首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >99m Tc-glycopeptide: synthesis, biodistribution and imaging in breast tumor-bearing rodents.
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99m Tc-glycopeptide: synthesis, biodistribution and imaging in breast tumor-bearing rodents.

机译:99m Tc-糖肽:在乳腺肿瘤啮齿动物中的合成,生物分布和成像。

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摘要

This study was aimed to develop a glycopeptide (GP) to be used as a carrier for anti-cancer drug delivery. GP was synthesized by conjugating glutamate peptide and chitosan using carbodiimide as a coupling agent. Elemental analysis and capillary electrophoresis confirmed the purity was >95%. GP was labeled with sodium pertechnetate (Na99m TcO4) for in vitro and in vivo studies. Rhenium-GP was synthesized to support the binding site of 99m Tc at the glutamate positions 3-5. In vitro cellular uptake of 99m Tc-GP was performed in breast cancer cells. Cytosol had 60% whereas nucleus had 40% uptake of 99m Tc-GP. When cancer cells were incubated with glutamate or aspartate, followed by 99m Tc-GP, there was decreased uptake in cells treated with glutamate but not aspartate. The findings indicated that cellular uptake of 99m Tc-GP was via glutamate transporters. In addition, 99m Tc-GP was able to measure uptake differences after cells treated with paclitaxel. Biodistribution and planar imaging were conducted inbreast tumor-bearing rats. Biodistribution of 99m Tc-GP showed increased tumor-to-tissue ratios as a function of time. Planar images confirmed that 99m Tc-GP could assess tumor uptake changes after paclitaxel treatment. In vitro and in vivo studies indicated that GP could target tumor cells, thus, GP may be a useful carrier for anti-cancer drug delivery.
机译:这项研究旨在开发糖肽(GP)用作抗癌药物递送的载体。 GP是通过使用碳二亚胺作为偶联剂将谷氨酸肽和壳聚糖缀合而合成的。元素分析和毛细管电泳证实纯度> 95%。 GP用高tech酸钠(Na99m TcO4)标记,用于体外和体内研究。合成--GP以支持谷氨酸3-5处99m Tc的结合位点。在乳腺癌细胞中进行了99m Tc-GP的体外细胞摄取。胞液中99m Tc-GP的吸收率为60%,而细胞核的吸收率为40%。当将癌细胞与谷氨酸或天冬氨酸,然后与99m Tc-GP一起孵育时,用谷氨酸而不是天冬氨酸处理的细胞摄取减少。这些发现表明99m Tc-GP的细胞摄取是通过谷氨酸转运蛋白进行的。此外,使用紫杉醇处理细胞后,99m Tc-GP能够测量摄取差异。在荷瘤的大鼠中进行生物分布和平面成像。 99m Tc-GP的生物分布显示肿瘤与组织的比率随时间增加。平面图像证实99m Tc-GP可以评估紫杉醇治疗后肿瘤的摄取变化。体外和体内研究表明,GP可以靶向肿瘤细胞,因此GP可能是抗癌药物递送的有用载体。

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