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A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death

Natural peptides isolated from animal venoms generally target cell surface receptors with high affinity and selectivity. On many occasions, some of these receptors are over-expressed in cancer cells. Herein, we identified Lqh-8/6 as a natural peptide analog of chlorotoxin, a proven and useful compou...

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Autores principales: Dardevet, Lucie, Najlaoui, Feten, Aroui, Sonia, Collot, Mayeul, Tisseyre, Céline, Pennington, Michael W., Mallet, Jean-Maurice, De Waard, Michel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599068/
https://www.ncbi.nlm.nih.gov/pubmed/36289865
http://dx.doi.org/10.3390/biomedicines10102605
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author Dardevet, Lucie
Najlaoui, Feten
Aroui, Sonia
Collot, Mayeul
Tisseyre, Céline
Pennington, Michael W.
Mallet, Jean-Maurice
De Waard, Michel
author_facet Dardevet, Lucie
Najlaoui, Feten
Aroui, Sonia
Collot, Mayeul
Tisseyre, Céline
Pennington, Michael W.
Mallet, Jean-Maurice
De Waard, Michel
author_sort Dardevet, Lucie
collection PubMed
description Natural peptides isolated from animal venoms generally target cell surface receptors with high affinity and selectivity. On many occasions, some of these receptors are over-expressed in cancer cells. Herein, we identified Lqh-8/6 as a natural peptide analog of chlorotoxin, a proven and useful compound for the diagnosis and treatment of glioma. Lqh-8/6 and two other natural analogues were chemically synthesized for the first time and evaluated for their ability to label, detect and prevent glioma growth in vitro. We demonstrate that a biotinylated version of Lqh-8/6 allows both the labeling of glioma cell lines and the detection of glioma in brain sections of glioma allograft Fisher rats. Lqh-8/6 has intrinsic anti-invasive properties but is non-toxic to glioma cells. To confer anti-tumor properties to Lqh-8/6, we chemically coupled doxorubicin to the glioma-targeting peptide using click chemistry. To this end, we successfully chemically synthesized Lqh-8/6-azide and doxorubicin-alkyne without impairing the toxic nature of doxorubicin. The toxin-drug conjugate efficiently promotes the apoptosis of glioma cells in vitro. This example contributes to the concept that animal venom peptides constitute exquisite warheads for delivering toxic chemical conjugates, a parallel to the popular concept of antibody-drug conjugates for the treatment of cancer.
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spelling pubmed-95990682022-10-27 A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death Dardevet, Lucie Najlaoui, Feten Aroui, Sonia Collot, Mayeul Tisseyre, Céline Pennington, Michael W. Mallet, Jean-Maurice De Waard, Michel Biomedicines Article Natural peptides isolated from animal venoms generally target cell surface receptors with high affinity and selectivity. On many occasions, some of these receptors are over-expressed in cancer cells. Herein, we identified Lqh-8/6 as a natural peptide analog of chlorotoxin, a proven and useful compound for the diagnosis and treatment of glioma. Lqh-8/6 and two other natural analogues were chemically synthesized for the first time and evaluated for their ability to label, detect and prevent glioma growth in vitro. We demonstrate that a biotinylated version of Lqh-8/6 allows both the labeling of glioma cell lines and the detection of glioma in brain sections of glioma allograft Fisher rats. Lqh-8/6 has intrinsic anti-invasive properties but is non-toxic to glioma cells. To confer anti-tumor properties to Lqh-8/6, we chemically coupled doxorubicin to the glioma-targeting peptide using click chemistry. To this end, we successfully chemically synthesized Lqh-8/6-azide and doxorubicin-alkyne without impairing the toxic nature of doxorubicin. The toxin-drug conjugate efficiently promotes the apoptosis of glioma cells in vitro. This example contributes to the concept that animal venom peptides constitute exquisite warheads for delivering toxic chemical conjugates, a parallel to the popular concept of antibody-drug conjugates for the treatment of cancer. MDPI 2022-10-17 /pmc/articles/PMC9599068/ /pubmed/36289865 http://dx.doi.org/10.3390/biomedicines10102605 Text en © 2022 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
Dardevet, Lucie
Najlaoui, Feten
Aroui, Sonia
Collot, Mayeul
Tisseyre, Céline
Pennington, Michael W.
Mallet, Jean-Maurice
De Waard, Michel
A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death
title A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death
title_full A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death
title_fullStr A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death
title_full_unstemmed A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death
title_short A Conjugate between Lqh-8/6, a Natural Peptide Analogue of Chlorotoxin, and Doxorubicin Efficiently Induces Glioma Cell Death
title_sort conjugate between lqh-8/6, a natural peptide analogue of chlorotoxin, and doxorubicin efficiently induces glioma cell death
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599068/
https://www.ncbi.nlm.nih.gov/pubmed/36289865
http://dx.doi.org/10.3390/biomedicines10102605
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