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通过绿色化学合成的用于 MRI 和 CT 生物成像的生物相容的磁铁矿/金纳米杂化对比剂。

Biocompatible magnetite/gold nanohybrid contrast agents via green chemistry for MRI and CT bioimaging.

机构信息

Amrita Centre for Nanosciences and Molecular Medicine, Amrita Vishwavidyapeetham University, Kochi- 682041, Kerala.

出版信息

ACS Appl Mater Interfaces. 2012 Jan;4(1):251-60. doi: 10.1021/am201311c. Epub 2011 Dec 13.

Abstract

Magnetite/gold (Fe(3)O(4)/Au) hybrid nanoparticles were synthesized from a single iron precursor (ferric chloride) through a green chemistry route using grape seed proanthocyanidin as the reducing agent. Structural and physicochemical characterization proved the nanohybrid to be crystalline, with spherical morphology and size ~35 nm. Magnetic resonance imaging and magnetization studies revealed that the Fe(3)O(4) component of the hybrid provided superparamagnetism, with dark T(2) contrast and high relaxivity (124.2 ± 3.02 mM(-1) s(-1)). Phantom computed tomographic imaging demonstrated good X-ray contrast, which can be attributed to the presence of the nanogold component in the hybrid. Considering the potential application of this bimodal nanoconstruct for stem cell tracking and imaging, we have conducted compatibility studies on human Mesenchymal Stem Cells (hMSCs), wherein cell viability, apoptosis, and intracellular reactive oxygen species (ROS) generation due to the particle-cell interaction were asessed. It was noted that the material showed good biocompatibility even for high concentrations of 500 μg/mL and up to 48 h incubation, with no apoptotic signals or ROS generation. Cellular uptake of the nanomaterial was visualized using confocal microscopy and prussian blue staining. The presence of the nanohybrids were clearly visualized in the intracytoplasmic region of the cell, which is desirable for efficient imaging of stem cells in addition to the cytocompatible nature of the hybrids. Our work is a good demonstrative example of the use of green aqueous chemistry through the employment of phytochemicals for the room temperature synthesis of complex hybrid nanomaterials with multimodal functionalities.

摘要

磁铁矿/金(Fe3O4/Au)杂化纳米粒子是通过绿色化学路线,以葡萄种子原花青素作为还原剂,从单一铁前体(三氯化铁)合成的。结构和物理化学特性证明该纳米杂化物为结晶态,具有球形形态和~35nm 的尺寸。磁共振成像和磁化研究表明,杂化物的 Fe3O4 成分提供超顺磁性,具有暗 T2 对比和高弛豫率(124.2±3.02mM-1s-1)。幻影计算机断层扫描成像显示出良好的 X 射线对比,这可归因于杂化物中纳米金成分的存在。考虑到这种双模态纳米结构在干细胞跟踪和成像中的潜在应用,我们对人骨髓间充质干细胞(hMSCs)进行了相容性研究,评估了由于颗粒-细胞相互作用导致的细胞活力、细胞凋亡和细胞内活性氧(ROS)生成。值得注意的是,即使在 500μg/mL 及以上的高浓度和长达 48 小时的孵育条件下,该材料仍表现出良好的生物相容性,没有凋亡信号或 ROS 生成。使用共聚焦显微镜和普鲁士蓝染色观察纳米材料的细胞摄取。纳米杂化物的存在在细胞的细胞质区域清晰可见,这对于干细胞的有效成像是理想的,除了杂化物的细胞相容性外。我们的工作是通过使用植物化学物质在室温下合成具有多模态功能的复杂杂化纳米材料,展示绿色水相化学应用的一个很好的例证。

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