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Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems

Several promising anti-cancer drug–GnRH (gonadotropin-releasing hormone) conjugates have been developed in the last two decades, although none of them have been approved for clinical use yet. Crizotinib is an effective multi-target kinase inhibitor, approved against anaplastic lymphoma kinase (ALK)-...

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Autores principales: Murányi, József, Varga, Attila, Gyulavári, Pál, Pénzes, Kinga, Németh, Csilla E., Csala, Miklós, Pethő, Lilla, Csámpai, Antal, Halmos, Gábor, Peták, István, Vályi-Nagy, István
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6888004/
https://www.ncbi.nlm.nih.gov/pubmed/31717403
http://dx.doi.org/10.3390/ijms20225590
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author Murányi, József
Varga, Attila
Gyulavári, Pál
Pénzes, Kinga
Németh, Csilla E.
Csala, Miklós
Pethő, Lilla
Csámpai, Antal
Halmos, Gábor
Peták, István
Vályi-Nagy, István
author_facet Murányi, József
Varga, Attila
Gyulavári, Pál
Pénzes, Kinga
Németh, Csilla E.
Csala, Miklós
Pethő, Lilla
Csámpai, Antal
Halmos, Gábor
Peták, István
Vályi-Nagy, István
author_sort Murányi, József
collection PubMed
description Several promising anti-cancer drug–GnRH (gonadotropin-releasing hormone) conjugates have been developed in the last two decades, although none of them have been approved for clinical use yet. Crizotinib is an effective multi-target kinase inhibitor, approved against anaplastic lymphoma kinase (ALK)- or ROS proto-oncogene 1 (ROS-1)-positive non-small cell lung carcinoma (NSCLC); however, its application is accompanied by serious side effects. In order to deliver crizotinib selectively into the tumor cells, we synthesized novel crizotinib analogues and conjugated them to a [d-Lys(6)]–GnRH-I targeting peptide. Our most prominent crizotinib–GnRH conjugates, the amide-bond-containing [d-Lys(6)(crizotinib*)]–GnRH-I and the ester-bond-containing [d-Lys(6)(MJ55*)]–GnRH-I, were able to bind to GnRH-receptor (GnRHR) and exert a potent c-Met kinase inhibitory effect. The efficacy of compounds was tested on the MET-amplified and GnRHR-expressing EBC-1 NSCLC cells. In vitro pharmacological profiling led to the conclusion that that crizotinib–GnRH conjugates are transported directly into lysosomes, where the membrane permeability of crizotinib is diminished. As a consequence of GnRHR-mediated endocytosis, GnRH-conjugated crizotinib bypasses its molecular targets—the ATP-binding site of RTKs— and is sequestered in the lysosomes. These results explained the lower efficacy of crizotinib–GnRH conjugates in EBC-1 cells, and led to the conclusion that drug escape from the lysosomes is a major challenge in the development of clinically relevant anti-cancer drug–GnRH conjugates.
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spelling pubmed-68880042019-12-09 Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems Murányi, József Varga, Attila Gyulavári, Pál Pénzes, Kinga Németh, Csilla E. Csala, Miklós Pethő, Lilla Csámpai, Antal Halmos, Gábor Peták, István Vályi-Nagy, István Int J Mol Sci Article Several promising anti-cancer drug–GnRH (gonadotropin-releasing hormone) conjugates have been developed in the last two decades, although none of them have been approved for clinical use yet. Crizotinib is an effective multi-target kinase inhibitor, approved against anaplastic lymphoma kinase (ALK)- or ROS proto-oncogene 1 (ROS-1)-positive non-small cell lung carcinoma (NSCLC); however, its application is accompanied by serious side effects. In order to deliver crizotinib selectively into the tumor cells, we synthesized novel crizotinib analogues and conjugated them to a [d-Lys(6)]–GnRH-I targeting peptide. Our most prominent crizotinib–GnRH conjugates, the amide-bond-containing [d-Lys(6)(crizotinib*)]–GnRH-I and the ester-bond-containing [d-Lys(6)(MJ55*)]–GnRH-I, were able to bind to GnRH-receptor (GnRHR) and exert a potent c-Met kinase inhibitory effect. The efficacy of compounds was tested on the MET-amplified and GnRHR-expressing EBC-1 NSCLC cells. In vitro pharmacological profiling led to the conclusion that that crizotinib–GnRH conjugates are transported directly into lysosomes, where the membrane permeability of crizotinib is diminished. As a consequence of GnRHR-mediated endocytosis, GnRH-conjugated crizotinib bypasses its molecular targets—the ATP-binding site of RTKs— and is sequestered in the lysosomes. These results explained the lower efficacy of crizotinib–GnRH conjugates in EBC-1 cells, and led to the conclusion that drug escape from the lysosomes is a major challenge in the development of clinically relevant anti-cancer drug–GnRH conjugates. MDPI 2019-11-08 /pmc/articles/PMC6888004/ /pubmed/31717403 http://dx.doi.org/10.3390/ijms20225590 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Murányi, József
Varga, Attila
Gyulavári, Pál
Pénzes, Kinga
Németh, Csilla E.
Csala, Miklós
Pethő, Lilla
Csámpai, Antal
Halmos, Gábor
Peták, István
Vályi-Nagy, István
Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems
title Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems
title_full Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems
title_fullStr Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems
title_full_unstemmed Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems
title_short Novel Crizotinib–GnRH Conjugates Revealed the Significance of Lysosomal Trapping in GnRH-Based Drug Delivery Systems
title_sort novel crizotinib–gnrh conjugates revealed the significance of lysosomal trapping in gnrh-based drug delivery systems
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6888004/
https://www.ncbi.nlm.nih.gov/pubmed/31717403
http://dx.doi.org/10.3390/ijms20225590
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