Pavithra Kurungottu, Midhun Ben Thomas, Mahesh M Lalitha, Prathiksha Ganesh, Divya Prakash Gnanadhas, Dipshika Chakravortty, Ashok M Raichur, Rajendra Kurapati
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The prepared 'GO-ZnS(Mn)' composite was characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), thermogravimetric analysis (TGA) and high-resolution transmission electron microscopy (HR-TEM) along with selected area electron diffraction (SAED). Further, the fluorescence properties of the GO-ZnS(Mn) composite were studied using fluorescence emission spectroscopy. The composite material exhibited a strong and broad visible light fluorescence from 500 to 600 nm by excitation with 365 nm (UV) light. The cytotoxic experiments of folic acid (FA) conjugated GO-ZnS(Mn) using MTT [(3-[4,5-dimethylthiazol-2-yl]-2,5 diphenyl tetrazolium bromide)] assay revealed that the composite had excellent biocompatibility even at higher concentrations up to 200 µg/mL in HeLa cell lines. Next, the bioimaging experiments carried out using confocal fluorescence laser scanning microscopy (CLSM) revealed that GO-ZnS(Mn) composite was taken up by the HeLa cells effectively within 12 h of incubation via receptor (folate) mediated endocytosis with strong fluorescence throughout the cell surface. Finally, the biodegradability of GO-ZnS(Mn) composite was studied by treating it with human myeloperoxidase enzyme (hMPO) isolated from the primary immune cells, neutrophils, which is important to understand the <i>in vivo</i> fate of GO-Zns(Mn). The HR-TEM and Raman analyses confirmed the biodegradation of GO-ZnS(Mn) within 15 h of hMPO treatment. 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引用次数: 0
摘要
开发一种生物相容性和可生物降解的石墨烯基荧光纳米探针,并使其具有活细胞可视化的能力,对于细胞内成像和监测化疗效率可能很有意义。在此,我们报告了一种可生物降解且具有生物相容性的混合荧光氧化石墨烯(GO)-ZnS(Mn)复合材料,该材料是在水介质中通过 ZnS(Mn)量子点(QDs)在 GO 表面的原位生长合成的。制备的 "GO-ZnS(Mn) "复合材料通过 X 射线衍射(XRD)、X 射线光电子能谱(XPS)、热重分析(TGA)和高分辨率透射电子显微镜(HR-TEM)以及选区电子衍射(SAED)进行了表征。此外,还利用荧光发射光谱研究了 GO-ZnS(Mn)复合材料的荧光特性。在 365 nm(紫外线)光的激发下,该复合材料在 500 到 600 nm 范围内表现出强烈而宽广的可见光荧光。使用 MTT[(3-[4,5-二甲基噻唑-2-基]-2,5-二苯基四唑溴化物)]法对叶酸(FA)共轭 GO-ZnS(Mn)进行的细胞毒性实验表明,即使在浓度高达 200 µg/mL 的 HeLa 细胞系中,该复合材料也具有良好的生物相容性。接着,使用共聚焦荧光激光扫描显微镜(CLSM)进行的生物成像实验表明,GO-ZnS(Mn)复合材料在孵育 12 小时内通过受体(叶酸)介导的内吞作用被 HeLa 细胞有效吸收,整个细胞表面发出强烈的荧光。最后,用从初级免疫细胞--中性粒细胞中分离出来的人髓过氧化物酶(hMPO)处理 GO-ZnS(Mn)复合材料,研究了它的生物降解性,这对于了解 GO-Zns(Mn)在体内的去向非常重要。HR-TEM 和拉曼分析证实,GO-ZnS(Mn)在经 hMPO 处理 15 小时内发生了生物降解。因此,可生物降解的 GO-ZnS (Mn) 复合材料有助于化疗和生物成像应用。
Biodegradable Nanocomposite of ZnS(Mn) Quantum Dots Immobilized Graphene Oxide for Bioimaging Applications.
Developing a biocompatible and biodegradable graphene-based fluorescent nanoprobe with the ability to visualize live cells could be interesting for intracellular imaging and monitoring the efficiency of chemotherapy. Herein, we report a biodegradable and biocompatible hybrid fluorescent graphene oxide (GO)-ZnS(Mn) composite synthesized via in situ growth of ZnS(Mn) quantum dots (QDs) on the surface of GO in the aqueous medium. The prepared 'GO-ZnS(Mn)' composite was characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), thermogravimetric analysis (TGA) and high-resolution transmission electron microscopy (HR-TEM) along with selected area electron diffraction (SAED). Further, the fluorescence properties of the GO-ZnS(Mn) composite were studied using fluorescence emission spectroscopy. The composite material exhibited a strong and broad visible light fluorescence from 500 to 600 nm by excitation with 365 nm (UV) light. The cytotoxic experiments of folic acid (FA) conjugated GO-ZnS(Mn) using MTT [(3-[4,5-dimethylthiazol-2-yl]-2,5 diphenyl tetrazolium bromide)] assay revealed that the composite had excellent biocompatibility even at higher concentrations up to 200 µg/mL in HeLa cell lines. Next, the bioimaging experiments carried out using confocal fluorescence laser scanning microscopy (CLSM) revealed that GO-ZnS(Mn) composite was taken up by the HeLa cells effectively within 12 h of incubation via receptor (folate) mediated endocytosis with strong fluorescence throughout the cell surface. Finally, the biodegradability of GO-ZnS(Mn) composite was studied by treating it with human myeloperoxidase enzyme (hMPO) isolated from the primary immune cells, neutrophils, which is important to understand the in vivo fate of GO-Zns(Mn). The HR-TEM and Raman analyses confirmed the biodegradation of GO-ZnS(Mn) within 15 h of hMPO treatment. Thus, the biodegradable GO-ZnS (Mn) composite could be helpful for chemotherapy and bioimaging applications.