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Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells

Drug delivery systems involving polymer therapeutics enhance drug potency by improved solubility and specificity and may assist in circumventing chemoresistance in pancreatic cancer (PC). We compared the effectiveness of the naturally occurring drug, betulinic acid (BA), alone and in a polymer conju...

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Autores principales: Fru, Pascaline Nanga, Nweke, Ekene Emmanuel, Mthimkhulu, Nompumelelo, Mvango, Sindisiwe, Nel, Marietha, Pilcher, Lynne Alison, Balogun, Mohammed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8223974/
https://www.ncbi.nlm.nih.gov/pubmed/34063891
http://dx.doi.org/10.3390/life11060462
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author Fru, Pascaline Nanga
Nweke, Ekene Emmanuel
Mthimkhulu, Nompumelelo
Mvango, Sindisiwe
Nel, Marietha
Pilcher, Lynne Alison
Balogun, Mohammed
author_facet Fru, Pascaline Nanga
Nweke, Ekene Emmanuel
Mthimkhulu, Nompumelelo
Mvango, Sindisiwe
Nel, Marietha
Pilcher, Lynne Alison
Balogun, Mohammed
author_sort Fru, Pascaline Nanga
collection PubMed
description Drug delivery systems involving polymer therapeutics enhance drug potency by improved solubility and specificity and may assist in circumventing chemoresistance in pancreatic cancer (PC). We compared the effectiveness of the naturally occurring drug, betulinic acid (BA), alone and in a polymer conjugate construct of polyethylene glycol (PEG), (PEG–BA), on PC cells (MIA PaCa-2), a normal cell line (Vero) and on peripheral blood mononuclear cells (PBMCs). PEG–BA, was tested for its effect on cell death, immunomodulation and chemoresistance-linked signalling pathways. The conjugate was significantly more toxic to PC cells (p < 0.001, IC(50) of 1.35 ± 0.11 µM) compared to BA (IC(50) of 12.70 ± 0.34 µM), with a selectivity index (SI) of 7.28 compared to 1.4 in Vero cells. Cytotoxicity was confirmed by increased apoptotic cell death. PEG–BA inhibited the production of IL-6 by 4–5.5 fold compared to BA-treated cells. Furthermore, PEG–BA treatment of MIA PaCa-2 cells resulted in the dysregulation of crucial chemoresistance genes such as WNT3A, TXNRD1, SLC2A1 and GATA3. The dysregulation of chemoresistance-associated genes and the inhibition of cytokines such as IL-6 by the model polymer construct, PEG–BA, holds promise for further exploration in PC treatment.
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spelling pubmed-82239742021-06-25 Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells Fru, Pascaline Nanga Nweke, Ekene Emmanuel Mthimkhulu, Nompumelelo Mvango, Sindisiwe Nel, Marietha Pilcher, Lynne Alison Balogun, Mohammed Life (Basel) Article Drug delivery systems involving polymer therapeutics enhance drug potency by improved solubility and specificity and may assist in circumventing chemoresistance in pancreatic cancer (PC). We compared the effectiveness of the naturally occurring drug, betulinic acid (BA), alone and in a polymer conjugate construct of polyethylene glycol (PEG), (PEG–BA), on PC cells (MIA PaCa-2), a normal cell line (Vero) and on peripheral blood mononuclear cells (PBMCs). PEG–BA, was tested for its effect on cell death, immunomodulation and chemoresistance-linked signalling pathways. The conjugate was significantly more toxic to PC cells (p < 0.001, IC(50) of 1.35 ± 0.11 µM) compared to BA (IC(50) of 12.70 ± 0.34 µM), with a selectivity index (SI) of 7.28 compared to 1.4 in Vero cells. Cytotoxicity was confirmed by increased apoptotic cell death. PEG–BA inhibited the production of IL-6 by 4–5.5 fold compared to BA-treated cells. Furthermore, PEG–BA treatment of MIA PaCa-2 cells resulted in the dysregulation of crucial chemoresistance genes such as WNT3A, TXNRD1, SLC2A1 and GATA3. The dysregulation of chemoresistance-associated genes and the inhibition of cytokines such as IL-6 by the model polymer construct, PEG–BA, holds promise for further exploration in PC treatment. MDPI 2021-05-21 /pmc/articles/PMC8223974/ /pubmed/34063891 http://dx.doi.org/10.3390/life11060462 Text en © 2021 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
Fru, Pascaline Nanga
Nweke, Ekene Emmanuel
Mthimkhulu, Nompumelelo
Mvango, Sindisiwe
Nel, Marietha
Pilcher, Lynne Alison
Balogun, Mohammed
Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells
title Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells
title_full Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells
title_fullStr Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells
title_full_unstemmed Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells
title_short Anti-Cancer and Immunomodulatory Activity of a Polyethylene Glycol-Betulinic Acid Conjugate on Pancreatic Cancer Cells
title_sort anti-cancer and immunomodulatory activity of a polyethylene glycol-betulinic acid conjugate on pancreatic cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8223974/
https://www.ncbi.nlm.nih.gov/pubmed/34063891
http://dx.doi.org/10.3390/life11060462
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