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New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles

Current B-cell disorder treatments take advantage of dose-intensive chemotherapy regimens and immunotherapy via use of monoclonal antibodies. Unfortunately, they may lead to insufficient tumor distribution of therapeutic agents, and often cause adverse effects on patients. In this contribution, we p...

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Autores principales: Mezzaroba, Nelly, Zorzet, Sonia, Secco, Erika, Biffi, Stefania, Tripodo, Claudio, Calvaruso, Marco, Mendoza-Maldonado, Ramiro, Capolla, Sara, Granzotto, Marilena, Spretz, Ruben, Larsen, Gustavo, Noriega, Sandra, Lucafò, Marianna, Mansilla, Eduardo, Garrovo, Chiara, Marín, Gustavo H., Baj, Gabriele, Gattei, Valter, Pozzato, Gabriele, Núñez, Luis, Macor, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787049/
https://www.ncbi.nlm.nih.gov/pubmed/24098639
http://dx.doi.org/10.1371/journal.pone.0074216
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author Mezzaroba, Nelly
Zorzet, Sonia
Secco, Erika
Biffi, Stefania
Tripodo, Claudio
Calvaruso, Marco
Mendoza-Maldonado, Ramiro
Capolla, Sara
Granzotto, Marilena
Spretz, Ruben
Larsen, Gustavo
Noriega, Sandra
Lucafò, Marianna
Mansilla, Eduardo
Garrovo, Chiara
Marín, Gustavo H.
Baj, Gabriele
Gattei, Valter
Pozzato, Gabriele
Núñez, Luis
Macor, Paolo
author_facet Mezzaroba, Nelly
Zorzet, Sonia
Secco, Erika
Biffi, Stefania
Tripodo, Claudio
Calvaruso, Marco
Mendoza-Maldonado, Ramiro
Capolla, Sara
Granzotto, Marilena
Spretz, Ruben
Larsen, Gustavo
Noriega, Sandra
Lucafò, Marianna
Mansilla, Eduardo
Garrovo, Chiara
Marín, Gustavo H.
Baj, Gabriele
Gattei, Valter
Pozzato, Gabriele
Núñez, Luis
Macor, Paolo
author_sort Mezzaroba, Nelly
collection PubMed
description Current B-cell disorder treatments take advantage of dose-intensive chemotherapy regimens and immunotherapy via use of monoclonal antibodies. Unfortunately, they may lead to insufficient tumor distribution of therapeutic agents, and often cause adverse effects on patients. In this contribution, we propose a novel therapeutic approach in which relatively high doses of Hydroxychloroquine and Chlorambucil were loaded into biodegradable nanoparticles coated with an anti-CD20 antibody. We demonstrate their ability to effectively target and internalize in tumor B-cells. Moreover, these nanoparticles were able to kill not only p53 mutated/deleted lymphoma cell lines expressing a low amount of CD20, but also circulating primary cells purified from chronic lymphocitic leukemia patients. Their safety was demonstrated in healthy mice, and their therapeutic effects in a new model of Burkitt's lymphoma. The latter serves as a prototype of an aggressive lympho-proliferative disease. In vitro and in vivo data showed the ability of anti-CD20 nanoparticles loaded with Hydroxychloroquine and Chlorambucil to increase tumor cell killing in comparison to free cytotoxic agents or Rituximab. These results shed light on the potential of anti-CD20 nanoparticles carrying Hydroxychloroquine and Chlorambucil for controlling a disseminated model of aggressive lymphoma, and lend credence to the idea of adopting this therapeutic approach for the treatment of B-cell disorders.
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spelling pubmed-37870492013-10-04 New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles Mezzaroba, Nelly Zorzet, Sonia Secco, Erika Biffi, Stefania Tripodo, Claudio Calvaruso, Marco Mendoza-Maldonado, Ramiro Capolla, Sara Granzotto, Marilena Spretz, Ruben Larsen, Gustavo Noriega, Sandra Lucafò, Marianna Mansilla, Eduardo Garrovo, Chiara Marín, Gustavo H. Baj, Gabriele Gattei, Valter Pozzato, Gabriele Núñez, Luis Macor, Paolo PLoS One Research Article Current B-cell disorder treatments take advantage of dose-intensive chemotherapy regimens and immunotherapy via use of monoclonal antibodies. Unfortunately, they may lead to insufficient tumor distribution of therapeutic agents, and often cause adverse effects on patients. In this contribution, we propose a novel therapeutic approach in which relatively high doses of Hydroxychloroquine and Chlorambucil were loaded into biodegradable nanoparticles coated with an anti-CD20 antibody. We demonstrate their ability to effectively target and internalize in tumor B-cells. Moreover, these nanoparticles were able to kill not only p53 mutated/deleted lymphoma cell lines expressing a low amount of CD20, but also circulating primary cells purified from chronic lymphocitic leukemia patients. Their safety was demonstrated in healthy mice, and their therapeutic effects in a new model of Burkitt's lymphoma. The latter serves as a prototype of an aggressive lympho-proliferative disease. In vitro and in vivo data showed the ability of anti-CD20 nanoparticles loaded with Hydroxychloroquine and Chlorambucil to increase tumor cell killing in comparison to free cytotoxic agents or Rituximab. These results shed light on the potential of anti-CD20 nanoparticles carrying Hydroxychloroquine and Chlorambucil for controlling a disseminated model of aggressive lymphoma, and lend credence to the idea of adopting this therapeutic approach for the treatment of B-cell disorders. Public Library of Science 2013-09-30 /pmc/articles/PMC3787049/ /pubmed/24098639 http://dx.doi.org/10.1371/journal.pone.0074216 Text en © 2013 Mezzaroba 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mezzaroba, Nelly
Zorzet, Sonia
Secco, Erika
Biffi, Stefania
Tripodo, Claudio
Calvaruso, Marco
Mendoza-Maldonado, Ramiro
Capolla, Sara
Granzotto, Marilena
Spretz, Ruben
Larsen, Gustavo
Noriega, Sandra
Lucafò, Marianna
Mansilla, Eduardo
Garrovo, Chiara
Marín, Gustavo H.
Baj, Gabriele
Gattei, Valter
Pozzato, Gabriele
Núñez, Luis
Macor, Paolo
New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles
title New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles
title_full New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles
title_fullStr New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles
title_full_unstemmed New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles
title_short New Potential Therapeutic Approach for the Treatment of B-Cell Malignancies Using Chlorambucil/Hydroxychloroquine-Loaded Anti-CD20 Nanoparticles
title_sort new potential therapeutic approach for the treatment of b-cell malignancies using chlorambucil/hydroxychloroquine-loaded anti-cd20 nanoparticles
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787049/
https://www.ncbi.nlm.nih.gov/pubmed/24098639
http://dx.doi.org/10.1371/journal.pone.0074216
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