Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imaging
Previously, we reported a [99mTc(ǀ)]+ labeled d-glucoamine derivative (99mTc-CN5DG) and evaluated it as a tumor imaging agent in mice bearing A549 tumor xenografts. In this paper, 99mTc-CN5DG was further studied in U87 MG (human glioma cells), HCT-116 (human colon cancer cells), PANC-1 (human pancre...
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doaj-d98ff73899404d2e8c48cf9d2a8ee04f2020-12-25T05:07:47ZengElsevierTranslational Oncology1936-52332021-01-01141100966Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imagingXuran Zhang0Qing Ruan1Yuhao Jiang2Qianqian Gan3Junbo Zhang4Key Laboratory of Radiopharmaceuticals of Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, PR ChinaKey Laboratory of Radiopharmaceuticals of Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, PR ChinaKey Laboratory of Radiopharmaceuticals of Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, PR ChinaKey Laboratory of Radiopharmaceuticals of Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, PR ChinaCorresponding author.; Key Laboratory of Radiopharmaceuticals of Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, PR ChinaPreviously, we reported a [99mTc(ǀ)]+ labeled d-glucoamine derivative (99mTc-CN5DG) and evaluated it as a tumor imaging agent in mice bearing A549 tumor xenografts. In this paper, 99mTc-CN5DG was further studied in U87 MG (human glioma cells), HCT-116 (human colon cancer cells), PANC-1 (human pancreatic cancer cells) and TE-1 (human esophageal cancer cells) tumor xenografts models to verify its potential application for imaging of different kinds of tumors. The biodistribution data showed that 99mTc-CN5DG had a similar biodistribution pattern in four tumor models at 2 h post-injection with high accumulation in tumors and kidneys. The tumor/muscle ratios (from 4.08 ± 0.42 to 9.63 ± 3.53) and tumor/blood ratios (from 17.18 ± 7.40 to 53.17 ± 16.16) of 99mTc-CN5DG in four tumor models were high. All four kinds of tumors could be clearly seen on their corresponding SPECT/CT images. Pharmacokinetic study in healthy CD-1 mice demonstrated that 99mTc-CN5DG cleared fast from blood (2 min, 12.97 ± 0.88%ID/g; 60 min, 0.33 ± 0.06%ID/g) and the blood distribution, elimination half-life was 5.81 min and 21.16 min, respectively. No abnormality was observed through the abnormal toxicity study. All of the above results demonstrated that 99mTc-CN5DG could be a broad-spectrum SPECT probe for tumor imaging and its further clinical application is warranted.http://www.sciencedirect.com/science/article/pii/S1936523320304587Glucose derivative99mTcTumorProbeSPECT |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xuran Zhang Qing Ruan Yuhao Jiang Qianqian Gan Junbo Zhang |
spellingShingle |
Xuran Zhang Qing Ruan Yuhao Jiang Qianqian Gan Junbo Zhang Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imaging Translational Oncology Glucose derivative 99mTc Tumor Probe SPECT |
author_facet |
Xuran Zhang Qing Ruan Yuhao Jiang Qianqian Gan Junbo Zhang |
author_sort |
Xuran Zhang |
title |
Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imaging |
title_short |
Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imaging |
title_full |
Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imaging |
title_fullStr |
Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imaging |
title_full_unstemmed |
Evaluation of 99mTc-CN5DG as a broad-spectrum SPECT probe for tumor imaging |
title_sort |
evaluation of 99mtc-cn5dg as a broad-spectrum spect probe for tumor imaging |
publisher |
Elsevier |
series |
Translational Oncology |
issn |
1936-5233 |
publishDate |
2021-01-01 |
description |
Previously, we reported a [99mTc(ǀ)]+ labeled d-glucoamine derivative (99mTc-CN5DG) and evaluated it as a tumor imaging agent in mice bearing A549 tumor xenografts. In this paper, 99mTc-CN5DG was further studied in U87 MG (human glioma cells), HCT-116 (human colon cancer cells), PANC-1 (human pancreatic cancer cells) and TE-1 (human esophageal cancer cells) tumor xenografts models to verify its potential application for imaging of different kinds of tumors. The biodistribution data showed that 99mTc-CN5DG had a similar biodistribution pattern in four tumor models at 2 h post-injection with high accumulation in tumors and kidneys. The tumor/muscle ratios (from 4.08 ± 0.42 to 9.63 ± 3.53) and tumor/blood ratios (from 17.18 ± 7.40 to 53.17 ± 16.16) of 99mTc-CN5DG in four tumor models were high. All four kinds of tumors could be clearly seen on their corresponding SPECT/CT images. Pharmacokinetic study in healthy CD-1 mice demonstrated that 99mTc-CN5DG cleared fast from blood (2 min, 12.97 ± 0.88%ID/g; 60 min, 0.33 ± 0.06%ID/g) and the blood distribution, elimination half-life was 5.81 min and 21.16 min, respectively. No abnormality was observed through the abnormal toxicity study. All of the above results demonstrated that 99mTc-CN5DG could be a broad-spectrum SPECT probe for tumor imaging and its further clinical application is warranted. |
topic |
Glucose derivative 99mTc Tumor Probe SPECT |
url |
http://www.sciencedirect.com/science/article/pii/S1936523320304587 |
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