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Title: | An improved synthesis of n-(4-[18 f]fluorobenzoyl)-interleukin-2 for the preclinical pet imaging of tumour-infiltrating t-cells in ct26 and mc38 colon cancer models | Authors: | Khanapur, Shivashankar Yong, Fui Fong Hartimath, Siddesh, V Jiang, Lingfan Ramasamy, Boominathan Cheng, Peter Narayanaswamy, Pradeep Goggi, Julian L. Robins, Edward George |
Keywords: | Interleukin-2 (IL-2) Murine colon adenocarcinoma (MC38 and CT26) syngeneic models Positron emission tomography (PET) imaging Protein conjugation reaction Scintomics GRP™ module T-cells [18 F]FB-IL-2 [18 F]SFB |
Issue Date: | 19-Mar-2021 | Publisher: | MDPI AG | Citation: | Khanapur, Shivashankar, Yong, Fui Fong, Hartimath, Siddesh, V, Jiang, Lingfan, Ramasamy, Boominathan, Cheng, Peter, Narayanaswamy, Pradeep, Goggi, Julian L., Robins, Edward George (2021-03-19). An improved synthesis of n-(4-[18 f]fluorobenzoyl)-interleukin-2 for the preclinical pet imaging of tumour-infiltrating t-cells in ct26 and mc38 colon cancer models. Molecules 26 (6) : 1728. ScholarBank@NUS Repository. https://doi.org/10.3390/molecules26061728 | Rights: | Attribution 4.0 International | Abstract: | Positron emission tomography (PET) imaging of activated T-cells with N-(4-[18 F]fluorobenzoyl)-interleukin-2 ([18 F]FB-IL-2) may be a promising tool for patient management to aid in the assessment of clinical responses to immune therapeutics. Unfortunately, existing radiosynthetic methods are very low yielding due to complex and time-consuming chemical processes. Herein, we report an improved method for the synthesis of [18 F]FB-IL-2, which reduces synthesis time and improves radiochem-ical yield. With this optimized approach, [18 F]FB-IL-2 was prepared with a non-decay-corrected radiochemical yield of 3.8 ± 0.7% from [18 F]fluoride, 3.8 times higher than previously reported methods. In vitro experiments showed that the radiotracer was stable with good radiochemical purity (>95%), confirmed its identity and showed preferential binding to activated mouse peripheral blood mononuclear cells. Dynamic PET imaging and ex vivo biodistribution studies in naïve Balb/c mice showed organ distribution and kinetics comparable to earlier published data on [18 F]FB-IL-2. Significant improvements in the radiochemical manufacture of [18 F]FB-IL-2 facilitates access to this promising PET imaging radiopharmaceutical, which may, in turn, provide useful insights into different tumour phenotypes and a greater understanding of the cellular nature and differential immune microenvironments that are critical to understand and develop new treatments for cancers. © 2021 by the authors. Licensee MDPI, Basel, Switzerland. | Source Title: | Molecules | URI: | https://scholarbank.nus.edu.sg/handle/10635/232120 | ISSN: | 1420-3049 | DOI: | 10.3390/molecules26061728 | Rights: | Attribution 4.0 International |
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