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Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis

The present study describes the green biofunctional synthesis of magnesium oxide (MgO) nanoparticles using the aqueous Tarenna asiatica fruit extract. The characterization of Tarenna asiatica fruit extract MgO nanoparticles (TAFEMgO NPs) was achieved by X-ray powder diffraction, UV-Vis spectroscopy,...

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Autores principales: Venkatappa, Manjula M., Udagani, Chikkappa, Hanumegowda, Sujatha M., Pramod, Siddanakoppalu N., Venkataramaiah, Shivakumar, Rangappa, Rajesh, Achur, Rajeshwara, Alataway, Abed, Dewidar, Ahmed Z., Al-Yafrsi, Mohamed, A. Mahmoud, Eman, Elansary, Hosam O., Sannaningaiah, Devaraja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9413574/
https://www.ncbi.nlm.nih.gov/pubmed/36014400
http://dx.doi.org/10.3390/molecules27165162
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author Venkatappa, Manjula M.
Udagani, Chikkappa
Hanumegowda, Sujatha M.
Pramod, Siddanakoppalu N.
Venkataramaiah, Shivakumar
Rangappa, Rajesh
Achur, Rajeshwara
Alataway, Abed
Dewidar, Ahmed Z.
Al-Yafrsi, Mohamed
A. Mahmoud, Eman
Elansary, Hosam O.
Sannaningaiah, Devaraja
author_facet Venkatappa, Manjula M.
Udagani, Chikkappa
Hanumegowda, Sujatha M.
Pramod, Siddanakoppalu N.
Venkataramaiah, Shivakumar
Rangappa, Rajesh
Achur, Rajeshwara
Alataway, Abed
Dewidar, Ahmed Z.
Al-Yafrsi, Mohamed
A. Mahmoud, Eman
Elansary, Hosam O.
Sannaningaiah, Devaraja
author_sort Venkatappa, Manjula M.
collection PubMed
description The present study describes the green biofunctional synthesis of magnesium oxide (MgO) nanoparticles using the aqueous Tarenna asiatica fruit extract. The characterization of Tarenna asiatica fruit extract MgO nanoparticles (TAFEMgO NPs) was achieved by X-ray powder diffraction, UV-Vis spectroscopy, FTIR, TEM, SEM, and energy-dispersive X-ray diffraction. TAFEMgO NPs scavenged the DPPH free radicals with an IC50 value of 55.95 μg/μL, and it was highly significant compared to the standard. To authenticate the observed antioxidant potential of TAFEMgO NPs, oxidative stress was induced in red blood cells (RBC) using sodium nitrite (NaNO(2)). Interestingly, TAFEMgO NPs ameliorated the RBC damage from oxidative stress by significantly restoring the stress parameters, such as the protein carbonyl content (PCC), lipid peroxidation (LPO), total thiol (TT), super-oxide dismutase (SOD), and catalase (CAT). Furthermore, oxidative stress was induced in-vivo in Sprague Dawley female rats using diclofenac (DFC). TAFEMgO NPs normalized the stress parameters in-vivo and minimized the oxidative damage in tissues. Most importantly, TAFEMgO NPs restored the function and architecture of the damaged livers, kidneys, and small intestines by regulating biochemical parameters. TAFEMgO NPs exhibited an anticoagulant effect by increasing the clotting time from 193 s in the control to 885 s in the platelet rich plasma. TAFEMgO NPs prolonged the formation of the clot process in the activated partial thromboplastin time and the prothrombin time, suggest the effective involvement in both intrinsic and extrinsic clotting pathways of the blood coagulation cascade. TAFEMgO NPs inhibited adenosine di-phosphate (ADP)-induced platelet aggregation. TAFEMgO NPs did not show hemolytic, hemorrhagic, and edema-inducing properties at the tested concentration of 100 mg/kgbody weight, suggesting its non-toxic property. In conclusion, TAFEMgO NPs mitigates the sodium nitrite (NaNO(2))- and diclofenac (DFC)-induced stress due to oxidative damage in both in vitro and in vivo experimental models.
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spelling pubmed-94135742022-08-27 Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis Venkatappa, Manjula M. Udagani, Chikkappa Hanumegowda, Sujatha M. Pramod, Siddanakoppalu N. Venkataramaiah, Shivakumar Rangappa, Rajesh Achur, Rajeshwara Alataway, Abed Dewidar, Ahmed Z. Al-Yafrsi, Mohamed A. Mahmoud, Eman Elansary, Hosam O. Sannaningaiah, Devaraja Molecules Article The present study describes the green biofunctional synthesis of magnesium oxide (MgO) nanoparticles using the aqueous Tarenna asiatica fruit extract. The characterization of Tarenna asiatica fruit extract MgO nanoparticles (TAFEMgO NPs) was achieved by X-ray powder diffraction, UV-Vis spectroscopy, FTIR, TEM, SEM, and energy-dispersive X-ray diffraction. TAFEMgO NPs scavenged the DPPH free radicals with an IC50 value of 55.95 μg/μL, and it was highly significant compared to the standard. To authenticate the observed antioxidant potential of TAFEMgO NPs, oxidative stress was induced in red blood cells (RBC) using sodium nitrite (NaNO(2)). Interestingly, TAFEMgO NPs ameliorated the RBC damage from oxidative stress by significantly restoring the stress parameters, such as the protein carbonyl content (PCC), lipid peroxidation (LPO), total thiol (TT), super-oxide dismutase (SOD), and catalase (CAT). Furthermore, oxidative stress was induced in-vivo in Sprague Dawley female rats using diclofenac (DFC). TAFEMgO NPs normalized the stress parameters in-vivo and minimized the oxidative damage in tissues. Most importantly, TAFEMgO NPs restored the function and architecture of the damaged livers, kidneys, and small intestines by regulating biochemical parameters. TAFEMgO NPs exhibited an anticoagulant effect by increasing the clotting time from 193 s in the control to 885 s in the platelet rich plasma. TAFEMgO NPs prolonged the formation of the clot process in the activated partial thromboplastin time and the prothrombin time, suggest the effective involvement in both intrinsic and extrinsic clotting pathways of the blood coagulation cascade. TAFEMgO NPs inhibited adenosine di-phosphate (ADP)-induced platelet aggregation. TAFEMgO NPs did not show hemolytic, hemorrhagic, and edema-inducing properties at the tested concentration of 100 mg/kgbody weight, suggesting its non-toxic property. In conclusion, TAFEMgO NPs mitigates the sodium nitrite (NaNO(2))- and diclofenac (DFC)-induced stress due to oxidative damage in both in vitro and in vivo experimental models. MDPI 2022-08-12 /pmc/articles/PMC9413574/ /pubmed/36014400 http://dx.doi.org/10.3390/molecules27165162 Text en © 2022 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
Venkatappa, Manjula M.
Udagani, Chikkappa
Hanumegowda, Sujatha M.
Pramod, Siddanakoppalu N.
Venkataramaiah, Shivakumar
Rangappa, Rajesh
Achur, Rajeshwara
Alataway, Abed
Dewidar, Ahmed Z.
Al-Yafrsi, Mohamed
A. Mahmoud, Eman
Elansary, Hosam O.
Sannaningaiah, Devaraja
Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis
title Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis
title_full Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis
title_fullStr Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis
title_full_unstemmed Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis
title_short Effect of Biofunctional Green Synthesized MgO-Nanoparticles on Oxidative-Stress-Induced Tissue Damage and Thrombosis
title_sort effect of biofunctional green synthesized mgo-nanoparticles on oxidative-stress-induced tissue damage and thrombosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9413574/
https://www.ncbi.nlm.nih.gov/pubmed/36014400
http://dx.doi.org/10.3390/molecules27165162
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