Cargando…

PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study †

Recently, anionic charges were found to negatively influence the in vitro gastrin-releasing peptide receptor (GRPR) binding parameters of dually radioisotope and fluorescent dye labeled GRPR-specific peptide dimers. From this, the question arose if this adverse impact on in vitro GRP receptor affini...

Descripción completa

Detalles Bibliográficos
Autores principales: Hübner, Ralph, Paretzki, Alexa, von Kiedrowski, Valeska, Maspero, Marco, Cheng, Xia, Davarci, Güllü, Braun, Diana, Damerow, Helen, Judmann, Benedikt, Filippou, Vasileios, Dallanoce, Clelia, Schirrmacher, Ralf, Wängler, Björn, Wängler, Carmen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8226452/
https://www.ncbi.nlm.nih.gov/pubmed/34199635
http://dx.doi.org/10.3390/ph14060531
_version_ 1783712290235744256
author Hübner, Ralph
Paretzki, Alexa
von Kiedrowski, Valeska
Maspero, Marco
Cheng, Xia
Davarci, Güllü
Braun, Diana
Damerow, Helen
Judmann, Benedikt
Filippou, Vasileios
Dallanoce, Clelia
Schirrmacher, Ralf
Wängler, Björn
Wängler, Carmen
author_facet Hübner, Ralph
Paretzki, Alexa
von Kiedrowski, Valeska
Maspero, Marco
Cheng, Xia
Davarci, Güllü
Braun, Diana
Damerow, Helen
Judmann, Benedikt
Filippou, Vasileios
Dallanoce, Clelia
Schirrmacher, Ralf
Wängler, Björn
Wängler, Carmen
author_sort Hübner, Ralph
collection PubMed
description Recently, anionic charges were found to negatively influence the in vitro gastrin-releasing peptide receptor (GRPR) binding parameters of dually radioisotope and fluorescent dye labeled GRPR-specific peptide dimers. From this, the question arose if this adverse impact on in vitro GRP receptor affinities could be mitigated by a higher valency of peptide multimerization. For this purpose, we designed two different hybrid multimodal imaging units (MIUs), comprising either one or two click chemistry-compatible functional groups and reacted them with PESIN (PEG(3)-BBN(7–14), PEG = polyethylene glycol) dimers to obtain a dually labeled peptide homodimer or homotetramer. Using this approach, other dually labeled peptide monomers, dimers, and tetramers can also be obtained, and the chelator and fluorescent dye can be adapted to specific requirements. The MIUs, as well as their peptidic conjugates, were evaluated in terms of their photophysical properties, radiolabeling efficiency with (68)Ga and (64)Cu, hydrophilicity, and achievable GRP receptor affinities. Here, the hydrophilicity and the GRP receptor binding affinities were found to be especially strongly influenced by the number of negative charges and peptide copies, showing log(D) (1-octanol-water-distribution coefficient) and IC(50) (half maximal inhibitory concentration) values of −2.2 ± 0.1 and 59.1 ± 1.5 nM for the homodimer, and −1.9 ± 0.1 and 99.8 ± 3.2 nM for the homotetramer, respectively. From the obtained data, it can be concluded that the adverse influence of negatively charged building blocks on the in vitro GRP receptor binding properties of dually labeled PESIN multimers can, at least partly, be compensated for by the number of introduced peptide binding motives and the used molecular design.
format Online
Article
Text
id pubmed-8226452
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-82264522021-06-26 PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study † Hübner, Ralph Paretzki, Alexa von Kiedrowski, Valeska Maspero, Marco Cheng, Xia Davarci, Güllü Braun, Diana Damerow, Helen Judmann, Benedikt Filippou, Vasileios Dallanoce, Clelia Schirrmacher, Ralf Wängler, Björn Wängler, Carmen Pharmaceuticals (Basel) Article Recently, anionic charges were found to negatively influence the in vitro gastrin-releasing peptide receptor (GRPR) binding parameters of dually radioisotope and fluorescent dye labeled GRPR-specific peptide dimers. From this, the question arose if this adverse impact on in vitro GRP receptor affinities could be mitigated by a higher valency of peptide multimerization. For this purpose, we designed two different hybrid multimodal imaging units (MIUs), comprising either one or two click chemistry-compatible functional groups and reacted them with PESIN (PEG(3)-BBN(7–14), PEG = polyethylene glycol) dimers to obtain a dually labeled peptide homodimer or homotetramer. Using this approach, other dually labeled peptide monomers, dimers, and tetramers can also be obtained, and the chelator and fluorescent dye can be adapted to specific requirements. The MIUs, as well as their peptidic conjugates, were evaluated in terms of their photophysical properties, radiolabeling efficiency with (68)Ga and (64)Cu, hydrophilicity, and achievable GRP receptor affinities. Here, the hydrophilicity and the GRP receptor binding affinities were found to be especially strongly influenced by the number of negative charges and peptide copies, showing log(D) (1-octanol-water-distribution coefficient) and IC(50) (half maximal inhibitory concentration) values of −2.2 ± 0.1 and 59.1 ± 1.5 nM for the homodimer, and −1.9 ± 0.1 and 99.8 ± 3.2 nM for the homotetramer, respectively. From the obtained data, it can be concluded that the adverse influence of negatively charged building blocks on the in vitro GRP receptor binding properties of dually labeled PESIN multimers can, at least partly, be compensated for by the number of introduced peptide binding motives and the used molecular design. MDPI 2021-06-02 /pmc/articles/PMC8226452/ /pubmed/34199635 http://dx.doi.org/10.3390/ph14060531 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hübner, Ralph
Paretzki, Alexa
von Kiedrowski, Valeska
Maspero, Marco
Cheng, Xia
Davarci, Güllü
Braun, Diana
Damerow, Helen
Judmann, Benedikt
Filippou, Vasileios
Dallanoce, Clelia
Schirrmacher, Ralf
Wängler, Björn
Wängler, Carmen
PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study †
title PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study †
title_full PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study †
title_fullStr PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study †
title_full_unstemmed PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study †
title_short PESIN Conjugates for Multimodal Imaging: Can Multimerization Compensate Charge Influences on Cell Binding Properties? A Case Study †
title_sort pesin conjugates for multimodal imaging: can multimerization compensate charge influences on cell binding properties? a case study †
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8226452/
https://www.ncbi.nlm.nih.gov/pubmed/34199635
http://dx.doi.org/10.3390/ph14060531
work_keys_str_mv AT hubnerralph pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT paretzkialexa pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT vonkiedrowskivaleska pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT masperomarco pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT chengxia pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT davarcigullu pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT braundiana pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT damerowhelen pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT judmannbenedikt pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT filippouvasileios pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT dallanoceclelia pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT schirrmacherralf pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT wanglerbjorn pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy
AT wanglercarmen pesinconjugatesformultimodalimagingcanmultimerizationcompensatechargeinfluencesoncellbindingpropertiesacasestudy