Phytochemistry, Antioxidant, and Hepatoprotective Potential of Acanthospermum hispidum DC Extracts against Diethylnitrosamine-Induced Hepatotoxicity in Rats
Abstract
:1. Introduction
2. Materials and Methods
2.1. Plant
2.2. Chemical Equipment
2.3. Extraction
2.3.1. Ethanol Maceration
2.3.2. Aqueous Decoction
2.4. Phytochemical Investigation
2.4.1. Determination of Total Polyphenols
2.4.2. Determination of Total Flavonoids
2.5. Determination of the Antioxidant Potential of the Ethanolic and Aqueous Extract of Acanthospermum hispidum
2.5.1. Inhibition of Radical ABTS Assay
2.5.2. Reduction of Iron III Assay (FRAP)
2.5.3. Inhibition of Radical DPPH Assay
2.6. Biomembrane Protection
2.6.1. Desoxyribose Degradation Inhibitory Assay
2.6.2. Lipid Peroxidation Inhibitory Assay
2.7. In Vivo Hepatoprotection
2.7.1. Animal Conditioning
2.7.2. Animal Treatment
2.7.3. Biochemical Parameters
2.7.4. Assay of Antioxidant Enzymes and Malondialdehyde In Vivo
2.7.5. Statistical Evaluation
3. Results
3.1. Antioxidant Activities
3.2. Biomembrane Protection
3.3. Phytochemistry
3.4. Hepatoprotective Activity In Vivo
3.4.1. Antioxidant Enzymes and Malondialdehyde In Vivo
Variation of Catalase (CAT)
Variation of Superoxide Dismutase (SOD)
Variation of Malondialdehyde (MDA)
3.4.2. Biochemical Parameters
Assay for Alanine Aminotransferase (ALAT) and Aspartate Aminotransferase (ASAT)
4. Discussion
5. Conclusions
Author Contributions
Acknowledgments
Conflicts of Interest
References
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Extract | Antioxydant Activities | ||
---|---|---|---|
DPPH Ic 50% (µg/mL) | ABTS (mmol TE/g) | FRAP (mg AAE/g) | |
Ethanol extract | 0.08 ± 0.0018 b | 246.05 ± 1.55 a | 336.05 ± 2.391 b |
Aqueous extract | 0.6 ± 0.0012 c | 57.325 ± 1.26 b | 856.14 ± 2.59 a |
Quercetin | 0.044 ± 0.008 a | - | - |
Extract | Protection of the Biomembranes | |
---|---|---|
Lipid Peroxidation Extract Ic 50% (μg/mL) | Degradation of Desoxyribose Inhibition (% Inhibition) | |
Ethanol extract | 40 ± 1.3 a | 90.86 ± 1.52 a |
Aqueous extract | 181 ± 4.5 c | 75.87 ± 2.12 c |
Gallic Acid (reference) | 42 ± 1.8 b | 84.68 ± 3.31 b |
Extract | Phytochemistry | |
---|---|---|
Total Phenolic (mg EAG/g Extract) | Total Flavonoids (mg EQ/g Extract) | |
Ethanol extract | 335.8 ± 6.30 a | 24.17 ± 6.95 a |
Aqueous extract | 312.4 ± 5.6 b | 19.85 ± 9.65 b |
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N’DO, J.Y.-p.; HILOU, A.; OUEDRAOGO, N.; SOMBIE, E.N.; TRAORE, T.K. Phytochemistry, Antioxidant, and Hepatoprotective Potential of Acanthospermum hispidum DC Extracts against Diethylnitrosamine-Induced Hepatotoxicity in Rats. Medicines 2018, 5, 42. https://doi.org/10.3390/medicines5020042
N’DO JY-p, HILOU A, OUEDRAOGO N, SOMBIE EN, TRAORE TK. Phytochemistry, Antioxidant, and Hepatoprotective Potential of Acanthospermum hispidum DC Extracts against Diethylnitrosamine-Induced Hepatotoxicity in Rats. Medicines. 2018; 5(2):42. https://doi.org/10.3390/medicines5020042
Chicago/Turabian StyleN’DO, Jotham Yhi-pênê, Adama HILOU, Noufou OUEDRAOGO, Ernest Nogma SOMBIE, and Tata Kadiatou TRAORE. 2018. "Phytochemistry, Antioxidant, and Hepatoprotective Potential of Acanthospermum hispidum DC Extracts against Diethylnitrosamine-Induced Hepatotoxicity in Rats" Medicines 5, no. 2: 42. https://doi.org/10.3390/medicines5020042
APA StyleN’DO, J. Y. -p., HILOU, A., OUEDRAOGO, N., SOMBIE, E. N., & TRAORE, T. K. (2018). Phytochemistry, Antioxidant, and Hepatoprotective Potential of Acanthospermum hispidum DC Extracts against Diethylnitrosamine-Induced Hepatotoxicity in Rats. Medicines, 5(2), 42. https://doi.org/10.3390/medicines5020042