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荧光纳米金刚石作为体内对比剂的长期稳定性和生物相容性。

The long-term stability and biocompatibility of fluorescent nanodiamond as an in vivo contrast agent.

机构信息

Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 10672, Taiwan, ROC.

出版信息

Biomaterials. 2012 Nov;33(31):7794-802. doi: 10.1016/j.biomaterials.2012.06.084. Epub 2012 Aug 3.

Abstract

Nanocarbon is a promising type of biomaterial for diagnostic and therapeutic applications. Fluorescent nanodiamond (FND) containing nitrogen-vacancy centers as built-in fluorophores is a new addition to the nanocarbon family. Here, we study the long-term stability and biocompatibility of 100-nm FNDs in rats through intraperitoneal injection over 5 months and develop the potential application of this biomaterial for sentinel lymph node mapping in a mouse model. From both in vivo and ex vivo fluorescence imaging as well as transmission electron microscopy, we found that the intradermally administered FND particles can be drained from the injection sites by macrophages and selectively accumulated in the axillary lymph nodes of the treated mice. Our measurements of water consumption, fodder consumption, body weight, and organ index showed no significant difference between control and FND-treated groups of the rats. Histopathological analysis of various tissues and organs indicated that FNDs are non-toxic even when a large quantity, up to 75 mg/kg body weight, of the particles was administered intraperitoneally to the living animals. With the properties of wide-ranging biocompatibility and perfect chemical and photophysical stability, FND is well suited for use as a contrast agent for long-term in vivo imaging.

摘要

纳米碳是一种很有前途的生物材料,可用于诊断和治疗应用。含氮空位中心的荧光纳米金刚石(FND)作为内置荧光团是纳米碳家族的新成员。在这里,我们通过腹腔注射研究了长达 5 个月的时间内 100nm FND 的长期稳定性和生物相容性,并在小鼠模型中开发了这种生物材料用于前哨淋巴结成像的潜在应用。通过体内和离体荧光成像以及透射电子显微镜,我们发现经皮给予的 FND 颗粒可以被巨噬细胞从注射部位排出,并选择性地积聚在处理小鼠的腋窝淋巴结中。我们对水摄入量、饲料消耗量、体重和器官指数的测量结果表明,FND 处理组与对照组的大鼠没有明显差异。对各种组织和器官的组织病理学分析表明,即使将高达 75mg/kg 体重的大量颗粒腹腔内给予活体动物,FND 也是无毒的。FND 具有广泛的生物相容性和完美的化学和光物理稳定性,非常适合用作长期体内成像的对比剂。

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