Antioxidant Activity and Phenolic Content of Paederia foetida and Syzygium aqueum
Abstract
:Introduction
Results and Discussion
Extraction
Antioxidant activity
Coupled oxidation of β-carotene and linoleic acid
ABTS free radical-scavenging activity
Total phenolic content of the plant extracts
Samples | FAb |
---|---|
P. foetida leaves (dried) | 35.52 ± 1.64 |
P. foetida leaves (fresh) | 62.64 ± 1.32 |
S. aqueum leaves (dried) | 20.77 ± 0.34 |
S. aqueum leaves (fresh) | 52.96 ± 1.62 |
P. foetida twig (dried) | 20.8 ± 3.25 |
P. foetida twig (fresh) | 60.93 ± 3.40 |
Correlation between two methods of antioxidant activity
Samples | Antioxidant (%)(β-carotene) method | Antioxidant (%)(ABTS) method |
---|---|---|
S. aqueum Leaves (fresh) | 73.77 | 70.31 |
S. aqueum Leaves (dried) | 58.73 | 65.08 |
P. foetida Leaves (fresh) | 78.13 | 75.38 |
P. foetida Leaves (dried) | 66.67 | 67.74 |
Correlation between phenolic content and antioxidant activity
Conclusions
Experimental
Preparation of samples
Preparation of extracts
Antioxidant activity
Coupled oxidation of β-carotene and linoleic acid
ABTS free radical scavenging activity
Quantitative determination of total phenolic content
Acknowledgements
References and Notes
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Osman, H.; Rahim, A.A.; Isa, N.M.; Bakhir, N.M. Antioxidant Activity and Phenolic Content of Paederia foetida and Syzygium aqueum. Molecules 2009, 14, 970-978. https://doi.org/10.3390/molecules14030970
Osman H, Rahim AA, Isa NM, Bakhir NM. Antioxidant Activity and Phenolic Content of Paederia foetida and Syzygium aqueum. Molecules. 2009; 14(3):970-978. https://doi.org/10.3390/molecules14030970
Chicago/Turabian StyleOsman, Hasnah, Afidah A. Rahim, Norhafizah M. Isa, and Nornaemah M. Bakhir. 2009. "Antioxidant Activity and Phenolic Content of Paederia foetida and Syzygium aqueum" Molecules 14, no. 3: 970-978. https://doi.org/10.3390/molecules14030970
APA StyleOsman, H., Rahim, A. A., Isa, N. M., & Bakhir, N. M. (2009). Antioxidant Activity and Phenolic Content of Paederia foetida and Syzygium aqueum. Molecules, 14(3), 970-978. https://doi.org/10.3390/molecules14030970