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Hybrid Iron Oxide-Graphene Oxide-Polysaccharides Microcapsule: A Micro-Matryoshka for On-demand Drug Release and Antitumor Therapy In Vivo

机译:混合氧化铁-氧化石墨烯-多糖微胶囊:一种按需药物释放和体内抗肿瘤治疗的微Matryoshka。

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摘要

Premature drug release is a common drawback in stimuli responsive drug delivery systems (DDS) especially if it depends on internal triggers, that are hard to control, or a single external stimulus, that can only have one function. Thus, many DDS systems were reported combining different triggers, however limited success has been established in fine-tuning the release process mainly due to the poor bioavailability and complexity of the reported designs. This paper reports the design of a hybrid microcapsule (h-MC) by a simple layer-by-layer technique comprising polysaccharides (Alg, Chi, HA), iron oxide, and graphene oxide. Electrostatic assembly of the oppositely charged polysaccharides and graphene sheets provided a robust structure to load drugs through pH control. The polysaccharides component ensured high biocompatibility, bioavailability, and tumor cells targeting. Magnetic field and near infrared laser triggerable Fe3O4@GO component provided dual high energy and high penetration hyperthermia therapy. On-demand drug release from h-MC can be achieved by synchronizing these external triggers, making it highly controllable. The synergistic effect of hyperthermia and chemotherapy was successfully confirmed in vitro and in vivo.
机译:药物过早释放是刺激反应性药物输送系统(DDS)的普遍缺陷,特别是如果它依赖于难以控制的内部触发因素或只能具有一种功能的单个外部刺激因素。因此,据报道许多DDS系统结合了不同的触发因素,但是在微调释放过程方面取得的成功有限,这主要是由于所报道设计的生物利用度差和复杂性所致。本文报道了通过包含多糖(Alg,Chi,HA),氧化铁和氧化石墨烯的简单逐层技术设计的混合微胶囊(h-MC)。带相反电荷的多糖和石墨烯片的静电组装提供了坚固的结构,可通过pH控制负载药物。多糖成分可确保高生物相容性,生物利用度和肿瘤细胞靶向性。磁场和近红外激光可触发的Fe3O4 @ GO组分提供了双重高能和高渗透热疗。可以通过同步这些外部触发来实现h-MC的按需药物释放,使其高度可控。在体内外成功地证实了高温与化学疗法的协同作用。

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