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Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy

Finding additional functional targets for combination therapy could improve the outcome for melanoma patients. In a spontaneous metastasis xenograft model of human melanoma a shRNA mediated knockdown of L1CAM more than sevenfold reduced the number of lung metastases after the induction of subcutaneo...

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Autores principales: Ernst, Ann-Kathrin, Putscher, Annika, Samatov, Timur R., Suling, Anna, Galatenko, Vladimir V., Shkurnikov, Maxim Yu, Knyazev, Evgeny N., Tonevitsky, Alexander G., Haalck, Thomas, Lange, Tobias, Maar, Hanna, Schröder- Schwarz, Jennifer, Riecken, Kristoffer, Schumacher, Udo, Wicklein, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5809060/
https://www.ncbi.nlm.nih.gov/pubmed/29432466
http://dx.doi.org/10.1371/journal.pone.0192525
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author Ernst, Ann-Kathrin
Putscher, Annika
Samatov, Timur R.
Suling, Anna
Galatenko, Vladimir V.
Shkurnikov, Maxim Yu
Knyazev, Evgeny N.
Tonevitsky, Alexander G.
Haalck, Thomas
Lange, Tobias
Maar, Hanna
Schröder- Schwarz, Jennifer
Riecken, Kristoffer
Schumacher, Udo
Wicklein, Daniel
author_facet Ernst, Ann-Kathrin
Putscher, Annika
Samatov, Timur R.
Suling, Anna
Galatenko, Vladimir V.
Shkurnikov, Maxim Yu
Knyazev, Evgeny N.
Tonevitsky, Alexander G.
Haalck, Thomas
Lange, Tobias
Maar, Hanna
Schröder- Schwarz, Jennifer
Riecken, Kristoffer
Schumacher, Udo
Wicklein, Daniel
author_sort Ernst, Ann-Kathrin
collection PubMed
description Finding additional functional targets for combination therapy could improve the outcome for melanoma patients. In a spontaneous metastasis xenograft model of human melanoma a shRNA mediated knockdown of L1CAM more than sevenfold reduced the number of lung metastases after the induction of subcutaneous tumors for two human melanoma cell lines (MeWo, MV3). Whole genome expression arrays of the initially L1CAM high MeWo subcutaneous tumors revealed unchanged or downregulated genes involved in epithelial to mesenchymal transition (EMT) except an upregulation of Jagged 1, indicating a compensatory change in Notch signaling especially as Jagged 1 expression showed an increase in MeWo L1CAM metastases and Jagged 1 was expressed in metastases of the initially L1CAM low MV3 cells as well. Expression of 17 genes showed concordant regulation for L1CAM knockdown tumors of both cell lines. The changes in gene expression indicated changes in the EMT network of the melanoma cells and an increase in p53/p21 and p38 activity contributing to the reduced metastatic potential of the L1CAM knockdowns. Taken together, these data make L1CAM a highly interesting therapeutic target to prevent further metastatic spread in melanoma patients.
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spelling pubmed-58090602018-02-28 Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy Ernst, Ann-Kathrin Putscher, Annika Samatov, Timur R. Suling, Anna Galatenko, Vladimir V. Shkurnikov, Maxim Yu Knyazev, Evgeny N. Tonevitsky, Alexander G. Haalck, Thomas Lange, Tobias Maar, Hanna Schröder- Schwarz, Jennifer Riecken, Kristoffer Schumacher, Udo Wicklein, Daniel PLoS One Research Article Finding additional functional targets for combination therapy could improve the outcome for melanoma patients. In a spontaneous metastasis xenograft model of human melanoma a shRNA mediated knockdown of L1CAM more than sevenfold reduced the number of lung metastases after the induction of subcutaneous tumors for two human melanoma cell lines (MeWo, MV3). Whole genome expression arrays of the initially L1CAM high MeWo subcutaneous tumors revealed unchanged or downregulated genes involved in epithelial to mesenchymal transition (EMT) except an upregulation of Jagged 1, indicating a compensatory change in Notch signaling especially as Jagged 1 expression showed an increase in MeWo L1CAM metastases and Jagged 1 was expressed in metastases of the initially L1CAM low MV3 cells as well. Expression of 17 genes showed concordant regulation for L1CAM knockdown tumors of both cell lines. The changes in gene expression indicated changes in the EMT network of the melanoma cells and an increase in p53/p21 and p38 activity contributing to the reduced metastatic potential of the L1CAM knockdowns. Taken together, these data make L1CAM a highly interesting therapeutic target to prevent further metastatic spread in melanoma patients. Public Library of Science 2018-02-12 /pmc/articles/PMC5809060/ /pubmed/29432466 http://dx.doi.org/10.1371/journal.pone.0192525 Text en © 2018 Ernst et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ernst, Ann-Kathrin
Putscher, Annika
Samatov, Timur R.
Suling, Anna
Galatenko, Vladimir V.
Shkurnikov, Maxim Yu
Knyazev, Evgeny N.
Tonevitsky, Alexander G.
Haalck, Thomas
Lange, Tobias
Maar, Hanna
Schröder- Schwarz, Jennifer
Riecken, Kristoffer
Schumacher, Udo
Wicklein, Daniel
Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy
title Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy
title_full Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy
title_fullStr Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy
title_full_unstemmed Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy
title_short Knockdown of L1CAM significantly reduces metastasis in a xenograft model of human melanoma: L1CAM is a potential target for anti-melanoma therapy
title_sort knockdown of l1cam significantly reduces metastasis in a xenograft model of human melanoma: l1cam is a potential target for anti-melanoma therapy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5809060/
https://www.ncbi.nlm.nih.gov/pubmed/29432466
http://dx.doi.org/10.1371/journal.pone.0192525
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