Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis Detection
Background: The radionuclide of choice for routine clinical PET imaging is 18-F. As direct fluorination of peptides with 18-F is not possible, indirect methods using fluorinated prosthetic groups have been developed. Due to the availability of 18FDG in most PET centers, there is potential f...
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doaj-d79041220c754fbba4dccc50b414c95c2020-11-24T21:59:21ZengBushehr University of Medical SciencesIranian South Medical Journal 1735-43741735-69542018-07-01213228241Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis DetectionSedegheh Rezaeianpour0Mona Mosayebnia1Atefeh Hajiagha Bozorgi2Abolghasem Moghimi3saeed Balalaie4Soraya Shahhosseini5 Department of chemistry, North Tehran Branch Islamic Azad University, Tehran, Iran Department of Radiopharmacy, School of Pharmacy, Tehran University of Medical Sciences, Tehran, Iran School of Pharmacy, Alborz University of Medical Sciences, Karaj, Iran Department of chemistry, North Tehran Branch Islamic Azad University, Tehran, Iran Peptide Chemistry Research Center, K.N. Toosi University of Technology Department of Pharmaceutical Chemistry and Radiopharmacy, School of Pharmacy, Protein Technology Research Center, Shahid Behesti University of Medical Sciences, Tehran, Iran Background: The radionuclide of choice for routine clinical PET imaging is 18-F. As direct fluorination of peptides with 18-F is not possible, indirect methods using fluorinated prosthetic groups have been developed. Due to the availability of 18FDG in most PET centers, there is potential for 18FDG as a fluorinated prosthetic group. In this study, the linear peptide GPRPILE with an aminooxy group was designed, synthesized and radiolabeled with 18FDG as fibrin imaging agent. Material and Methods: Docking studies were conducted done using AutoDock 4.1 and HEX software programs. Aoe-GPRPILE peptide was designed, synthesized through Fmoc method and radiolabeled with 18FDG. The radiochemical purity, stability of radiolabeled and cold peptide in PBS and human plasma was determined using chromatographic methods. The solubility ratio of the radiolabeled peptide in lipid to water (LogP) was determined. Results: Docking and pharmacophore studies using HEX software revealed high affinity of designed peptide to fibrin (E Total=-0.01). The identity and structure of peptide were determined by LC-Mass. Peptide was stable over 24 hr in human plasma and PBS buffer. The optimum conditions of radiolabeling were 0.2 mg peptide, 1 mCi 18FDG, 90°C for 30 min, pH=5. The radiochemical purity was over 95%. The stability of radiolabeled peptide in human plasma for 2 hr was over 95%. The partition coefficient (LogP) was 1.5. Conclusion: 18FDG has a high potential to be used as a prosthetic group for radiolabeling of peptides with 18-F. In this study, peptide Aoe-GPRPILE with aminooxy was synthesized and labeled with 18FDG with high yield and radiochemical purity. Aminooxy is conjugated to peptide sequence as a prosthetic group in the last step with minimal effect on peptide properties and selectively forms stable oxime bond with the aldehyde group of 18FDG.http://ismj.bpums.ac.ir/browse.php?a_code=A-10-1-53&slc_lang=en&sid=1Thrombosis Radiolabeling with 18FDG Peptide fibrin |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sedegheh Rezaeianpour Mona Mosayebnia Atefeh Hajiagha Bozorgi Abolghasem Moghimi saeed Balalaie Soraya Shahhosseini |
spellingShingle |
Sedegheh Rezaeianpour Mona Mosayebnia Atefeh Hajiagha Bozorgi Abolghasem Moghimi saeed Balalaie Soraya Shahhosseini Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis Detection Iranian South Medical Journal Thrombosis Radiolabeling with 18FDG Peptide fibrin |
author_facet |
Sedegheh Rezaeianpour Mona Mosayebnia Atefeh Hajiagha Bozorgi Abolghasem Moghimi saeed Balalaie Soraya Shahhosseini |
author_sort |
Sedegheh Rezaeianpour |
title |
Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis Detection |
title_short |
Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis Detection |
title_full |
Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis Detection |
title_fullStr |
Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis Detection |
title_full_unstemmed |
Design, Synthesis and Radiolabeling of Peptide GPRPILE with 18FDG as Fibrin Imaging Agent for Thrombosis Detection |
title_sort |
design, synthesis and radiolabeling of peptide gprpile with 18fdg as fibrin imaging agent for thrombosis detection |
publisher |
Bushehr University of Medical Sciences |
series |
Iranian South Medical Journal |
issn |
1735-4374 1735-6954 |
publishDate |
2018-07-01 |
description |
Background: The radionuclide of choice for routine clinical PET imaging is 18-F. As direct fluorination of peptides with 18-F is not possible, indirect methods using fluorinated prosthetic groups have been developed. Due to the availability of 18FDG in most PET centers, there is potential for 18FDG as a fluorinated prosthetic group. In this study, the linear peptide GPRPILE with an aminooxy group was designed, synthesized and radiolabeled with 18FDG as fibrin imaging agent.
Material and Methods: Docking studies were conducted done using AutoDock 4.1 and HEX software programs. Aoe-GPRPILE peptide was designed, synthesized through Fmoc method and radiolabeled with 18FDG. The radiochemical purity, stability of radiolabeled and cold peptide in PBS and human plasma was determined using chromatographic methods. The solubility ratio of the radiolabeled peptide in lipid to water (LogP) was determined.
Results: Docking and pharmacophore studies using HEX software revealed high affinity of designed peptide to fibrin (E Total=-0.01). The identity and structure of peptide were determined by LC-Mass. Peptide was stable over 24 hr in human plasma and PBS buffer. The optimum conditions of radiolabeling were 0.2 mg peptide, 1 mCi 18FDG, 90°C for 30 min, pH=5. The radiochemical purity was over 95%. The stability of radiolabeled peptide in human plasma for 2 hr was over 95%. The partition coefficient (LogP) was 1.5.
Conclusion: 18FDG has a high potential to be used as a prosthetic group for radiolabeling of peptides with 18-F. In this study, peptide Aoe-GPRPILE with aminooxy was synthesized and labeled with 18FDG with high yield and radiochemical purity. Aminooxy is conjugated to peptide sequence as a prosthetic group in the last step with minimal effect on peptide properties and selectively forms stable oxime bond with the aldehyde group of 18FDG. |
topic |
Thrombosis Radiolabeling with 18FDG Peptide fibrin |
url |
http://ismj.bpums.ac.ir/browse.php?a_code=A-10-1-53&slc_lang=en&sid=1 |
work_keys_str_mv |
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