| Literature DB >> 35928917 |
Zareen Gul1,2, Ali Akbar1, Imran Ali3, Javed Muhammad4, Zia Ur Rehman3, Amna Bano5, Abdul Samad6, Amjad Khan7, Saadullah Khan Leghari2, Su Hlaing Chein8, Ali A Rabaan9.
Abstract
Berberis baluchistanica Ahrendt is a medicinal plant potentially known for the treatment of different diseases. The bioactive, antioxidant, nutritional components, and antimicrobial properties of crude ethanolic root extract of Berberis baluchistanica were evaluated in this study. The extract was analyzed for total phenolic, flavonoid, DPPH (2, 2-diphenyl-1-picryl-hydrazyl) scavenging ability, FRAP (ferric reducing antioxidant power), nutritional, and antimicrobial potentials. The alkaloids, tannins, cardiac glycosides, anthraquinones, coumarin, saponins, phenolics, flavonoids, steroids, and terpenoids were confirmed. The extract possessed DPPH radical inhibition with the IC50 of 1.125 mg/mL and FRAP % reduction activity with IC50 (0.912 mg/mL). Total phenolic 19.897 ± 4.8141 mg GAE/g and flavonoid 12.9876 ± 0.8388 mg QE/g contents were confirmed in the root. The extracts exhibit good antibacterial activity against a broad spectrum of food borne pathogens Pseudomonas aeruginosa, Salmonella typhi, Klebsiella pneumoniae, Escherichia coli, and Staphylococcus aureus. The highest inhibitory activity was against Escherichia coli23.30 ± 1.16 mm and lowest against Klebsiella pneumoniae7 ± 0.01 mm. Furthermore, the presence of various phytochemical constituents (plant secondary metabolites) was also confirmed with gas chromatography and mass spectroscopy analysis. Results disclosed the occurrence of more than 70 compounds possessing various medicinal properties supporting the traditional uses of root of Berberis baluchistanica in various medical complications indigenously.Entities:
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Year: 2022 PMID: 35928917 PMCID: PMC9345709 DOI: 10.1155/2022/1746116
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.246
Phytochemical constituents of the Berberis baluchistanica root extracts.
| S. no | Phytochemical test | Results |
|---|---|---|
| 1. | Alkaloids | +ve |
| 2. | Cardiac glycosides | +ve |
| 3. | Tannins | +ve |
| 4. | Steroids | +ve |
| 5. | Terpenoids | +ve |
| 6. | Flavonoids | +ve |
| 7. | Saponins | +ve |
| 8. | Coumarin | +ve |
| 9. | Quinones | -ve |
| 10. | Anthraquinones | +ve |
| 11. | Phlobatannins | -ve |
Note: +ve: present and –ve: absent.
Total phenolic contents, total flavonoid contents, total protein, and carbohydrates.
| Samples | Total phenolic | Total flavonoid | Total proteins | Total carbohydrates |
|---|---|---|---|---|
| Root | 19.897 ± 4.8141 | 12.9876 ± 0.8388 | 4.675 ± 0.1696 | 3.696 ± 0.2958 |
Results are expressed as Mean ± S.D for three readings.
Estimated IC50 values of ethanolic root extract of Berberis baluchistanica.
| Samples | DPPH assay (IC50 mg/mL) | FRAP assay (IC50 mg/mL) |
|---|---|---|
| Root | 1.125 | 0.912 |
| Ascorbic acid (standard) | 0.325 |
|
| FeSO4 (standard) |
| 0.472 |
Ascorbic acid and FeSO4 = standard.
DPPH percentage inhibitions and FRAP percent reduction of Berberis baluchistanica root extract at different concentration.
| Concentrations in (mg/mL) | DPPH % inhibition | FRAP % reduction |
|---|---|---|
| 1 | 44.91 ± 0.67 | 68.92 ± 0.81 |
| 0.5 | 36.43 ± 1.07 | 56.72 ± 0.24 |
| 0.25 | 17.86 ± 0.94 | 41.13 ± 1.01 |
| 0.125 | 12.47 ± 1.22 | 29.12 ± 0.56 |
| 0.0625 | 0.10 ± 0.073 | 12.01 ± 0.63 |
Figure 1(a) Free radical scavenging activity (DPPH). (b) Ferrous reducing capacity (FRAP) of root ethanolic extract of Berberis baluchistanica, (■) represent standard, while (●) represent root sample. Ascorbic acid and ferrous sulfate (FeSO4) were used as a standard in DPPH and FRAP.
Figure 2Antibacterial activity of Berberis baluchistanica root extract against various bacterial strains E. coli (Escherichia coli), K. pneumoniae (Klebsiella pneumoniae), P. aeruginosa (Pseudomonas aeruginosa), S. aureus (Staphylococcus aureus), and S. typhi (Salmonella typhi).
The major bioactive compounds analyzed in the ethanolic root extract of Berberis baluchistanica by GCMS analysis.
| S.# | Retention time (min) | Area (%) | Name of the compound | Mol. formula | Mol. Weight |
|---|---|---|---|---|---|
| 1. | 4.728 | 0.15 | 4-Hydroxy-3-(4-hydroxy-3-nitrocinnamoyl)- | C15H11NO7 | 317 |
| 2. | 4.855 | 0.08 | 1,3-dioxane-5,5-dimethanol, 2-methyl- | C7H14O4 | 162 |
| 3. | 5.559 | 0.47 | 4-[5-(4-Fluoro-phenyl)-tetrazol-2-yl]-butyramide | C11H12FN5O | 249 |
| 4. | 6.255 | 0.25 | Bicyclo -3-en-2-one, 3,8-dihydroxy-1-methoxy-7- | C21H24O7 | 388 |
| 5. | 6.523 | 0.17 | Allyloxydi(tert-butyl)silane | C11H23OSi | 199 |
| 6. | 7.531 | 0.08 | Imidazo[1,2-a]pyridin-2(3H)-one | C7H6N2O | 134 |
| 7. | 8.045 | 0.14 | 8-(Dimethylamino)-1-hydroxynaphthalene-2-carbonitrile | C13H12N2O | 212 |
| 8. | 9.737 | 0.25 | Bicyclo[2.2.1]hept-5-ene-2-carboxylic acid, 7,7-dimethoxy- | C10H14O4 | 198 |
| 9. | 10.834 | 0.09 | 4-Allyl-3-(dimethylhydrazono)-2-methylhexane-2, 5-diol | C12H24N2O2 | 228 |
| 10. | 11.628 | 0.11 | Carbonic acid, 2-chloroethyl 2-pentyl ester | C8H15ClO3 | 194 |
| 11. | 12.961 | 0.02 | Carbonic acidbut-3-yn-1-yl octyl ester | C13H22O3 | 226 |
| 12. | 13.083 | 0.07 | Acetonitrile, 2,2′-iminobis- | C4H5N3 | 95 |
| 13. | 13.143 | 0.14 | Acetic acid, cyano- | C3H3NO2 | 85 |
| 14. | 14.409 | 0.1 | 2-Hexynoic acid | C6H8O2 | 112 |
| 15. | 14.524 | 0.11 | Pyrimidin-4(3H)-one, 2-amino-6-hydroxy-5-nitro- | C4H4N4O4 | 172 |
| 16. | 16.05 | 0.1 | 3-chlorophenyl pent-4-en-2-yl ester | C15H17ClO4 | 296 |
| 17. | 16.685 | 0.2 | Isoquinoline, decahydro- | C9H17N | 139 |
| 18. | 17.821 | 0.2 | 1-Nitrobiuret | C2H4N4O4 | 148 |
| 19. | 18.09 | 0.1 | 6-Chloromethyl-N,N-dimethyl-[1,3,5]triazine-2,4-diamine | C6H10ClN5 | 187 |
| 20 | 19.025 | 0.02 | Methyl 3-hydroxyoctadecanoate, TMS derivative | C22H46O3Si | 386 |
| 21. | 20.409 | 0.1 | Cephaloridine | C19H17N3O4S2 | 415 |
| 22. | 20.554 | 0.1 | 3,6,9,12-Tetraazatetradecane-1,14-diamine | C10H28N6 | 232 |
| 23. | 21.79 | 0.08 | N(2),N(6)-Bis(dimethylaminomethylene)lysine | C13H26N4O2 | 270 |
| 24. | 21.445 | 0.08 | Cholestan-3-ol, TMS derivative | C30H56OSi | 460 |
| 25. | 22.688 | 0.15 | 3-Methyl-4-nitro-5-(1-pyrazolyl)pyrazole | C7H7N5O2 | 193 |
| 26. | 22.963 | 0.06 | 2-Naphthalenecarboxylic acid, 4,4′-methylenebis[3-methoxy- | C25H20O6 | 416 |
| 27. | 24.365 | 0.3 | p-Undecyloxybenzoic acid methyl ester | C19H30O3 | 306 |
| 28. | 25.712 | 0.17 | 4-Penten-2-ynylamine, N,N,4-trimethyl- | C8H13N | 123 |
| 29. | 26.77 | 0.12 | Acetamide, N-(aminocarbonyl)-2-chloro- | C3H5ClN2O2 | 136 |
| 30. | 27.49 | 0.1 | Piperazine, 2-methyl- | C5H12N2 | 100 |
| 31. | 28.31 | 0.16 | Cyclopentane, 1-methyl-3-(2-methyl-2-propenyl)- | C10H18 | 138 |
| 32. | 28.404 | 0.16 | Ethanone, 1-(4-pyridinyl)-, oxime | C7H8N2O | 136 |
| 33. | 29.301 | 0.09 | Thiourea, dimethylaminomethyl | C4H11N3S | 133 |
| 34. | 29.865 | 0.12 | Histamine-2-carboxylic acid | C6H9N3O2 | 155 |
| 35. | 30.364 | 0.03 | 9,12-Octadecadienoic acid (Z,Z)- | C21H40O2Si | 352 |
| 36. | 32.825 | 0.07 | Pentanedioic acid, 2,4-dimethyl-, dimethyl ester | C9H16O4 | 188 |
| 37. | 33.235 | 0.06 | Bis(sec-butoxo)(methyl)oxovanadium | C9H21O3V | 228 |
| 38. | 34.605 | 0.19 | Methyl 4-(2,4-dinitrophenylhydrazono) valerate | C12H14N4O6 | 310 |
| 39. | 35.223 | 0.06 | Dihydroartemisinin, 6-deshydro-5-deshydroxy-3-deoxy | C15H22O3 | 250 |
| 40. | 35.725 | 0.07 | Lavandulyl butyrate | C14H24O2 | 224 |
| 41. | 36.241 | 0.12 | Butanoic acid, 2,3-dichloro- | C4H6Cl2O2 | 156 |
| 42. | 36.837 | 0.1 | Silane, (dotriacontyloxy)trimethyl- | C35H74OSi | 538 |
| 43. | 36.935 | 0.11 | 6-Methyl-1-(2-thenylidene)furo[3,4c]pyridine | C8H10ClNO2 | 187 |
| 44. | 37.53 | 0.2 | N-Heptyl-2-(2-hydroxyethoxy)-N-methylpropionamide | C13H27NO3 | 245 |
| 45. | 37.265 | 0.2 | Urea, N,N′-diethyl- | C5H12N2O | 116 |
| 46. | 37.392 | 0.17 | Erythritol | C4H10O4 | 122 |
| 47. | 37.892 | 0.19 | Acetamide, 2-chloro-N-1H-purin-6-yl- | C7H6ClN5O | 211 |
| 48. | 38.91 | 0.27 | Benzamide, 4-methoxy-N-[4-(1-methylcyclopropyl)phenyl]- | C18H19NO2 | 281 |
| 49. | 38.121 | 0.14 | Glycylglycine ethyl ester | C6H12N2O3 | 160 |
| 50. | 38.215 | 0.15 | 4-Methyl-2,4-bis(p-hydroxyphenyl)pentene | C24H36O2Si2 | 412 |
| 51. | 38.395 | 0.13 | (3-Methylthiopropylideneamino)acetonitrile | C6H10N2S | 142 |
| 52. | 39.985 | 0.2 | Androst-5-en-17-one, 16-(1,1-dimethylethyl)-3-hydroxy-, | C23H36O2 | 344 |
| 53. | 40.2 | 0.14 | Aminohippuric acid,3TMS derivative | C18H34N2O3Si3 | 410 |
| 54. | 40.58 | 0.24 | 7-Methyl-6,8 bis(methylthio) pyrrolo [1, 2] pyrazine | C10H12N2S2 | 224 |
| 55. | 40.82 | 0.18 | Cyclotetrasiloxane, octamethyl- | C8H24O4Si4 | 296 |
| 56. | 40.151 | 0.23 | Pentanedioic acid, 3,3-dimethyl-, dimethyl ester | C9H16O4 | 188 |
| 57. | 41.006 | 0.34 | N,N-Dimethylsuccinamic acid | C6H11NO3 | 145 |
| 58. | 41.86 | 0.25 | Silicic acid, diethyl bis(trimethylsilyl)ester | C10H28O4Si3 | 296 |
| 59. | 41.106 | 0.18 | p-Phenylenediamine, N,N-dimethyl-N′- | C11H11F5N2O | 282 |
| 60. | 41.148 | 0.27 | Benzestrol, 2TMS derivative | C26H42O2Si2 | 442 |
| 61. | 42.295 | 0.27 | 6-Chlorohexanoic acid, 4-cyanophenyl ester | C13H14ClNO2 | 251 |
| 62. | 42.889 | 0.45 | Pentasiloxane, dodecamethyl- | C12H36O4Si5 | 384 |
| 63. | 43.25 | 0.24 | Cyclotrisiloxane, hexamethyl- | C6H18O3Si3 | 222 |
| 64. | 43.915 | 0.44 | 4-Methyl-2,4-bis(p-hydroxyphenyl)pent-1-ene | C24H36O2Si2 | 412 |
| 65. | 44.194 | 0.33 | Trisiloxane, 1,1,3,3,5,5-hexamethyl- | C6H20O2Si3 | 208 |
| 66. | 44.423 | 0.27 | Cyclooctyl N,N-di isopropyl phosphoramidocyanidate | C15H29N2O2P | 300 |
| 67. | 45.865 | 0.28 | N-Trifluoroacetyl-3-methoxytyramine, | C17H28F3NO3Si2 | 407 |
| 68. | 46.145 | 0.36 | Cyclotrisiloxane, hexamethyl- | C6H18O3Si3 | 222 |
| 69. | 46.456 | 0.48 | 4-Methyl-2,4-bis (p-hydroxyphenyl) pentene | C24H36O2Si2 | 412 |
| 70. | 50.655 | 0.13 | 6-Methoxypurine, TBDMS derivative | C12H20N4OSi | 264 |
Figure 3GC-MS chromatograph of ethanolic root extract of Berberis baluchistanica.