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Phytochemical Profiling and Antioxidant Potential of Solvent Extracts from Leaves and Flowers of Jasminum multiflorum and Jasminum nitidum
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The present study investigated the phytochemical composition and antioxidant potential of Jasminum multiflorum and
Jasminum nitidum leaves and flowers using different solvent extraction systems. Sequential extraction was carried out
with methanol, ethanol,ethyl acetate, chloroform, and aqueous solvents to evaluate solvent- dependent variation in
bioactive constituents. Qualitative phytochemical screenin revealed g the presence of alkaloid tannins, s,
flavonoids, sterols, terpenoids, and cardiac glycosides in most extracts, whereas saponins and phlobatannins were not
detected. Quantitative analysisindicated significant variation (p < 0.001) among solvents and plant species. The ethanolic
leaf extract of J. nitidum recorded the highest total phenolic content (41.26 ± 0.78 mg GAE g⁻¹), while J. multiflorum
showed 33.10 ± 1.25 mg GAE g⁻¹. Similarly, flavonoid content was higher in J. multiflorum (27. 14 ± 0.65 mg QE g⁻¹)
and J. nitidum (26.82 ± 0.58 mg QE g⁻¹). Antioxidant assays revealed that ethanolic extracts exhibited superior activity, with lower EC₅₀ values in DPPH radical scavenging (48.73 ± 0.93 µg mL⁻¹ for J. nitidum and 138.45 ± 1.37 µg mL⁻¹
for J. multiflorum) and higher ferric reducing power ( 610.12 ± 2. 74 and 468.33 ± 2.56 µmol Fe²⁺ g⁻¹, respectively).
Statistical analysis using one-wayANOVA followed by DMRT confirmed significant effects (p < 0.001) of solvent and
species on phytochemical and antioxidant parameters. The findings indicate that ethanol is an efficient solvent for
extracting antioxidant-rich phytoconstituents from Jasminum species, suggesting their potential application in
pharmaceutical and nutraceutical formulations.
Dr. Yashwant Research Labs Pvt. Ltd.
Title: Phytochemical Profiling and Antioxidant Potential of Solvent Extracts from Leaves and Flowers of Jasminum multiflorum and Jasminum nitidum
Description:
The present study investigated the phytochemical composition and antioxidant potential of Jasminum multiflorum and
Jasminum nitidum leaves and flowers using different solvent extraction systems.
Sequential extraction was carried out
with methanol, ethanol,ethyl acetate, chloroform, and aqueous solvents to evaluate solvent- dependent variation in
bioactive constituents.
Qualitative phytochemical screenin revealed g the presence of alkaloid tannins, s,
flavonoids, sterols, terpenoids, and cardiac glycosides in most extracts, whereas saponins and phlobatannins were not
detected.
Quantitative analysisindicated significant variation (p < 0.
001) among solvents and plant species.
The ethanolic
leaf extract of J.
nitidum recorded the highest total phenolic content (41.
26 ± 0.
78 mg GAE g⁻¹), while J.
multiflorum
showed 33.
10 ± 1.
25 mg GAE g⁻¹.
Similarly, flavonoid content was higher in J.
multiflorum (27.
14 ± 0.
65 mg QE g⁻¹)
and J.
nitidum (26.
82 ± 0.
58 mg QE g⁻¹).
Antioxidant assays revealed that ethanolic extracts exhibited superior activity, with lower EC₅₀ values in DPPH radical scavenging (48.
73 ± 0.
93 µg mL⁻¹ for J.
nitidum and 138.
45 ± 1.
37 µg mL⁻¹
for J.
multiflorum) and higher ferric reducing power ( 610.
12 ± 2.
74 and 468.
33 ± 2.
56 µmol Fe²⁺ g⁻¹, respectively).
Statistical analysis using one-wayANOVA followed by DMRT confirmed significant effects (p < 0.
001) of solvent and
species on phytochemical and antioxidant parameters.
The findings indicate that ethanol is an efficient solvent for
extracting antioxidant-rich phytoconstituents from Jasminum species, suggesting their potential application in
pharmaceutical and nutraceutical formulations.
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