首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Turn-on theranostic fluorescent nanoprobe by electrostatic self-assembly of carbon dots with doxorubicin for targeted cancer cell imaging, in vivo hyaluronidase analysis, and targeted drug delivery
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Turn-on theranostic fluorescent nanoprobe by electrostatic self-assembly of carbon dots with doxorubicin for targeted cancer cell imaging, in vivo hyaluronidase analysis, and targeted drug delivery

机译:通过碳点静电自组装与多柔比星进行靶癌细胞成像,体内透明质酸酶分析和靶向药物递送

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This paper reports a turn-on theranostic fluorescent nanoprobe P-CDs/HA-Dox obtained by electrostatic assembly of polyethylenimine (PEI)-modified carbon dots (P-CDs) and Hyaluronic acid (HA)-conjugated doxorubicin (Dox) for hyaluronidase (HAase) detection, self-targeted imaging and drug delivery. P-CDs/HADox show weak emission in a physiological environment. By utilizing the high affinity of HA to CD44 receptors overexpressed on many cancer cells, P-CDs/HA-Dox are capable of targeting and penetrating into cancer cells, where they are activated by HAase. As a result, HA-Dox can be digested into small fragments, causing the release of Dox and thereby restoring the fluorescence of P-CDs. The theranostic fluorescent nanoprobe can effectively distinguish cancer cells from normal cells. The as-prepared nanoprobe achieves a sensitive assay of HAase with a detection limit of 0.65 U mL(-1). Furthermore, upon Dox release, the Dox could efficiently induce apoptosis in HeLa cells, as confirmed by MTT assay. The design of such a turn-on theranostic fluorescent probe provides a new strategy for self-targeted and image-guided chemotherapy.
机译:本文报道了通过聚乙烯(PEI)制碳点(P-CDS)和透明质酸(HA)透明质酸酶(DOX)的透明质酸酶(PEI)和透明质酸(HA)的透明质酸(P-CD)和透明质酸(DOX)而获得的导通Theranostic荧光纳米剖P-CDS / HA-DOX( haase)检测,自我靶向成像和药物递送。 P-CDS / HADOX在生理环境中显示出弱发射。通过利用HA的高亲和力在许多癌细胞上过表达的CD44受体,P-CDS / HA-DOX能够靶向并渗透到癌细胞中,在那里它们被HAase激活。结果,可以将HA-DOX消化成小片段,从而释放DOX,从而恢复P-CD的荧光。 Histanostic荧光纳米孔可以有效地区分癌细胞与正常细胞。制备的AS制备的NaNoProbe达到Haase的敏感测定,检测限为0.65uml(-1)。此外,在Dox释放时,DOX可以有效地诱导HeLa细胞中的细胞凋亡,如MTT测定所证实。这种开启Theranostic荧光探针的设计为自我靶向和图像引导的化学疗法提供了一种新的策略。

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