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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Manganese oxide-carbon quantum dots nano-composites for fluorescence/magnetic resonance (T1) dual mode bioimaging, long term cell tracking, and ROS scavenging
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Manganese oxide-carbon quantum dots nano-composites for fluorescence/magnetic resonance (T1) dual mode bioimaging, long term cell tracking, and ROS scavenging

机译:用于荧光/磁共振的氧化锰 - 碳量子点纳米复合材料(T1)双模式生物分析,长期电池跟踪和ROS清除

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Multimodal long-term imaging probes with capability of extracting complementary information are highly important in biomedical engineering for disease diagnosis and monitoring of therapeutics distribution. However, most of the theranostics probes used are transient and have inherent problem of toxicity mostly related to generation of free radicals. In current study, a simple microwave assisted synthesis of multimodal imaging nanoprobe (T1 contrast in MR/fluorescence) is reported via doping carbon quantum dots into manganese oxide nanoparticles. The nanostructures were characterized by US-Vis spectroscopy, fluorescence spectroscopy, FTIR, Raman spectroscopy, TEM, XRD, AFM and XPS. The average particle size was observed to be around 20-40 nm with a height of 7-9 nm and approximate quantum yield of 0.23. The nanostructures were useful for bio imaging and cell tracking via fluorescence microscopy up to 12 generations with nominal cytotoxicity. The material was capable of scavenging free radicals from cellular microenvironment and downregulate gene expression of free radical scavenging enzymes. The material has significant relaxivity (r1) value of 3.98 mM(-1).sec(-1) at 1.5 T. It was also observed to create significant contrast with high circulation time (30 min) and renal clearance property. The histological analysis of kidney and liver sections were observed to have no significant toxicity from the nanostructure.
机译:具有提取互补信息的能力的多模式长期成像探针在生物医学工程中非常重要,疾病诊断和治疗分布的监测。然而,所使用的大多数治疗探针是短暂的,并且具有主要与自由基产生相关的毒性的固有问题。在目前的研究中,通过将碳量子点掺入锰氧化物纳米颗粒,将一种简单的微波辅助合成多式化成像纳米骨(MR /荧光的T1对比)的合成。纳米结构的特征在于通过US-Vis光谱,荧光光谱,FTIR,拉曼光谱,TEM,XRD,AFM和XPS。观察到平均粒度为约20-40nm,高度为7-9nm,近似量子产率为0.23。纳米结构可用于通过荧光显微镜的生物成像和细胞跟踪,所述荧光显微镜高达12代具有标称细胞毒性。该材料能够从细胞微环境中清除自由基并下调自由基清除酶的基因表达。该材料具有3.98mm(-1)°(-1)的显着松弛率(R1)值为1.5℃。还观察到,与高循环时间(30分钟)和肾间隙性能产生显着对比度。观察到肾脏和肝切片的组织学分析与纳米结构没有显着的毒性。

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