Cargando…

Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo

OBJECTIVE: Noninvasive determination of pancreatic β-cell mass in vivo has been hampered by the lack of suitable β-cell–specific imaging agents. This report outlines an approach for the development of novel ligands homing selectively to islet cells in vivo. RESEARCH DESIGN AND METHODS: To generate a...

Descripción completa

Detalles Bibliográficos
Autores principales: Ueberberg, Sandra, Meier, Juris J., Waengler, Carmen, Schechinger, Wolfgang, Dietrich, Johannes W., Tannapfel, Andrea, Schmitz, Inge, Schirrmacher, Ralf, Köller, Manfred, Klein, Harald H., Schneider, Stephan
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2750237/
https://www.ncbi.nlm.nih.gov/pubmed/19592622
http://dx.doi.org/10.2337/db09-0658
_version_ 1782172234528325632
author Ueberberg, Sandra
Meier, Juris J.
Waengler, Carmen
Schechinger, Wolfgang
Dietrich, Johannes W.
Tannapfel, Andrea
Schmitz, Inge
Schirrmacher, Ralf
Köller, Manfred
Klein, Harald H.
Schneider, Stephan
author_facet Ueberberg, Sandra
Meier, Juris J.
Waengler, Carmen
Schechinger, Wolfgang
Dietrich, Johannes W.
Tannapfel, Andrea
Schmitz, Inge
Schirrmacher, Ralf
Köller, Manfred
Klein, Harald H.
Schneider, Stephan
author_sort Ueberberg, Sandra
collection PubMed
description OBJECTIVE: Noninvasive determination of pancreatic β-cell mass in vivo has been hampered by the lack of suitable β-cell–specific imaging agents. This report outlines an approach for the development of novel ligands homing selectively to islet cells in vivo. RESEARCH DESIGN AND METHODS: To generate agents specifically binding to pancreatic islets, a phage library was screened for single-chain antibodies (SCAs) on rat islets using two different approaches. 1) The library was injected into rats in vivo, and islets were isolated after a circulation time of 5 min. 2) Pancreatic islets were directly isolated, and the library was panned in the islets in vitro. Subsequently, the identified SCAs were extensively characterized in vitro and in vivo. RESULTS: We report the generation of SCAs that bind highly selective to either β- or α-cells. These SCAs are internalized by target cells, disappear rapidly from the vasculature, and exert no toxicity in vivo. Specific binding to β- or α-cells was detected in cell lines in vitro, in rats in vivo, and in human tissue in situ. Electron microscopy demonstrated binding of SCAs to the endoplasmatic reticulum and the secretory granules. Finally, in a biodistribution study the labeling intensity derived from [(125)I]-labeled SCAs after intravenous administration in rats strongly predicted the β-cell mass and was inversely related to the glucose excursions during an intraperitoneal glucose tolerance test. CONCLUSIONS: Our data provide strong evidence that the presented SCAs are highly specific for pancreatic β-cells and enable imaging and quantification in vivo.
format Text
id pubmed-2750237
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher American Diabetes Association
record_format MEDLINE/PubMed
spelling pubmed-27502372010-10-01 Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo Ueberberg, Sandra Meier, Juris J. Waengler, Carmen Schechinger, Wolfgang Dietrich, Johannes W. Tannapfel, Andrea Schmitz, Inge Schirrmacher, Ralf Köller, Manfred Klein, Harald H. Schneider, Stephan Diabetes Original Article OBJECTIVE: Noninvasive determination of pancreatic β-cell mass in vivo has been hampered by the lack of suitable β-cell–specific imaging agents. This report outlines an approach for the development of novel ligands homing selectively to islet cells in vivo. RESEARCH DESIGN AND METHODS: To generate agents specifically binding to pancreatic islets, a phage library was screened for single-chain antibodies (SCAs) on rat islets using two different approaches. 1) The library was injected into rats in vivo, and islets were isolated after a circulation time of 5 min. 2) Pancreatic islets were directly isolated, and the library was panned in the islets in vitro. Subsequently, the identified SCAs were extensively characterized in vitro and in vivo. RESULTS: We report the generation of SCAs that bind highly selective to either β- or α-cells. These SCAs are internalized by target cells, disappear rapidly from the vasculature, and exert no toxicity in vivo. Specific binding to β- or α-cells was detected in cell lines in vitro, in rats in vivo, and in human tissue in situ. Electron microscopy demonstrated binding of SCAs to the endoplasmatic reticulum and the secretory granules. Finally, in a biodistribution study the labeling intensity derived from [(125)I]-labeled SCAs after intravenous administration in rats strongly predicted the β-cell mass and was inversely related to the glucose excursions during an intraperitoneal glucose tolerance test. CONCLUSIONS: Our data provide strong evidence that the presented SCAs are highly specific for pancreatic β-cells and enable imaging and quantification in vivo. American Diabetes Association 2009-10 2009-07-10 /pmc/articles/PMC2750237/ /pubmed/19592622 http://dx.doi.org/10.2337/db09-0658 Text en © 2009 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Original Article
Ueberberg, Sandra
Meier, Juris J.
Waengler, Carmen
Schechinger, Wolfgang
Dietrich, Johannes W.
Tannapfel, Andrea
Schmitz, Inge
Schirrmacher, Ralf
Köller, Manfred
Klein, Harald H.
Schneider, Stephan
Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo
title Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo
title_full Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo
title_fullStr Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo
title_full_unstemmed Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo
title_short Generation of Novel Single-Chain Antibodies by Phage-Display Technology to Direct Imaging Agents Highly Selective to Pancreatic β- or α-Cells In Vivo
title_sort generation of novel single-chain antibodies by phage-display technology to direct imaging agents highly selective to pancreatic β- or α-cells in vivo
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2750237/
https://www.ncbi.nlm.nih.gov/pubmed/19592622
http://dx.doi.org/10.2337/db09-0658
work_keys_str_mv AT ueberbergsandra generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT meierjurisj generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT waenglercarmen generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT schechingerwolfgang generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT dietrichjohannesw generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT tannapfelandrea generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT schmitzinge generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT schirrmacherralf generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT kollermanfred generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT kleinharaldh generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo
AT schneiderstephan generationofnovelsinglechainantibodiesbyphagedisplaytechnologytodirectimagingagentshighlyselectivetopancreaticboracellsinvivo