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壳聚糖功能化氧化石墨烯纳米复合材料用于细胞凋亡过程的荧光成像和靶向抗炎研究。

Chitosan functionalized graphene oxide nanocomposites for fluorescence imaging of apoptotic processes and targeted anti-inflammation study.

机构信息

MOE Joint International Research Laboratory of Animal Health and Food Safety, Key Laboratory of Animal Physiology & Biochemistry, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing 210095, China.

College of Animal Sciences and Technology, Guangxi University, Nanning, Guangxi 530004, China.

出版信息

Carbohydr Polym. 2021 Oct 1;269:118345. doi: 10.1016/j.carbpol.2021.118345. Epub 2021 Jun 17.

Abstract

This work reports novel chitosan functionalized graphene oxide (GO) nanocomposites combined fluorescence imaging and therapeutic functions in one agent, which can serve as a promising alternative to alleviate related diseases caused hyperinflammation. Briefly, GO was designed to be conjugated with chitosan, fluorescein-labeled peptide, toll-like receptor 4 antibody and hydroxycamptothecin/aloe emodin. We have demonstrated that such nanocomposites could effectively achieve active targeted delivery of pro-apoptotic and anti-inflammatory drugs into inflammatory cells and cause cells apoptosis by acid-responsive drug release. Moreover, confocal fluorescence imaging confirms that the drug-induced inflammatory cells apoptosis could be visualized the light-up fluorescence of fluorescein activated by caspase-3. Meanwhile, inflammatory-related biomarkers have down-regulated after the nanocomposites' treatment in both vitro and vivo experiments consistent with the results in histological sections. In summary, the bifunctional nanocomposites that possess anti-inflammation and fluorescence imaging could serve as a promising therapeutic agent for reducing hyperinflammation caused by numerous diseases.

摘要

这项工作报道了一种新型壳聚糖功能化氧化石墨烯(GO)纳米复合材料,将荧光成像和治疗功能集于一体,有望作为一种缓解相关疾病所致过度炎症的替代方法。简而言之,GO 被设计为与壳聚糖、荧光素标记肽、Toll 样受体 4 抗体和喜树碱/大黄素结合。我们已经证明,这种纳米复合材料可以有效地将促凋亡和抗炎药物主动靶向递送至炎症细胞,并通过酸响应性药物释放诱导细胞凋亡。此外,共聚焦荧光成像证实,药物诱导的炎症细胞凋亡可以通过 caspase-3 激活的荧光素的光致荧光可视化。同时,在体外和体内实验中,与组织学切片的结果一致,纳米复合材料处理后炎症相关生物标志物下调。总之,具有抗炎和荧光成像功能的双功能纳米复合材料有望成为减少多种疾病引起的过度炎症的一种有前途的治疗剂。

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