Cargando…
The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines
The epithelial cell adhesion molecule (EpCAM) is expressed by a wide range of human carcinomas, making it an attractive diagnostic and therapeutic target in oncology. Its recent identification on cancer stem cells has raised further interest in its use for tumor targeting and therapy. Here, we prese...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Landes Bioscience
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4171007/ https://www.ncbi.nlm.nih.gov/pubmed/24525727 http://dx.doi.org/10.4161/mabs.28207 |
_version_ | 1782335870882283520 |
---|---|
author | Lund, Kaja Bostad, Monica Skarpen, Ellen Braunagel, Michael Kiprijanov, Sergej Krauss, Stefan Duncan, Alex Høgset, Anders Selbo, Pål K. |
author_facet | Lund, Kaja Bostad, Monica Skarpen, Ellen Braunagel, Michael Kiprijanov, Sergej Krauss, Stefan Duncan, Alex Høgset, Anders Selbo, Pål K. |
author_sort | Lund, Kaja |
collection | PubMed |
description | The epithelial cell adhesion molecule (EpCAM) is expressed by a wide range of human carcinomas, making it an attractive diagnostic and therapeutic target in oncology. Its recent identification on cancer stem cells has raised further interest in its use for tumor targeting and therapy. Here, we present the characterization and therapeutic potential of 3–17I, a novel human EpCAM-targeting monoclonal antibody. Strong reaction of 3–17I was observed in all lung, colon, and breast human tumor biopsies evaluated. By flow cytometry and confocal fluorescence microscopy, we demonstrate that 3–17I specifically targets EpCAM-positive cell lines. We also show evidence for mAb-sequestration in endo-/lysosomes, suggesting internalization of 3–17I by receptor-mediated endocytosis. The ribosomal-inactivating toxin saporin was linked to 3–17I, creating the per se non-toxic immunotoxin 3–17I-saporin, a promising candidate for the drug delivery technology photochemical internalization (PCI). PCI is based on a light-controlled destruction of endolysosomal membranes and subsequent cytosolic release of the sequestered payload upon light exposure. EpCAM-positive human cancer cell lines MCF7 (breast), BxPC-3 (pancreas), WiDr (colon), and the EpCAM-negative COLO320DM (colon), were treated with 3–17I-saporin in combination with the clinically relevant photosensitizer TPCS2a (Amphinex), followed by exposure to light. No cytotoxicity was observed after treatment with 3–17I-saporin without light exposure. However, cell viability, proliferation and colony-forming capacity was strongly reduced in a light-dependent manner after PCI of 3–17I. Our results show that 3–17I is an excellent candidate for diagnosis of EpCAM-positive tumors and for development of clinically relevant antibody-drug conjugates, using PCI for the treatment of localized tumors. |
format | Online Article Text |
id | pubmed-4171007 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Landes Bioscience |
record_format | MEDLINE/PubMed |
spelling | pubmed-41710072015-07-01 The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines Lund, Kaja Bostad, Monica Skarpen, Ellen Braunagel, Michael Kiprijanov, Sergej Krauss, Stefan Duncan, Alex Høgset, Anders Selbo, Pål K. MAbs Report The epithelial cell adhesion molecule (EpCAM) is expressed by a wide range of human carcinomas, making it an attractive diagnostic and therapeutic target in oncology. Its recent identification on cancer stem cells has raised further interest in its use for tumor targeting and therapy. Here, we present the characterization and therapeutic potential of 3–17I, a novel human EpCAM-targeting monoclonal antibody. Strong reaction of 3–17I was observed in all lung, colon, and breast human tumor biopsies evaluated. By flow cytometry and confocal fluorescence microscopy, we demonstrate that 3–17I specifically targets EpCAM-positive cell lines. We also show evidence for mAb-sequestration in endo-/lysosomes, suggesting internalization of 3–17I by receptor-mediated endocytosis. The ribosomal-inactivating toxin saporin was linked to 3–17I, creating the per se non-toxic immunotoxin 3–17I-saporin, a promising candidate for the drug delivery technology photochemical internalization (PCI). PCI is based on a light-controlled destruction of endolysosomal membranes and subsequent cytosolic release of the sequestered payload upon light exposure. EpCAM-positive human cancer cell lines MCF7 (breast), BxPC-3 (pancreas), WiDr (colon), and the EpCAM-negative COLO320DM (colon), were treated with 3–17I-saporin in combination with the clinically relevant photosensitizer TPCS2a (Amphinex), followed by exposure to light. No cytotoxicity was observed after treatment with 3–17I-saporin without light exposure. However, cell viability, proliferation and colony-forming capacity was strongly reduced in a light-dependent manner after PCI of 3–17I. Our results show that 3–17I is an excellent candidate for diagnosis of EpCAM-positive tumors and for development of clinically relevant antibody-drug conjugates, using PCI for the treatment of localized tumors. Landes Bioscience 2014-07-01 2014-02-18 /pmc/articles/PMC4171007/ /pubmed/24525727 http://dx.doi.org/10.4161/mabs.28207 Text en Copyright © 2014 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited. |
spellingShingle | Report Lund, Kaja Bostad, Monica Skarpen, Ellen Braunagel, Michael Kiprijanov, Sergej Krauss, Stefan Duncan, Alex Høgset, Anders Selbo, Pål K. The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines |
title | The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines |
title_full | The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines |
title_fullStr | The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines |
title_full_unstemmed | The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines |
title_short | The novel EpCAM-targeting monoclonal antibody 3–17I linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines |
title_sort | novel epcam-targeting monoclonal antibody 3–17i linked to saporin is highly cytotoxic after photochemical internalization in breast, pancreas and colon cancer cell lines |
topic | Report |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4171007/ https://www.ncbi.nlm.nih.gov/pubmed/24525727 http://dx.doi.org/10.4161/mabs.28207 |
work_keys_str_mv | AT lundkaja thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT bostadmonica thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT skarpenellen thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT braunagelmichael thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT kiprijanovsergej thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT kraussstefan thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT duncanalex thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT høgsetanders thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT selbopalk thenovelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT lundkaja novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT bostadmonica novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT skarpenellen novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT braunagelmichael novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT kiprijanovsergej novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT kraussstefan novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT duncanalex novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT høgsetanders novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines AT selbopalk novelepcamtargetingmonoclonalantibody317ilinkedtosaporinishighlycytotoxicafterphotochemicalinternalizationinbreastpancreasandcoloncancercelllines |