Cargando…
Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach
Andrographolide (AG) has been shown to have several medicinal and pharmaceutical effects, such as antimicrobial, anti-inflammatory, antioxidant, anti-diabetic, and anti-malarial activities. Moreover, studies to assess the pharmacological effect of AG on the metabolic changes of uninfected red blood...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400355/ https://www.ncbi.nlm.nih.gov/pubmed/34436427 http://dx.doi.org/10.3390/metabo11080486 |
_version_ | 1783745295970992128 |
---|---|
author | Alapid, Ashraf Ahmad Issa Abd. Majid, Roslaini Ibraheem, Zaid O. Mediani, Ahmed Ismail, Intan Safinar Unyah, Ngah Zasmy Alhassan Abdullahi, Sharif Nordin, Norshariza Nasiru Wana, Mohammed Basir, Rusliza |
author_facet | Alapid, Ashraf Ahmad Issa Abd. Majid, Roslaini Ibraheem, Zaid O. Mediani, Ahmed Ismail, Intan Safinar Unyah, Ngah Zasmy Alhassan Abdullahi, Sharif Nordin, Norshariza Nasiru Wana, Mohammed Basir, Rusliza |
author_sort | Alapid, Ashraf Ahmad Issa |
collection | PubMed |
description | Andrographolide (AG) has been shown to have several medicinal and pharmaceutical effects, such as antimicrobial, anti-inflammatory, antioxidant, anti-diabetic, and anti-malarial activities. Moreover, studies to assess the pharmacological effect of AG on the metabolic changes of uninfected red blood cells (uRBCs) have not yet been investigated. This study aims to evaluate the pharmacological effects of AG compared to chloroquine (CQ) on the metabolic variations of uRBCs in vitro using a proton nuclear magnetic resonance ((1)H-NMR)-based metabolomics approach coupled with multivariate data analysis (MVDA). Forty-one metabolites were successfully identified by (1)H-NMR. The results of the unsupervised data analysis principal component analysis (PCA) showed ideal differentiation between AG and CQ. PC1 and PC2 accounted for 71.4% and 17.7% of the explained variation, respectively, with a total variance of 89.10%. Based on S-plot and VIP values, a total of 28 and 32 metabolites were identified as biomarkers in uRBCs-AG and uRBCs-CQ, respectively. In uRBCs treated with AG, ten metabolic pathways were determined to be disturbed, including riboflavin metabolism, d-glutamate and d-glutamine metabolism, phenylalanine metabolism, glutathione metabolism, proline and arginine metabolism, arginine biosynthesis, citrate cycle, glycolysis/gluconeogenesis, and pyruvate metabolism as well as alanine, aspartate, and glutamate metabolism. In contrast, in CQ-treated uRBCs, nine affected metabolic pathways were determined, which involved the same metabolic pathways for uRBCs-AG, except for glutathione metabolism. These findings suggest an evident relationship between AG and CQ associated with metabolic changes in intact RBCs after being exposed to the treatment. The metabolomics results could allow useful comprehensive insights into the underlying mechanism of the action of AG and CQ on red blood cells. Consequently, the (1)H-NMR-based metabolomics approach was successfully utilized to identify the pharmacological effects of AG and CQ on the metabolic variations of uRBCs. |
format | Online Article Text |
id | pubmed-8400355 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-84003552021-08-29 Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach Alapid, Ashraf Ahmad Issa Abd. Majid, Roslaini Ibraheem, Zaid O. Mediani, Ahmed Ismail, Intan Safinar Unyah, Ngah Zasmy Alhassan Abdullahi, Sharif Nordin, Norshariza Nasiru Wana, Mohammed Basir, Rusliza Metabolites Article Andrographolide (AG) has been shown to have several medicinal and pharmaceutical effects, such as antimicrobial, anti-inflammatory, antioxidant, anti-diabetic, and anti-malarial activities. Moreover, studies to assess the pharmacological effect of AG on the metabolic changes of uninfected red blood cells (uRBCs) have not yet been investigated. This study aims to evaluate the pharmacological effects of AG compared to chloroquine (CQ) on the metabolic variations of uRBCs in vitro using a proton nuclear magnetic resonance ((1)H-NMR)-based metabolomics approach coupled with multivariate data analysis (MVDA). Forty-one metabolites were successfully identified by (1)H-NMR. The results of the unsupervised data analysis principal component analysis (PCA) showed ideal differentiation between AG and CQ. PC1 and PC2 accounted for 71.4% and 17.7% of the explained variation, respectively, with a total variance of 89.10%. Based on S-plot and VIP values, a total of 28 and 32 metabolites were identified as biomarkers in uRBCs-AG and uRBCs-CQ, respectively. In uRBCs treated with AG, ten metabolic pathways were determined to be disturbed, including riboflavin metabolism, d-glutamate and d-glutamine metabolism, phenylalanine metabolism, glutathione metabolism, proline and arginine metabolism, arginine biosynthesis, citrate cycle, glycolysis/gluconeogenesis, and pyruvate metabolism as well as alanine, aspartate, and glutamate metabolism. In contrast, in CQ-treated uRBCs, nine affected metabolic pathways were determined, which involved the same metabolic pathways for uRBCs-AG, except for glutathione metabolism. These findings suggest an evident relationship between AG and CQ associated with metabolic changes in intact RBCs after being exposed to the treatment. The metabolomics results could allow useful comprehensive insights into the underlying mechanism of the action of AG and CQ on red blood cells. Consequently, the (1)H-NMR-based metabolomics approach was successfully utilized to identify the pharmacological effects of AG and CQ on the metabolic variations of uRBCs. MDPI 2021-07-28 /pmc/articles/PMC8400355/ /pubmed/34436427 http://dx.doi.org/10.3390/metabo11080486 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 Alapid, Ashraf Ahmad Issa Abd. Majid, Roslaini Ibraheem, Zaid O. Mediani, Ahmed Ismail, Intan Safinar Unyah, Ngah Zasmy Alhassan Abdullahi, Sharif Nordin, Norshariza Nasiru Wana, Mohammed Basir, Rusliza Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach |
title | Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach |
title_full | Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach |
title_fullStr | Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach |
title_full_unstemmed | Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach |
title_short | Investigation of Andrographolide Effect on Non-Infected Red Blood Cells Using the (1)H-NMR-Based Metabolomics Approach |
title_sort | investigation of andrographolide effect on non-infected red blood cells using the (1)h-nmr-based metabolomics approach |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400355/ https://www.ncbi.nlm.nih.gov/pubmed/34436427 http://dx.doi.org/10.3390/metabo11080486 |
work_keys_str_mv | AT alapidashrafahmadissa investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT abdmajidroslaini investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT ibraheemzaido investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT medianiahmed investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT ismailintansafinar investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT unyahngahzasmy investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT alhassanabdullahisharif investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT nordinnorshariza investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT nasiruwanamohammed investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach AT basirrusliza investigationofandrographolideeffectonnoninfectedredbloodcellsusingthe1hnmrbasedmetabolomicsapproach |