| Literature DB >> 31627372 |
Neha Sharma1, Anket Sharma2,3, Gaurav Bhatia4,5, Marco Landi6, Marian Brestic7,8, Bikram Singh9, Jatinder Singh10, Satwinderjeet Kaur11, Renu Bhardwaj12.
Abstract
Plants have been the basis of traditional medicine since the dawn of civilizations. Different plant parts possess various phytochemicals, playing important roles in preventing and curing diseases. Scientists, through extensive experimental studies, are playing an important part in establishing the use of phytochemicals in medicine. However, there are still a large number of medicinal plants which need to be studied for their phytochemical profile. In this study, the objective was to isolate phytochemicals from bark of Bauhinia variegata L. and to study them for their antioxidant and cytotoxic activities. The bark was extracted with methanol, followed by column chromatography and thus isolating kaempferol, stigmasterol, protocatechuic acid-methyl ester (PCA-ME) and protocatechuic acid (PCA). 2,2-azinobis-3-ethyl-benzothiazoline-6-sulfonic acid (ABTS) and 2, 2'-diphenyl-1-picrylhydrazyl radical (DPPH) radical scavenging assays were utilized for assessment of antioxidant activity, and 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) dye reduction assay was used to determine cytotoxic activity against C-6 glioma rat brain, MCF-7 breast cancer, and HCT-15 colon cancer cell lines. The compounds were found to have significant antioxidant and cytotoxic activity. Since there is a considerable increase in characterizing novel chemical compounds from plant parts, the present study might be helpful for chemotaxonomic determinations, for understanding of medicinal properties as well as for the quality assessment of herbal supplements containing B. variegata bark, thus establishing its use in traditional medicine.Entities:
Keywords: anti-cancer compounds; antioxidative system; oxidative stress; phytochemicals; polyphenols
Year: 2019 PMID: 31627372 PMCID: PMC6826637 DOI: 10.3390/antiox8100492
Source DB: PubMed Journal: Antioxidants (Basel) ISSN: 2076-3921
Figure 1The schematic representation of column chromatography of methanol extract (MEB) of bark of Bauhinia variegata L. BV1 is the pure fraction obtained, subjected to further characterization. MEB I and MEB II are sub-fractions, subjected to further chromatography.
Figure 2Column chromatography of fractions MEB1 and MEB1a obtained from column chromatography of methanol extract (MEB) of bark of Bauhinia variegata L. BV2 and BV3 are the pure fractions obtained, subjected to further characterization.
Figure 3Column chromatography of fraction MEB II obtained from column chromatography of methanol extract (MEB) of bark of Bauhinia variegata L. BV4 is the pure fraction obtained, subjected to further characterization.
The 1H and 13C NMR spectral data (recorded in CD3OD) of BV1 fraction isolated from Bauhinia variegata L. bark.
| Carbon No. | 1H NMR (δppm) | 13C NMR (δppm) |
|---|---|---|
| 2 | - | 131.1 |
| 3 | - | 124.2 |
| 4 | - | 177.8 (C=O) |
| 5 | - | 163.0 |
| 6 | 6.19 (1H, br s) | 99.7 (CH) |
| 7 | - | 166.0 |
| 8 | 6.40 (1H, br s) | 94.9 (CH) |
| 9 | - | 158.7 |
| 10 | - | 105.0 |
| 1’ | - | 124.2 |
| 2’ | 8.10 (2H, d, | 131.1 (CH) |
| 3’ | 6.91 (2H, dd, | 116.7 (CH) |
| 4’ | - | 161.0 |
| 5’ | 6.91 (2H, dd, | 116.7 (CH) |
| 6’ | 8.10 (2H, d, | 131.1 (CH) |
H = hydrogen; C = C arbon; δppm = chemical shift; br = broad signal; s = singlet; d = doublet; dd = doublet of doublets; J = coupling constant; Hz = hertz; NMR = nuclear magnetic rasonance; CD3OD = Deuterated methanol.
The 1H and 13C NMR spectral data (recorded in CD3OD) of BV2 fraction isolated from Bauhinia variegata L. bark.
| Carbon No. | 1H NMR (δppm) | 13C NMR (δppm) |
|---|---|---|
| 1 | - | 37.6 |
| 2 | - | 32.0 |
| 3 | 3.52 | 72.2 (CH) |
| 4 | - | 42.7 |
| 5 | - | 141.1 |
| 6 | 5.36 (H, dd) | 122.1 (CH) |
| 7 | - | 32.0 |
| 8 | - | 32.3 |
| 9 | - | 50.5 |
| 10 | - | 36.5 |
| 11 | - | 21.4 |
| 12 | - | 37.6 |
| 13 | - | 42.7 |
| 14 | - | 57.1 |
| 15 | - | 24.7 |
| 16 | - | 29.5 |
| 17 | - | 56.4 |
| 18 | 0.71 | 12.3 (CH) |
| 19 | 0.93 | 19.4 |
| 20 | - | 40.1 |
| 21 | 1.02 (H, d) | 21.4 (CH) |
| 22 | 5.36 | 138.7 (CH) |
| 23 | - | 129.6 |
| 24 | - | 50.5 |
| 25 | - | 32.0 |
| 26 | 0.82 (2H, d) | 19.1 (CH3) |
| 27 | 0.80 (2H, d) | 21.4 (CH3) |
| 28 | - | 24.7 (CH3) |
| 29 | 0.82 (2H, d) | 12.2 (CH3) |
H = hydrogen; C = Carbon; δppm = chemical shift; br = broad signal; s = singlet; d = doublet; dd=doublet of doublets; J = coupling constant; Hz = hertz; NMR = nuclear magnetic rasonance; CD3OD = Deuterated methanol.
The 1H and 13C NMR spectral data (recorded in CD3OD) of BV3 fraction isolated from Bauhinia variegata L. bark.
| Carbon No. | 1H NMR (δppm) | 13C NMR (δppm) |
|---|---|---|
| 1 | - | 121.5 |
| 2 | 6.80 (H, d, | 114.8 (CH) |
| 3 | - | 145.1 |
| 4 | - | 150.6 |
| 5 | 7.42 (H, d, | 116.3 (CH) |
| 6 | 7.42 (H, d, | 122.5 (CH) |
| COO | - | 167.8 |
| OCH3 | 3.84 | 51.2 |
H = hydrogen; C = Carbon; δppm = chemical shift; br = broad signal; s = singlet; d = doublet; dd = doublet of doublets; J = coupling constant; Hz = hertz; NMR = nuclear magnetic rasonance; CD3OD = Deuterated methanol; COO = carboxyl carbon group; OCH3 = methoxy group.
The 1H and 13C NMR spectral data (recorded in CD3OD) of BV4 fraction isolated from Bauhinia variegata L. bark.
| Carbon No. | 1H NMR (δppm) | 13C NMR (δppm) |
|---|---|---|
| 1 | - | 122.9 |
| 2 | 7.43 (H, s) | 116.7 (CH) |
| 3 | - | 145.0 |
| 4 | - | 150.5 |
| 5 | 6.81 (H, d, | 114.7 (CH) |
| 6 | 7.43 (H, d, | 122.9 (CH) |
| COOH | - | 169.2 |
H = hydrogen; C = Carbon; δppm = chemical shift; br = broad signal; s = singlet; d = doublet; dd = doublet of doublets; J = coupling constant; Hz = hertz; NMR = nuclear magnetic rasonance; CD3OD = Deuterated methanol; COOH = carboxyl group.
Figure 4The ABTS radical scavenging activities of standard reference compound BHT and compounds isolated from Bauhinia variegata L. stem bark. BHT = butylated hydroxytoluene (standard reference compound); BV1 = kaempferol; BV3 = protocatechuic acid methyl ester; BV4 = protocatechuic acid.
IC50, one-way ANOVA F-ratio and HSD values of BHT and compounds isolated from Bauhinia variegata L. stem bark in ABTS radical scavenging assay.
| Parameter | BHT | BV1 | BV3 | BV4 |
|---|---|---|---|---|
|
| 58.48 ± 0.64 | 13.45 ± 0.19 | 8.77 ± 1.23 | 9.39 ± 0.45 |
|
| 363.11 * | 481.19 * | 91.77 * | 157.07 * |
|
| 6.19 | 5.63 | 14.11 | 10.71 |
df = degree of freedom; * Significant at p ≤ 0.05.; IC50 = 50% inhibition concentration; ANOVA = Analysis of variance; HSD = Honestly significant difference; BHT = butylated hydroxytoluene (standard reference compound); BV1 = kaempferol; BV3 = protocatechuic acid methyl ester; BV4 = protocatechuic acid. Values are mean ± standard deviation, n = 3.
Figure 5The DPPH radical scavenging activities of standard reference compound BHT and compounds isolated from Bauhinia variegata L. stem bark. BHT = butylated hydroxytoluene (standard reference compound); BV1 = kaempferol; BV3 = protocatechuic acid methyl ester; BV4 = protocatechuic acid.
IC50, one-way ANOVA F-ratio and HSD values of BHT and compounds isolated from Bauhinia variegata L. stem bark in DPPH radical scavenging assay.
| Parameter | BHT | BV1 | BV3 | BV4 |
|---|---|---|---|---|
|
| 76.16 ± 2.63 | 19.44 ± 0.58 | 4.46 ± 0.21 | 7.28 ± 1.64 |
|
| 69.73 * | 185.39 * | 75.28 * | 216.97 * |
|
| 1.14 | 5.58 | 4.58 | 5.80 |
df = degree of freedom; * Significant at p ≤ 0.05.; IC50 = 50% inhibition concentration, lower IC50 means higher antioxidant activity; ANOVA = Analysis of variance; HSD = Honestly significant difference; BHT = butylated hydroxytoluene (standard reference compound); BV1 = kaempferol; BV3 = protocatechuic acid methyl ester; BV4=protocatechuic acid. Values are mean ± standard deviation, n = 3.
Figure 6The percentage cytotoxic activity of compounds isolated from Bauhinia variegata L. bark against C6 cell line. BV1 = kaempferol; BV2 = stigmasterol; BV3 = protocatechuic acid methyl ester; BV4 = protocatechuic acid.
GI50, one-way ANOVA F-ratio and HSD values of cytotoxic activity of compounds isolated from Bauhinia variegata L. bark against C6, MCF-7 and HCT-15 cell lines.
| Cell Line | Compound | |||
|---|---|---|---|---|
| BV1 | BV2 | BV3 | BV4 | |
|
| ||||
| GI50 (µg/mL) | 119.38 ± 0.34 | 173.97 ± 0.81 | 173.67 ± 0.57 | 203.16 ± 0.27 |
| F ratio (df = 9,20) | 8310.21 * | 15,198.30 * | 21,654.78 * | 8804.11 * |
| HSD | 1.09 | 0.99 | 1.08 | 1.83 |
|
| ||||
| GI50 (µg/mL) | 151.51 ± 0.22 | 132.02 ± 0.55 | 54.18 ± 0.16 | 49.15 ± 0.23 |
| F ratio (df = 9,20) | 9249.42 * | 3776.94 * | 7560.71 * | 7280.99 * |
| HSD | 0.89 | 1.14 | 0.95 | 0.86 |
|
| ||||
| GI50 (µg/mL) | 419.83 ± 0.41 | 151.20 ± 0.74 | 92.17 ± 1.17 | 203.15 ± 0.45 |
| F ratio (df = 9,20) | 44,831.82 * | 130,522.70 * | 64,468.07 * | 64,642.00 * |
| HSD | 0.97 | 0.44 | 0.48 | 0.76 |
df = degree of freedom; * significant at p ≤ 0.05.; GI50 = 50% growth inhibition, lower GI50 means higher cytotoxic activity; ANOVA = Analysis of variance; HSD = Honestly significant difference; BV1 = kaempferol; BV2 = stigmasterol; BV3 = protocatechuic acid methyl ester; BV4 = protocatechuic acid. Values are mean ± standard deviation, n = 3.
Figure 7The percentage cytotoxic activity of compounds isolated from Bauhinia variegata L. bark against MCF-7 cell line. BV1 = kaempferol; BV2 = stigmasterol; BV3 = protocatechuic acid methyl ester; BV4 = protocatechuic acid.
Figure 8The percentage cytotoxic activity of compounds isolated from Bauhinia variegata L. bark against HCT-15 cell line. BV1 = kaempferol; BV2 = stigmasterol; BV3 = protocatechuic acid methyl ester; BV4 = protocatechuic acid.