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Study of Potential Utility of New Radiopharmaceuticals Based on Technetium-99m Labeled Derivative of Glucose

机译:基于Technetium-99M标记葡萄糖衍生物的新放射性药物潜在效用研究

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Purpose: to study the potential utility of 1-thio-D-glucose labeled with ~(99m)Tc for cancer imaging in laboratory animals. Materials and method: the study was carried out in cell cultures of normal CHO (Chinese hamster ovary cells CHO) and malignant tissues MCF-7 (human breast adenocarcinoma MCF-7). To evaluate the uptake of ~(99m)Tc-1-thio-D-glucose in normal and tumor tissue cells, 25 MBq of 1-thio-D-glucose labeled with ~(99m)Tc was added to the vials with 3 million cells and incubated for 30 min at room temperature. After centrifugation of the vials with cells, the supernatant was removed. The radioactivity in vials with normal and tumor cells was then measured. In addition, the study included 40 mice of C57B1/6j lines with tumor lesion of the right femur. For neoplastic lesions, Lewis lung carcinoma model was used. Following anesthesia, mice were injected intravenously with 25 MBq of ~(99m)Tc-1-thio-D-glucose. Planar scintigraphy was performed 15 minutes later in a matrix of 512×512 pixels for 5 min. Results: when measuring the radioactivity of normal and malignant cells after incubation with ~(99m)Tc-1-thio-D-glucose, it was found that the radioactivity of malignant cells was higher than that of normal cells. The mean values of radioactivity levels in normal and malignant cells were 0.3 ± 0.15 MBq and 1.07 ± 0.6 MBq, respectively. All examined animals had increased accumulation of ~(99m)Tc-1-thio-D-glucose at the tumor site. The accumulation of ~(99m)Tc-1-thio-D-glucose in the tumor was on average twice as high as compared to the symmetric region. Conclusion: The present study demonstrated that ~(99m)Tc-1-thio-D-glucose is a prospective radiopharmaceutical for cancer visualization. In addition, high accumulation of ~(99m)Tc-1-thio-D-glucose in the culture of cancer cells and in tumor tissue of animals demonstrates tumor tropism of the radiopharmaceutical.
机译:目的:研究用〜(99米)TC在实验动物中癌症成像标记的1-Thio-D-葡萄糖的潜在效用。材料和方法:该研究在普通CHO(中国仓鼠卵巢细胞CHO)和恶性组织MCF-7(人乳腺腺癌MCF-7)中进行。为了评估正常和肿瘤组织细胞中的〜(99m)Tc-1-Thio-D-葡萄糖的摄取,将25mbq的1-Thio-d葡萄糖标记为〜(99米)Tc,在300万细胞在室温下孵育30分钟。用细胞离心小瓶后,除去上清液。然后测量具有正常和肿瘤细胞的小瓶中的放射性。此外,该研究包括40只C57B1 / 6J线,右股骨肿瘤病变。对于肿瘤病变,使用lewis肺癌模型。麻醉后,将小鼠静脉内注射25mbq〜(99m)TC-1-THIO-D-葡萄糖。平面闪烁图在5分钟后进行了15分钟的512×512像素的矩阵5分钟。结果:测量与〜(99米)TC-1-THIO-D-葡萄糖孵育后正常和恶性细胞的放射性,发现恶性细胞的放射性高于正常细胞的放射性。正常和恶性细胞中放射性水平的平均值分别为0.3±0.15mbq和1.07±0.6 Mbq。所有检测的动物在肿瘤部位增加了〜(99米)TC-1-THIO-D-葡萄糖的积累。与对称区域相比,肿瘤中〜(99m)Tc-1-Thio-D-葡萄糖的积累平均为高度。结论:本研究证明〜(99米)TC-1-THIO-D-葡萄糖是癌症可视化的前瞻性放射性药物。此外,癌细胞培养和动物肿瘤组织中的〜(99米)Tc-1-Thio-D-葡萄糖的高积累证明了放射性药物的肿瘤瘤。

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