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Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo

The proposed study involves delivering drug/bioactive using a single nanoplatform based on poly lactic-co-glycolic acid (PLGA) for better efficacy, synergistic effect, and reduced toxicity. PLGA was conjugated to doxorubicin (D1), and this conjugate was used for encapsulation of naringenin (D2) to d...

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Autores principales: Khan, Iliyas, Sarkar, Bibekananda, Joshi, Gaurav, Nakhate, Kartik T., Ajazuddin, Mantha, Anil K., Kumar, Raj, Kaul, Ankur, Chaturvedi, Shubhra, Mishra, Anil K., Gupta, Umesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9934469/
https://www.ncbi.nlm.nih.gov/pubmed/36824308
http://dx.doi.org/10.1016/j.bbiosy.2021.100022
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author Khan, Iliyas
Sarkar, Bibekananda
Joshi, Gaurav
Nakhate, Kartik T.
Ajazuddin
Mantha, Anil K.
Kumar, Raj
Kaul, Ankur
Chaturvedi, Shubhra
Mishra, Anil K.
Gupta, Umesh
author_facet Khan, Iliyas
Sarkar, Bibekananda
Joshi, Gaurav
Nakhate, Kartik T.
Ajazuddin
Mantha, Anil K.
Kumar, Raj
Kaul, Ankur
Chaturvedi, Shubhra
Mishra, Anil K.
Gupta, Umesh
author_sort Khan, Iliyas
collection PubMed
description The proposed study involves delivering drug/bioactive using a single nanoplatform based on poly lactic-co-glycolic acid (PLGA) for better efficacy, synergistic effect, and reduced toxicity. PLGA was conjugated to doxorubicin (D1), and this conjugate was used for encapsulation of naringenin (D2) to develop naringenin loaded PLGA-doxorubicin nanoparticles (PDNG). The PDNG NPs were 165.4 ± 4.27 nm in size, having 0.112 ± 0.035 PDI, with -10.1 ± 2.74 zeta potential. The surface morphology was confirmed through transmission electron microscopy (TEM) and atomic force microscopy (AFM). The in vitro studies revealed that PDNG NPs exhibited selective anticancer potential in breast cancer cells, and induced apoptosis with S-phase inhibition via an increase in intrinsic reactive oxygen species (ROS) and altering the mitochondrial potential. The results also signified the efficient uptake of nanoparticles encapsulated drugs by cells besides elevating the caspase level suggesting programmed cell death induction upon treatment. In vivo studies results revealed better half-life (27.35 ± 1.58 and 11.98 ± 1.21 h for doxorubicin and naringenin) with higher plasma drug concentration. In vivo biodistribution study was also in accordance with the in vitro studies and in line with the in vivo pharmacokinetic. In vivo tumor regression assay portrayed that the formulation PDNG halts the tumor growth and lessen the tumor volume with the stable bodyweight of the mice. Conclusively, the dual delivery approach was beneficial and highly effective against tumor-induced mice.
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spelling pubmed-99344692023-02-22 Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo Khan, Iliyas Sarkar, Bibekananda Joshi, Gaurav Nakhate, Kartik T. Ajazuddin Mantha, Anil K. Kumar, Raj Kaul, Ankur Chaturvedi, Shubhra Mishra, Anil K. Gupta, Umesh Biomater Biosyst Research Article The proposed study involves delivering drug/bioactive using a single nanoplatform based on poly lactic-co-glycolic acid (PLGA) for better efficacy, synergistic effect, and reduced toxicity. PLGA was conjugated to doxorubicin (D1), and this conjugate was used for encapsulation of naringenin (D2) to develop naringenin loaded PLGA-doxorubicin nanoparticles (PDNG). The PDNG NPs were 165.4 ± 4.27 nm in size, having 0.112 ± 0.035 PDI, with -10.1 ± 2.74 zeta potential. The surface morphology was confirmed through transmission electron microscopy (TEM) and atomic force microscopy (AFM). The in vitro studies revealed that PDNG NPs exhibited selective anticancer potential in breast cancer cells, and induced apoptosis with S-phase inhibition via an increase in intrinsic reactive oxygen species (ROS) and altering the mitochondrial potential. The results also signified the efficient uptake of nanoparticles encapsulated drugs by cells besides elevating the caspase level suggesting programmed cell death induction upon treatment. In vivo studies results revealed better half-life (27.35 ± 1.58 and 11.98 ± 1.21 h for doxorubicin and naringenin) with higher plasma drug concentration. In vivo biodistribution study was also in accordance with the in vitro studies and in line with the in vivo pharmacokinetic. In vivo tumor regression assay portrayed that the formulation PDNG halts the tumor growth and lessen the tumor volume with the stable bodyweight of the mice. Conclusively, the dual delivery approach was beneficial and highly effective against tumor-induced mice. Elsevier 2021-07-30 /pmc/articles/PMC9934469/ /pubmed/36824308 http://dx.doi.org/10.1016/j.bbiosy.2021.100022 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Khan, Iliyas
Sarkar, Bibekananda
Joshi, Gaurav
Nakhate, Kartik T.
Ajazuddin
Mantha, Anil K.
Kumar, Raj
Kaul, Ankur
Chaturvedi, Shubhra
Mishra, Anil K.
Gupta, Umesh
Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo
title Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo
title_full Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo
title_fullStr Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo
title_full_unstemmed Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo
title_short Biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: Mechanistic exploration and evaluation of anticancer effect in vitro and in vivo
title_sort biodegradable nanoparticulate co-delivery of flavonoid and doxorubicin: mechanistic exploration and evaluation of anticancer effect in vitro and in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9934469/
https://www.ncbi.nlm.nih.gov/pubmed/36824308
http://dx.doi.org/10.1016/j.bbiosy.2021.100022
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