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Milk-derived multi-fluorescent graphene quantum dot-based cancer theranostic system

机译:牛奶衍生的基于多荧光石墨烯量子点的癌症治疗方法

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An economical green-chemistry approach was used for the synthesis of aqueous soluble graphene quantum dots (GQDs) from cow milk for simultaneous imaging and drug delivery in cancer. The GQDs synthesized using one pot microwave-assisted heating were multi-fluorescent, spherical in shape having a lateral size of ca. 5 nm, The role of processing parameters such as heating time and ionic strength showed a profound effect on photoluminescence properties of GQDs. The GQDs were N-doped and oxygen-rich as confirmed by X-ray photoelectron spectroscopy (XPS) analysis. Cysteamine hydrochloride (Cys) was used to attach an anti-cancer drug berberine hydrochloride (BHC) on GQDs forming"GQDs@Cys-BHC complex with ca. 88% drug loading efficiency. In vitro drug release was studied at the acidic-basic environment and drug kinetics was studied using pharmacokinetic statistical models. The GQDs were biocompatible on L929 cells whereas theranostic GQDs@Cys-BHC complex showed a potent cytotoxic effect on different cancerous cell line models: cervical cancer cell lines such as HeLa cells and breast cancer cells such as MDA-MB-231 confirmed by Trypan blue and MTT-based cytotoxic assays. Furthermore, multi-excitation based cellular bioimaging was demonstrated using confocal laser scanning microscopy (CLSM) and fluorescence microscopy using GQDs as well as GQDs@Cys-BHC complex. Thus, drug delivery (therapeutic) and bioimaging (diagnostic),properties of GQDs@Cys-BHC complex are thought to have a potential in vitro theranostic application in cancer therapy. (C) 2016 Elsevier B.V. All rights reserved.
机译:一种经济的绿色化学方法用于从牛奶中合成水溶性石墨烯量子点(GQD),以在癌症中同时成像和给药。使用一锅微波辅助加热合成的GQD是多荧光的,球形的,横向尺寸约为1。 5 nm,加热时间和离子强度等加工参数的作用对GQD的光致发光性能产生了深远的影响。如通过X射线光电子能谱(XPS)分析所证实的,GQD是N掺杂的和富氧的。使用半胱胺盐酸盐(Cys)将抗癌药物盐酸小attach碱(BHC)附着在形成“ GQDs @ Cys-BHC复合物”的GQD上,其载药效率约为88%。在酸性碱性环境下研究了体外药物释放GQDs在L929细胞上具有生物相容性,而花药GQDs @ Cys-BHC复合物对不同的癌细胞模型具有强大的细胞毒性作用:宫颈癌细胞如HeLa细胞和乳腺癌细胞等。通过台盼蓝和基于MTT的细胞毒性试验证实了MDA-MB-231的存在;此外,利用共聚焦激光扫描显微镜(CLSM)和荧光显微镜使用GQD和GQDs @ Cys-BHC复合物证明了基于多激发的细胞生物成像。因此,GQDs @ Cys-BHC复合物的药物递送(治疗)和生物成像(诊断),性质被认为在癌症治疗中可能具有体外治疗学应用(C)2016 E lsevier B.V.保留所有权利。

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