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首页> 外文期刊>Nanoscale >Triggering the nanophase separation of albumin through multivalent binding to glycogen for drug delivery in 2D and 3D multicellular constructs
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Triggering the nanophase separation of albumin through multivalent binding to glycogen for drug delivery in 2D and 3D multicellular constructs

机译:引发的白蛋白纳米相分离通过多价结合糖原药物交货在2 d和3 d的多细胞结构

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摘要

Engineered nanoparticles for the encapsulation of bioactive agents hold promise to improve disease diagnosis, prevention and therapy. To advance this field and enable clinical translation, the rational design of nanoparticles with controlled functionalities and a robust understanding of nanoparticle–cell interactions in the complex biological milieu are of paramount importance. Herein, a simple platform obtained through the nanocomplexation of glycogen nanoparticles and albumin is introduced for the delivery of chemotherapeutics in complex multicellular 2D and 3D systems. We found that the dendrimer-like structure of aminated glycogen nanoparticles is key to controlling the multivalent coordination and phase separation of albumin molecules to form stable glycogen–albumin nanocomplexes. The pH-responsive glycogen scaffold conferred the nanocomplexes the ability to undergo partial endosomal escape in tumour, stromal and immune cells while albumin enabled nanocomplexes to cross endothelial cells and carry therapeutic agents. Limited interactions of nanocomplexes with T cells, B cells and natural killer cells derived from human blood were observed. The nanocomplexes can accommodate chemotherapeutic drugs and release them in multicellular 2D and 3D constructs. The drugs loaded on the nanocomplexes retained their cytotoxic activity, which is comparable with the activity of the free drugs. Cancer cells were found to be more sensitive to the drugs in the presence of stromal and immune cells. Penetration and cytotoxicity of the drug-loaded nanocomplexes in tumour mimicking tissues were validated using a 3D multicellular-collagen construct in a perfusion bioreactor. The results highlight a simple and potentially scalable strategy for engineering nanocomplexes made entirely of biological macromolecules with potential use for drug delivery.
机译:工程纳米颗粒的封装生物活性代理承诺改善疾病诊断、预防和治疗。这一领域,使临床翻译设计合理的纳米粒子与控制功能和一个健壮的理解nanoparticle-cell交互的复杂生物环境是非常重要的。这里,一个简单的平台获得通过nanocomplexation糖原的纳米颗粒白蛋白的介绍化疗在复杂的多细胞2 d和3 d系统。胺化了的糖原结构纳米粒子多价的协调控制的关键和相位分离白蛋白分子的形成稳定glycogen-albumin nanocomplexes。pH-responsive糖原支架授予nanocomplexes接受部分的能力endosomal逃脱在肿瘤间质和免疫白蛋白使nanocomplexes时细胞跨内皮细胞和治疗代理。与T细胞、B细胞和自然杀伤细胞源自人类血液被观察到。nanocomplexes可以容纳化疗药物和在多细胞2 d和3 d释放它们构造。保留他们的细胞毒性活动,类似的活动免费药物。癌细胞被发现更敏感基质的存在和免疫的药物细胞。药物在肿瘤nanocomplexes模仿组织验证使用3 d在灌注multicellular-collagen构造生物反应器。潜在的可伸缩的战略工程nanocomplexes完全的生物大分子与潜在使用药物交付。

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