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In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM

Plant-derived antioxidants are a large group of natural products with the capacity to reduce radical-scavenging. Due to their potent therapeutic and preventive actions, these compounds receive a lot of attention from scientists, particularly pharmacologists. The pharmacological activities of the Azi...

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Autores principales: Prakash, Palanisamy, Kumari, Nisha, Gayathiri, Ekambaram, Selvam, Kuppusamy, Ragunathan, Manikavali Gurunadhan, Chandrasekaran, Murugesan, Al-Dosary, Munirah Abdullah, Hatamleh, Ashraf Atef, Nadda, Ashok Kumar, Kumar, Manu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8389312/
https://www.ncbi.nlm.nih.gov/pubmed/34439555
http://dx.doi.org/10.3390/antiox10081307
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author Prakash, Palanisamy
Kumari, Nisha
Gayathiri, Ekambaram
Selvam, Kuppusamy
Ragunathan, Manikavali Gurunadhan
Chandrasekaran, Murugesan
Al-Dosary, Munirah Abdullah
Hatamleh, Ashraf Atef
Nadda, Ashok Kumar
Kumar, Manu
author_facet Prakash, Palanisamy
Kumari, Nisha
Gayathiri, Ekambaram
Selvam, Kuppusamy
Ragunathan, Manikavali Gurunadhan
Chandrasekaran, Murugesan
Al-Dosary, Munirah Abdullah
Hatamleh, Ashraf Atef
Nadda, Ashok Kumar
Kumar, Manu
author_sort Prakash, Palanisamy
collection PubMed
description Plant-derived antioxidants are a large group of natural products with the capacity to reduce radical-scavenging. Due to their potent therapeutic and preventive actions, these compounds receive a lot of attention from scientists, particularly pharmacologists. The pharmacological activities of the Azima tetracantha Lam. (AT) plant, belonging to the Salvadoraceae family, reported here justifies its traditional use in treating several diseases or disorders. This study aims to look at the propensity of certain plant compounds found in natural AT plant extracts that might play a critical role as a secondary metabolite in cervical cancer treatment. There is a shortage of information on the plant’s phytochemical and biological characteristics. Methanol (MeOH) solvent extracts of the dried AT plant were screened phytochemically. Its aqueous extract was tested for antioxidant, antiseptic, anti-inflammatory, and anticancerous properties. Absorption Distribution Metabolism and Excretion (ADME/T), Docking, and HPLC were also performed. In clinical treatment, the plant shown no adverse effects. The antioxidant activity was evaluated and showed the highest concentration at 150 µg/mL (63.50%). MeOH leaf extract of AT exhibited the highest and best inhibitory activity against Staphylococcus aureus (15.3 mm/1000) and displayed a high antiseptic potential. At a 200 µg/mL concentration, MeOH leaves-extract inhibited red blood cells (RBC) hemolysis by 66.56 ± 0.40, compared with 62.33 ± 0.40 from the standard. Albumin’s ability to suppress protein denaturation ranged from 16.75 ± 0.65 to 62.35 ± 0.20 inhibitions in this test, providing even more support for its favorable anti-inflammatory properties. The ADME/T studies were considered for a potential cancer drug molecule, and one of our compounds from MeOH extract fills the ADME and toxicity parameters. The forms of compound 4 showed a strong hydrogen-bonding interaction with the vital amino acids (ASN923, THR410, LEU840TRY927, PHE921, and GLY922). A total of 90% of cell inhibition was observed when HeLa cell lines were treated with 300 µg/mL of compound 4 (7-acetyl-3a(1)-methyl- 4,14-dioxo-1,2,3a,3a(1),4,5,5a,6,8a,9b,10,11,11a-tetradecahydro-2,5a epoxy5,6a (methanooxymethano)phenaleno[1′,9′:5,6,7]indeno[1,7a-b]oxiren-2-yl acetate). The polyphenol compounds demonstrated significant advances in anticancer drug properties, and it could lead to activation of cancer cell apoptosis.
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spelling pubmed-83893122021-08-27 In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM Prakash, Palanisamy Kumari, Nisha Gayathiri, Ekambaram Selvam, Kuppusamy Ragunathan, Manikavali Gurunadhan Chandrasekaran, Murugesan Al-Dosary, Munirah Abdullah Hatamleh, Ashraf Atef Nadda, Ashok Kumar Kumar, Manu Antioxidants (Basel) Article Plant-derived antioxidants are a large group of natural products with the capacity to reduce radical-scavenging. Due to their potent therapeutic and preventive actions, these compounds receive a lot of attention from scientists, particularly pharmacologists. The pharmacological activities of the Azima tetracantha Lam. (AT) plant, belonging to the Salvadoraceae family, reported here justifies its traditional use in treating several diseases or disorders. This study aims to look at the propensity of certain plant compounds found in natural AT plant extracts that might play a critical role as a secondary metabolite in cervical cancer treatment. There is a shortage of information on the plant’s phytochemical and biological characteristics. Methanol (MeOH) solvent extracts of the dried AT plant were screened phytochemically. Its aqueous extract was tested for antioxidant, antiseptic, anti-inflammatory, and anticancerous properties. Absorption Distribution Metabolism and Excretion (ADME/T), Docking, and HPLC were also performed. In clinical treatment, the plant shown no adverse effects. The antioxidant activity was evaluated and showed the highest concentration at 150 µg/mL (63.50%). MeOH leaf extract of AT exhibited the highest and best inhibitory activity against Staphylococcus aureus (15.3 mm/1000) and displayed a high antiseptic potential. At a 200 µg/mL concentration, MeOH leaves-extract inhibited red blood cells (RBC) hemolysis by 66.56 ± 0.40, compared with 62.33 ± 0.40 from the standard. Albumin’s ability to suppress protein denaturation ranged from 16.75 ± 0.65 to 62.35 ± 0.20 inhibitions in this test, providing even more support for its favorable anti-inflammatory properties. The ADME/T studies were considered for a potential cancer drug molecule, and one of our compounds from MeOH extract fills the ADME and toxicity parameters. The forms of compound 4 showed a strong hydrogen-bonding interaction with the vital amino acids (ASN923, THR410, LEU840TRY927, PHE921, and GLY922). A total of 90% of cell inhibition was observed when HeLa cell lines were treated with 300 µg/mL of compound 4 (7-acetyl-3a(1)-methyl- 4,14-dioxo-1,2,3a,3a(1),4,5,5a,6,8a,9b,10,11,11a-tetradecahydro-2,5a epoxy5,6a (methanooxymethano)phenaleno[1′,9′:5,6,7]indeno[1,7a-b]oxiren-2-yl acetate). The polyphenol compounds demonstrated significant advances in anticancer drug properties, and it could lead to activation of cancer cell apoptosis. MDPI 2021-08-18 /pmc/articles/PMC8389312/ /pubmed/34439555 http://dx.doi.org/10.3390/antiox10081307 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
Prakash, Palanisamy
Kumari, Nisha
Gayathiri, Ekambaram
Selvam, Kuppusamy
Ragunathan, Manikavali Gurunadhan
Chandrasekaran, Murugesan
Al-Dosary, Munirah Abdullah
Hatamleh, Ashraf Atef
Nadda, Ashok Kumar
Kumar, Manu
In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM
title In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM
title_full In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM
title_fullStr In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM
title_full_unstemmed In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM
title_short In Vitro and In Silico Toxicological Properties of Natural Antioxidant Therapeutic Agent Azima tetracantha. LAM
title_sort in vitro and in silico toxicological properties of natural antioxidant therapeutic agent azima tetracantha. lam
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8389312/
https://www.ncbi.nlm.nih.gov/pubmed/34439555
http://dx.doi.org/10.3390/antiox10081307
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