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The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations

OBJECTIVES: To explore the potential activity of Orthosiphon aristatus (OA) against atopic dermatitis (AD). METHODS: Phytocompounds from OA were identified through chromatography analysis, then continued to target identification and functional annotation to explore the potential target of OA. Then,...

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Autores principales: Pandaleke, Thigita A., Handono, Kusworini, Widasmara, Dhelya, Susianti, Hani
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taibah University 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10692725/
https://www.ncbi.nlm.nih.gov/pubmed/38047238
http://dx.doi.org/10.1016/j.jtumed.2023.10.005
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author Pandaleke, Thigita A.
Handono, Kusworini
Widasmara, Dhelya
Susianti, Hani
author_facet Pandaleke, Thigita A.
Handono, Kusworini
Widasmara, Dhelya
Susianti, Hani
author_sort Pandaleke, Thigita A.
collection PubMed
description OBJECTIVES: To explore the potential activity of Orthosiphon aristatus (OA) against atopic dermatitis (AD). METHODS: Phytocompounds from OA were identified through chromatography analysis, then continued to target identification and functional annotation to explore the potential target of OA. Then, network pharmacology from annotated proteins determined protein targets for OA phytocompounds. Protein with highest rank according to the betweenness and closeness algorithm then continued to molecular docking and validated through molecular dynamics analysis. RESULTS: Chromatography data analysis revealed thirty-six compounds, predominantly classified as carboxylic acid, fatty acyls, and polyphenols. Upon identifying these compounds, network biology-based target identification revealed their potential bioactivity in modulating inflammation in AD. Tumour Necrosis Factor-alpha (TNF-α) and Prostaglandin G/H synthase 2 (PTGS2) emerged as the most probable targets based on hub centrality in the protein–protein interaction network. Later, molecular docking analyses highlighted sixteen compounds with good inhibitory activity against these two proteins. Notably, molecular dynamics simulation revealed that three compounds out of the previous sixteen potential compounds were more likely to act as the TNF-α and PTGS2 inhibitor as well as their native inhibitor. Those compounds are (1R,9R)-5-Cyclohexyl-11- (propylsulfonyl)-7,11- diazatricyclo[7.3.1.02,7]trideca- 2,4-dien-6-one, also known as ZINC8297940, as the best TNF-α inhibitor along with dl-Leucineamide and Benazol P as the potential inhibitor of PTGS2. CONCLUSIONS: These findings suggest that OA may exert therapeutic effects against AD by controlling inflammation through TNF-α and PTGS2 signalling pathways.
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spelling pubmed-106927252023-12-03 The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations Pandaleke, Thigita A. Handono, Kusworini Widasmara, Dhelya Susianti, Hani J Taibah Univ Med Sci Original Article OBJECTIVES: To explore the potential activity of Orthosiphon aristatus (OA) against atopic dermatitis (AD). METHODS: Phytocompounds from OA were identified through chromatography analysis, then continued to target identification and functional annotation to explore the potential target of OA. Then, network pharmacology from annotated proteins determined protein targets for OA phytocompounds. Protein with highest rank according to the betweenness and closeness algorithm then continued to molecular docking and validated through molecular dynamics analysis. RESULTS: Chromatography data analysis revealed thirty-six compounds, predominantly classified as carboxylic acid, fatty acyls, and polyphenols. Upon identifying these compounds, network biology-based target identification revealed their potential bioactivity in modulating inflammation in AD. Tumour Necrosis Factor-alpha (TNF-α) and Prostaglandin G/H synthase 2 (PTGS2) emerged as the most probable targets based on hub centrality in the protein–protein interaction network. Later, molecular docking analyses highlighted sixteen compounds with good inhibitory activity against these two proteins. Notably, molecular dynamics simulation revealed that three compounds out of the previous sixteen potential compounds were more likely to act as the TNF-α and PTGS2 inhibitor as well as their native inhibitor. Those compounds are (1R,9R)-5-Cyclohexyl-11- (propylsulfonyl)-7,11- diazatricyclo[7.3.1.02,7]trideca- 2,4-dien-6-one, also known as ZINC8297940, as the best TNF-α inhibitor along with dl-Leucineamide and Benazol P as the potential inhibitor of PTGS2. CONCLUSIONS: These findings suggest that OA may exert therapeutic effects against AD by controlling inflammation through TNF-α and PTGS2 signalling pathways. Taibah University 2023-11-04 /pmc/articles/PMC10692725/ /pubmed/38047238 http://dx.doi.org/10.1016/j.jtumed.2023.10.005 Text en © 2023 The Authors 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 Original Article
Pandaleke, Thigita A.
Handono, Kusworini
Widasmara, Dhelya
Susianti, Hani
The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations
title The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations
title_full The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations
title_fullStr The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations
title_full_unstemmed The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations
title_short The immunomodulatory activity of Orthosiphon aristatus against atopic dermatitis: Evidence-based on network pharmacology and molecular simulations
title_sort immunomodulatory activity of orthosiphon aristatus against atopic dermatitis: evidence-based on network pharmacology and molecular simulations
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10692725/
https://www.ncbi.nlm.nih.gov/pubmed/38047238
http://dx.doi.org/10.1016/j.jtumed.2023.10.005
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