applied as a container to high-efficiently encapsulate drugs (doxorubicin, DOX), CaCO3 interlayer was designed to act as sheddable pH-sensitive gatekeepers for controlling drug release, and cancer cell membrane wrapped outlayer could improve the colloid stability and tumor accumulation capacity. In vitro cell experiments demonstrated that the as-prepared nanovehicles (denoted as DOX/MSN@CaCO3@CM) could be efficiently uptaken by LNCaP-AI prostate cancer cells and even exhibited a better anti-tumor efficiency than free DOX. In addition, Live/Dead cell detection and apoptosis experiment demonstrated that MSN/DOX@CaCO3@CM could effectively induce apoptosis-related death in prostate cancer cells. In vivo antitumor results demonstrated that DOX/MSN@CaCO3@CM administration could remarkably suppress the tumor growth. Compared with other tedious approaches to optimize the therapeutic efficacy, this study provides an effective drug targeting system only using naturally biomaterials for the treatment of prostate cancer, which might have great potential in clinic usage.
机译:纳米颗粒药物递送系统(NDDS)具有提高传统化学治疗药物的疗效的潜力。然而,用能够优化治疗效果的简单结构制造生物相容性NDD仍然是一个巨大的挑战,例如高肿瘤积累,合适的药物释放曲线(例如在正常生理条件下没有过早的药物泄漏,同时在癌细胞中快速释放),低免疫原性,以及良好的生物相容性。在这项工作中,为前列腺癌处理制造了一种简单的核心/壳结构纳米粒子,其中将介孔的二氧化硅纳米颗粒核心作为容器施加到高效包封的药物(Doxorubicin,Dox)中,CaCO3中间层设计成可降低pH敏感的门守用于控制药物释放,癌细胞膜包裹的低贱药物可以改善胶体稳定性和肿瘤累积能力。体外细胞实验证明,通过LNCAP-AI前列腺癌细胞有效地升高为制备的纳米座(表示为DOX / MSN @ CM),甚至比自由DOX表现出更好的抗肿瘤效率。此外,Live / Dead Cell检测和凋亡实验表明MSN / DOX @ CACO3 @ C​​M可以有效地诱导前列腺癌细胞中的凋亡相关死亡。体内抗肿瘤结果表明,DOX / MSN @ CACO3 @ C​​M施用可以显着抑制肿瘤生长。与优化治疗效果的其他乏味方法相比,该研究提供了一种有效的药物靶向系统,仅使用自然生物材料来治疗前列腺癌,这可能在临床使用中具有很大的潜力。

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