| Literature DB >> 30581531 |
Farieha Hussain1, Nazish Jahan1, Khalil-Ur- Rahman2, Bushra Sultana1, Saba Jamil1.
Abstract
The aim of this study was to identify and characterize the bioactive compounds of Coriandrum sativum responsible for the treatment of hypertension and to explore their mechanism of action as angiotensin-converting enzyme (ACE) inhibitors. Bioactive fractions like alkaloids, flavonoids, steroids, and tannins were extracted and evaluated for their ACE inhibition potential. Among them, only flavonoid-rich fraction showed high ACE inhibition potential with IC50 value of 28.91 ± 13.42 μg/mL. The flavonoids were characterized through LC-ESI-MS/MS. Seventeen flavonoids were identified in this fraction of Coriandrum sativum in negative ionization mode which includes pinocembrin, apigenin, pseudobaptigenin, galangin-5-methyl ether, quercetin, baicalein trimethyl ether, kaempferol dimethyl ether, pinobanksin-5-methylether-3-O-acetate, pinobanksin-3-O-pentenoate, pinobanksin-3-O-phenylpropionate, pinobanksin-3-O-pentanoate, apigenin-7-O-glucuronoide, quercetin-3-O-glucoside, apigenin-3-O-rutinoside, rutin, isorhamnetin-3-O-rutinoside, and quercetin dimethyl ether-3-O-rutinoside, while six flavonoids including daidzein, luteolin, pectolinarigenin, apigenin-C-glucoside, kaempferol-3-7-dimethyl ether-3-O-glucoside, and apigenin-7-O-(6-methyl-beta-D-glucoside) were identified in positive ionization mode. The results of this study revealed that Coriandrum sativum is a valuable functional food that possesses a number of therapeutic flavonoids with ACE inhibition potential that can manage blood pressure very efficiently.Entities:
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Year: 2018 PMID: 30581531 PMCID: PMC6276458 DOI: 10.1155/2018/4643736
Source DB: PubMed Journal: Oxid Med Cell Longev ISSN: 1942-0994 Impact factor: 6.543
ACE inhibition potential of bioactive compounds extracted from Coriandrum sativum.
| Treatments (100 | ACE inhibition (%) |
|---|---|
| Steroids fraction | −0.9 ± 1.47C |
| Alkaloids fraction | −32.79 ± 1.97D |
| Flavonoids fraction | 81.4 ± 0.48A |
| Tannins fraction | 2.3 ± 0.64B |
Means sharing different letter are statistically significant (P > 0.05).
Figure 1ACE inhibition (%) of flavonoids fraction of Coriandrum sativum and captopril at different concentrations.
IC50 values of flavonoid fraction of Coriandrum sativum and captopril.
| Sr. no. | Extracts | IC50 ( |
|---|---|---|
| 1 | Flavonoid fraction | 28.91 ± 13.42 |
| 2 | Captopril | 4.68 ± 15.42 |
Figure 2LC-MS/MS spectrum (m/z 120–400) of flavonoid fraction of Coriandrum sativum generated through negative ionization mode.
Figure 3LC-MS/MS spectrum (m/z 400–900) of flavonoid fraction of Coriandrum sativum generated through negative ionization mode.
Name and structure of flavonoids identified from the flavonoid fraction of Coriandrum sativum through LC-MS in negative ionization mode.
| Sr. no. | Name of compounds | MW | Rt(Min) |
| HPLC/ESI-MS | HPLC/ESI-MS/MS |
|---|---|---|---|---|---|---|
| 1 | Pinocembrin | 256.25 | 6.20 | 288 | 255.25 | 237.17, 213.17, 211.17 |
| 2 | Apigenin | 270.24 | 7.39 | 325 | 269.33 | 153.08 |
| 3 | Pseudobaptigenin | 282.24 | 7.56 |
| 281.25 | 263.25, 237.17 |
| 4 | Glangin-5-methyl ether | 284.27 | 7.60 | 259,350 | 283.33 | 268.08, 239.25, 211.17 |
| 5 | Quercetin | 302.24 | 7.69 | 256 | 301.33 | 273.25, 257.25, 151.17 |
| 6 | Baicalein trimethyl ether | 312.32 | 7.75 |
| 311.17 | 257.17, 249.25, 153 |
| 7 | Kaempferol dimethyl ether | 314.29 | 7.79 | 339 | 313.75 | 298.08 |
| 8 | Pinobanksin-5-methyl ether-3-O-acetate | 328 | 7.84 | 292 | 327.33 | 285.33, 267.08, 239.05 |
| 9 | Pinobanksin-3-O-pentenoate | 354.11 | 7.98 | 291 | 353.25 | 271.33, 253.08 |
| 10 | Pinobanksin-3-O-pentanoate | 356.11 | 8.02 | 292 | 355.42 | 271.33, 253.08 |
| 11 | Pinobanksin-3-O-phenyl propionate | 404.25 | 8.36 | 292 | 403.25 | 325.17, 253.17 |
| 12 | Apigenin-7-O-glucuronide | 446 | 8.42 | 325 | 445.17 | 269.08, 175.17 |
| 13 | Quercetin-3-O-glucoside | 464 | 8.49 | 256,354 | 463.17 | 301.17, 300.17 |
| 14 | Apigenin-3-O-rutinoside | 578 | 8.96 | 325 | 577.33 | 559.33, 269.33 |
| 15 | Rutin | 612 | 9.29 | 256,353 | 611.40 | 609.25, 301.17 |
| 16 | Isorhamnetin-3-O-rutinoside | 624 | 9.46 | 253,346 | 623.50 | 315.00, 300.33 |
| 17 | Quercetin dimethyl ether-3-O-rutinoside | 638 | 9.60 | 253,349 | 637.25 | 301.17 |
Figure 4LC-MS/MS spectrum (m/z 100–500) of flavonoid fraction of Coriandrum sativum generated through positive ionization mode.
Name and structure of flavonoids identified from the flavonoid fraction of Coriandrum sativum through LC-MS in positive ionization mode.
| Sr. no. | Name of compounds | MW | Rt(Min) |
| HPLC/ESI-MS | HPLC/ESI-MS/MS |
|---|---|---|---|---|---|---|
| 1 | Daidzein | 254 | 0.75 |
| 255.17 | 237.17, 227.17 |
| 2 | Luteolin | 286 | 0.91 | 253,350 | 287.17 | 153.08 |
| 3 | Pectolinarigenin | 314 | 1.23 |
| 315.08 | 297.17, 243.08 |
| 4 | Apigenin-C-glucoside | 432 | 1.72 | 268, 325 | 433.25 | 415.25, 271.08 |
| 5 | Kaempferol-3,7-dimethyl ether-3-O-glucoside | 476 | 1.98 | 265,346 | 477.17 | 315.17 |
| 6 | Apigenin 7-O-(6-malonyl-beta-d-glucoside) | 518 | 2.39 | 325 | 519.33 | 271.08 |
Scheme 1