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首页> 外文期刊>Biomacromolecules >Dendrimer-Assisted Formation of Fluorescent Nanogels for Drug Delivery and Intracellular Imaging
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Dendrimer-Assisted Formation of Fluorescent Nanogels for Drug Delivery and Intracellular Imaging

机译:树枝状聚合物辅助的荧光纳米凝胶的形成,用于药物递送和细胞内成像

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Although, in general, nanogels present a good biocompatibility and are able to mimic biological tissues, their unstability and uncontrollable release properties still limit their biomedical applications. In this study, a simple approach was used to develop dual-crpss-linked dendrimer/alginate nanogels (AG/G5), using CaCl2 as cross-linker and amine-terminated generation. 5 dendrimer (G5) as a cocrosslinker, through an emulsion method. Via their strong electrostatic interactions with anionic AG, together with cross-linker Ca~(~2+), GS dendrimers can be used to mediate the formation of more compact structural nanogels with smaller size (433 ± 17 nm) than that (873 ±116 nm) of the Ca~(2+)-cross-linked AG nanogels in the absence of G5. Under physiological (pH 7.4) and acidic (pH 5.5) conditions, the sizes of Ca~(2+)-cross-linked AG nanogels gradually decrease probably because of their degradation, while dual-cross-linked AG/G5 nanogels maintain a relatively more stable structure. Furthermore, the AG/G5 nanogels effectively encapsulate the anticancer drug doxorubicin (Dox) with a loading capacity 3 times higher than that'of AG nanogels. The AG/G5 nanogels were able to release Dox in a sustained way, avoiding the burst release observed for AG nanogels. In vitro studies show that the AG/G5-Dox NGs were effectively taken up by CAL-72 cells (a human osteosarcoma cell line) and maintain the anticancer cytotoxicity levels of free Dox. Interestingly, G5 labeled with a fluorescent marker can be integrated into the nanogels and be used to track the nanogels inside cells by fluorescence microscopy. These findings demonstrate that AG/G5 nanogels may serve as a general platform for therapeutic delivery and/or cell imaging.
机译:尽管一般而言,纳米凝胶具有良好的生物相容性并能够模仿生物组织,但其不稳定和无法控制的释放特性仍然限制了其生物医学应用。在这项研究中,使用CaCl2作为交联剂和胺封端的生成物,使用一种简单的方法来开发双crpss连接的树状聚合物/藻酸盐纳米凝胶(AG / G5)。 5树枝状聚合物(G5)作为共交联剂,通过乳液法制备。通过它们与阴离子AG的强静电相互作用以及交联剂Ca〜(〜2 +),GS树状大分子可用于介导比(873±17)纳米更小尺寸(433±17 nm)的更紧凑结构的纳米凝胶的形成。不含G5的Ca〜(2+)交联的AG纳米凝胶(116 nm)。在生理(pH 7.4)和酸性(pH 5.5)条件下,Ca〜(2+)交联的AG纳米凝胶的尺寸可能由于其降解而逐渐减小,而双交联的AG / G5纳米凝胶则保持相对降解。结构更稳定。此外,AG / G5纳米凝胶有效地封装了抗癌药阿霉素(Dox),其负载能力是AG纳米凝胶的3倍。 AG / G5纳米凝胶能够持续释放Dox,避免了AG纳米凝胶的爆发性释放。体外研究表明,AG / G5-Dox NGs被CAL-72细胞(人骨肉瘤细胞系)有效吸收,并保持了游离Dox的抗癌细胞毒性水平。有趣的是,可以将用荧光标记物标记的G5整合到纳米凝胶中,并通过荧光显微镜术追踪细胞内的纳米凝胶。这些发现表明,AG / G5纳米凝胶可以用作治疗性递送和/或细胞成像的通用平台。

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