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   evaluation of 99m tc-mccj25 peptide analog in mice bearing b16f10 melanoma tumor as a diagnostic radiotracer  
   
نویسنده mazaheri tehrani maryam ,erfani mostafa ,amirmozafari nour ,nejadsattari taher
منبع asia oceania journal of nuclear medicine and biology - 2019 - دوره : 7 - شماره : 2 - صفحه:172 -180
چکیده    Objective(s): despite recent advances in treatment modalities, cancer remains a major source of morbidity and mortality throughout the world. currently, the development of sensitive and specific molecular imaging probes for early diagnosis of cancer is still a problematic challenge. previous studies have been shown that some of the antimicrobial peptides (amps) exhibit a broad spectrum of cytotoxic activity against cancerous cells in addition to their antimicrobial activities. microcinj25 (mccj25) is an antimicrobial peptide that is produced by escherichia coli (e. coli) strain. the aim of this study was to investigate the potential of a new peptide radiopharmaceutical derived from mccj25 for diagnosis of melanoma tumor bearing c57bl/6 mice. methods: a 14 amino acid analog of mccj25 was labeled with technetium-99m (99mtc) through hydrazinonicotinamide (hynic) chelator and tricine as coligand. in vivo tumor uptake and tissue distribution were evaluated. the in vivo biodistribution studies were determined in c57bl/6 mice bearing b16f10 tumor. results: the amount of non-peptide related 99mtc-impurities that measured by thin layer chromatography (tlc) did not exceed 5% of the total radioactivity. the in vitro binding to b16f10 cells was 30.73 ± 0.9% after 1 h incubation at 37°c, and saturation binding experiments showed good affinity for radio-complex (kd=47.98±6.25 nm). the melanoma tumor was clearly visible up 1 h postinjection by gamma camera imaging. conclusion: the results showed that 99mtc-labeld peptide could be a promising candidate as a targeting radiopharmaceutical for melanoma tumor imaging in mice.
کلیدواژه 99m tcmccj25 ,radiotracer ,b16f10 ,tumor
آدرس islamic azad university, science and research branch, department of microbiology, ایران, nuclear science and technology research institute (nstri), radiation application research school, ایران, iran university of medical sciences, school of medicine, department of microbiology, ایران, islamic azad university, science and research branch, department of biology, ایران
پست الکترونیکی nejadsattari@srbiau.ac.ir
 
     
   
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