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Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer

Apoptosis signaling pathways, drug resistance, and metastasis are important targets to develop new cancer treatments. We developed cholesterol-coated Poly(d,l-Lactide-co-Glycolic Acid) (PLGA) nanoparticles for effective encapsulation and delivery of retinoic acid and oxaliplatin to analyze their ant...

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Detalles Bibliográficos
Autores principales: C. de S. L. Oliveira, Ana Luiza, de Araújo Júnior, Raimundo Fernandes, Gomes de Carvalho, Thaís, B. Chan, Alan, Schomann, Timo, Tamburini, Filippo, de Geus-Oei, Lioe-Fee, J. Cruz, Luis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7076533/
https://www.ncbi.nlm.nih.gov/pubmed/32102251
http://dx.doi.org/10.3390/pharmaceutics12020193
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author C. de S. L. Oliveira, Ana Luiza
de Araújo Júnior, Raimundo Fernandes
Gomes de Carvalho, Thaís
B. Chan, Alan
Schomann, Timo
Tamburini, Filippo
de Geus-Oei, Lioe-Fee
J. Cruz, Luis
author_facet C. de S. L. Oliveira, Ana Luiza
de Araújo Júnior, Raimundo Fernandes
Gomes de Carvalho, Thaís
B. Chan, Alan
Schomann, Timo
Tamburini, Filippo
de Geus-Oei, Lioe-Fee
J. Cruz, Luis
author_sort C. de S. L. Oliveira, Ana Luiza
collection PubMed
description Apoptosis signaling pathways, drug resistance, and metastasis are important targets to develop new cancer treatments. We developed cholesterol-coated Poly(d,l-Lactide-co-Glycolic Acid) (PLGA) nanoparticles for effective encapsulation and delivery of retinoic acid and oxaliplatin to analyze their antitumor activity in colorectal cancer. The cell viability and proliferation of tumoral cells lines (CT-26 and SW-480) decreased when compared to control in vitro after treatment with the nanoparticles. In addition, apoptosis of CT-26 cells increased. Importantly, cytoprotection of nontumor cells was detected. Expression of pro-apoptotic proteins was upregulated, while anti-apoptotic proteins were downregulated either in vitro or in vivo. In addition, drug resistance and metastasis factors were downregulated in vivo. Human colorectal tumors that highly expressed BCL-2 and Ki-67 had a greater tendency towards death within 60 months. Our results show that loading oxaliplatin combined with retinoic acid and cholesterol in a nanoparticle formulation enables determination of optimal antitumor activity and subsequent treatment efficacy.
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spelling pubmed-70765332020-03-20 Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer C. de S. L. Oliveira, Ana Luiza de Araújo Júnior, Raimundo Fernandes Gomes de Carvalho, Thaís B. Chan, Alan Schomann, Timo Tamburini, Filippo de Geus-Oei, Lioe-Fee J. Cruz, Luis Pharmaceutics Article Apoptosis signaling pathways, drug resistance, and metastasis are important targets to develop new cancer treatments. We developed cholesterol-coated Poly(d,l-Lactide-co-Glycolic Acid) (PLGA) nanoparticles for effective encapsulation and delivery of retinoic acid and oxaliplatin to analyze their antitumor activity in colorectal cancer. The cell viability and proliferation of tumoral cells lines (CT-26 and SW-480) decreased when compared to control in vitro after treatment with the nanoparticles. In addition, apoptosis of CT-26 cells increased. Importantly, cytoprotection of nontumor cells was detected. Expression of pro-apoptotic proteins was upregulated, while anti-apoptotic proteins were downregulated either in vitro or in vivo. In addition, drug resistance and metastasis factors were downregulated in vivo. Human colorectal tumors that highly expressed BCL-2 and Ki-67 had a greater tendency towards death within 60 months. Our results show that loading oxaliplatin combined with retinoic acid and cholesterol in a nanoparticle formulation enables determination of optimal antitumor activity and subsequent treatment efficacy. MDPI 2020-02-23 /pmc/articles/PMC7076533/ /pubmed/32102251 http://dx.doi.org/10.3390/pharmaceutics12020193 Text en © 2020 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
C. de S. L. Oliveira, Ana Luiza
de Araújo Júnior, Raimundo Fernandes
Gomes de Carvalho, Thaís
B. Chan, Alan
Schomann, Timo
Tamburini, Filippo
de Geus-Oei, Lioe-Fee
J. Cruz, Luis
Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer
title Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer
title_full Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer
title_fullStr Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer
title_full_unstemmed Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer
title_short Effect of Oxaliplatin-Loaded Poly (d,l-Lactide-co-Glycolic Acid) (PLGA) Nanoparticles Combined with Retinoic Acid and Cholesterol on Apoptosis, Drug Resistance, and Metastasis Factors of Colorectal Cancer
title_sort effect of oxaliplatin-loaded poly (d,l-lactide-co-glycolic acid) (plga) nanoparticles combined with retinoic acid and cholesterol on apoptosis, drug resistance, and metastasis factors of colorectal cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7076533/
https://www.ncbi.nlm.nih.gov/pubmed/32102251
http://dx.doi.org/10.3390/pharmaceutics12020193
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