| Literature DB >> 23304203 |
Arif Nisha Syad1, Karutha Pandian Shunmugiah, Pandima Devi Kasi.
Abstract
The effect of various solvent extracts of Gelidiella acerosa on acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE) activities was investigated. AChE and BuChE inhibitory activities were analyzed by spectrophotometric method. Phytochemical screening of the compounds present in the solvent extracts was done qualitatively. Characterization of the compounds present in the benzene extract of G. acerosa was done by GC-MS analysis. The results showed that, at 487.80 μg/mL, benzene extract showed significant (P < 0.05) inhibitory activity against both AChE and BuChE with the percentage of inhibition 54.18 ± 5.65 % (IC(50) = 434.61 ± 26.53 μg/mL) and 78.43 ± 0% (IC(50) = 163.01 ± 85.35 μg/mL), respectively. The mode of inhibition exhibited by benzene extract against the AChE and BuChE was found to be competitive and uncompetitive type of inhibition, respectively. Preliminary phytochemical analysis coupled with GC-MS illustrates that the benzene extract possesses high amount of terpenoids, which could be the reason for potential cholinesterase inhibitory activity.Entities:
Year: 2012 PMID: 23304203 PMCID: PMC3525188 DOI: 10.1155/2012/497242
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Percentage of yields (W/W) of different solvent extracts of Gelidiella acerosa.
| S. No | Solvent extracts | Yield of extract |
|---|---|---|
| 1 | Petroleum ether | 0.06% |
| 2 | Hexane | 0.06% |
| 3 | Benzene | 0.06% |
| 4 | Dichloromethane | 0.24% |
| 5 | Chloroform | 0.06% |
| 6 | Ethyl acetate | 0.03% |
| 7 | Acetone | 0.41% |
| 8 | Methanol | 4.99% |
| 9 | Water | 5.01% |
Acetylcholinesterase inhibitory activity of different solvent extracts of Gelidiella acerosa.
| S. no. | Solvent extract | % of inhibition ± S.Da |
IC50 ( | ||||
|---|---|---|---|---|---|---|---|
| 97.56 | 195.12 | 292.68 | 390.24 | 487.80 | |||
| 1 | Donepezil | 98.05 ± 0.23 | 98.05 ± 0.12 | 98.05 ± 0.30 | 98.39 ± 0.34 | 98.26 ± 0.23** | 5.0985 ± 0.0046 |
| 2 | Petroleum ether | 9.95 ± 0.65 | 21.93 ± 2.49 | 29.20 ± 1.42 | 36.31 ± 1.18 | 41.36 ± 1.68 | Nil |
| 3 | Hexane | NIb | NIb | NIb | NIb | NIb | Nil |
| 4 | Benzene | 14 ± 1.5 | 40 ± 3.05 | 40 ± 8.08 | 46 ± 3.46 | 54.18 ± 5.65** | 434.61 ± 26.53 |
| 5 | Dichloromethane | NIb | NIb | NIb | 1.99 ± 0.05 | 4.34 ± 0.29 | Nil |
| 6 | Chloroform | 26.28 ± 0.95 | 30.21 ± 0.36 | 33.44 ± 0.81 | 35.51 ± 0.67 | 37.60 ± 1.17 | Nil |
| 7 | Ethyl acetate | 39.28 ± 2.02 | 42.85 ± 0.68 | 46.42 ± 0.68 | 50 ± 0.68 | 53.57 ± 9.49* | 444.44 ± 11.63 |
| 8 | Acetone | 0.19 ± 0. | 15.88 ± 1.45 | 31.51 ± 2.07 | 36.84 ± 0.21 | 45.92 ± 0.67 | Nil |
| 9 | Methanol | 9.8 ± 0.84 | 9.95 ± 0.34 | 10.02 ± 0.55 | 12.37 ± 3.40 | 14.82 ± 1.70 | Nil |
| 10 | Water | NIb | NIb | NIb | NIb | 6 ± 0.001 | Nil |
aResults were expressed as mean ± SD (n = 3).
bNI: no inhibition.
*P < 0.05.
**P < 0.01.
Butyrylcholinesterase inhibitory activities of different solvent extracts of Gelidiella acerosa.
| S. no. | Solvent extract | % of inhibition ± S.Da |
IC50 ( | ||||
|---|---|---|---|---|---|---|---|
| 97.56 | 195.12 | 292.68 | 390.24 | 487.80 | |||
| 1 | Donepezil | 67.71 ± 1.09 | 85.61 ± 8.50 | 85.96 ± 1.84 | 96.65 ± 2.64 | 91.57 ± 2.41** | 7.266 ± 0.0065 |
| 2 | Petroleum ether | 22.17 ± 3.96 | 24.46 ± 2.28 | 25.22 ± 4.76 | 30.57 ± 1.32 | 32.85 ± 4.76 | Nil |
| 3 | Hexane | NIb | NIb | NIb | NIb | NIb | Nil |
| 4 | Benzene | 43.13 ± 7.67 | 54.9 ± 9.31 | 56.86 ± 10.19 | 70.58 ± 4.76 | 78.43 ± 0.00** | 163.01 ± 85.35 |
| 5 | Dichloromethane | NIb | NIb | NIb | 2.91 ± 0 | 4.49 ± 1.36 | Nil |
| 6 | Chloroform | 24.68 ± 8.5 | 39.28 ± 0 | 45.14 ± 2.71 | 47.56 ± 0.99 | 56.78 ± 2.13** | 375 ± 17.170 |
| 7 | Ethyl acetate | 15.332 ± 2.03 | 23.06 ± 4.75 | 30.39 ± 5.71 | 32.24 ± 1.58 | 37.74 ± 4.19 | Nil |
| 8 | Acetone | 12.87 ± 2.5 | 13.61 ± 2.38 | 19.51 ± 1.27 | 23.21 ± 3.38 | 29.11 ± 3.83 | Nil |
| 9 | Methanol | NIb | NIb | 1.79 ± 1.27 | 2.53 ± 0.004 | 16.44 ± 3.43 | Nil |
| 10 | Water | NIb | NIb | NIb | NIb | NIb | Nil |
aResults were expressed as mean ± SD (n = 3).
bNI: no inhibition.
*P < 0.05.
**P < 0.01.
Preliminary phytochemical screening of different solvent extracts of Gelidiella acerosa.
| S. no. | Compounds | Petroleum ether | Hexane | Benzene | Dichloromethane | Chloroform | Ethyl acetate | Acetone | Methanol | Water | DMSO |
|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 | Alkaloids | ++ | ++ | ++ | ++ | ++ | ++ | − | − | − | − |
| 2 | Terpenoids | + | − | ++ | + | − | + | ++ | − | − | − |
| 3 | Ketonic terpenoids | − | − | + | − | ++ | − | ++ | − | − | − |
| 4 | Cardiac glycosides | ++ | + | ++ | ++ | ++ | ++ | + | + | − | − |
| 5 | Tannins | + | + | + | + | + | + | ++ | ++ | ++ | ++ |
| 6 | Flavonoids | − | − | − | − | − | − | − | − | − | − |
| 7 | Steroids | − | − | − | − | − | − | − | − | − | − |
| 8 | Anthraquinones | − | − | − | − | − | − | − | − | − | − |
−: No response; +: low content; ++: high content.
Figure 1TLC chromatogram of benzene extract showing plates sprayed with (a) p-anisaldehyde sulphuric acid, (b) vanillin-sulphuric acid reagent, and (c) Dragendorff's reagent.
GC-MS profile of benzene extract of Gelidiella acerosa.
| S. no. | Retention time | Name of the compound | Molecular formula | Molecular weight |
|---|---|---|---|---|
| 1 | 4.70 | 5-Amino-2-methoxyphenol | C7H9NO2 | 139 |
| 2 | 8.46 | 2(4H)-Benzofuranone, 5,6,7,7a-tetrahydro-4,4,7a-trimethyl- | C11H16O2 | 180 |
| 3 | 8.82 | 2(1H)-Pyridinethione, 3-hydroxy- | C5H5NOS | 127 |
| 4 | 10.17 | Eicosane | C20H42 | 282 |
| 5 | 11.72 | 2-Pentadecanone,6,10,14-trimethyl- | C18H36O | 268 |
| 6 | 12.55 | Lanosta-7,9(11)-diene-3a,18,20-triol | C30H50O3 | 458.71 |
| 7 | 12.67 | 9-Octadecenoic acid, 12-(acetyloxy)-, methyl ester, [R-(Z)]- | C21H38O4 | 354 |
| 8 | 14.87 | Cyclopentanol, 2,4,4-trimethyl- | C8H16O | 128 |
| 9 | 15.00 | Phytol | C20H40O | 296 |
| 10 | 15.21 | Undecanoic acid, 2-methyl- | C12H24O2 | 200 |
| 11 | 16.01 | 2-Piperidinone, N-[4-bromo-n-butyl]- | C9H16BrNO | 233 |
| 12 | 19.29 | 2,4-Nonadienal | C9H14O | 138.21 |
| 13 | 20.90 | 1,2-Benzenedicarboxylic acid, diisooctyl ester | C27H46O | 386 |
| 14 | 21.22 | n-Decanoic acid | C10H20O2 | 172.26 |
| 15 | 23.16 | Heptanal | C7H14O | 114.19 |
| 16 | 23.77 | Acetophenone | C8H8O | 120.15 |
| 17 | 24.86 | Benzeneacetic acid, alpha hydroxy-alpha methyl | C9H10O3 | 166.17 |
| 18 | 26.61 | Hexanal | C6H12O | 100.16 |
| 19 | 26.71 | Octane | C8H18 | 114.23 |
| 20 | 27.19 | Dodecane, 1,2-dibromo | C12H24Br2 | 328.13 |
| 21 | 27.66 | Benzoic acid, 4-[(trimethylsilyl)oxy]-, trimethylsilyl ester | C13H22O3Si2 | 282.48298 |
| 22 | 29.32 | n-Hexadecanoic acid | C16H32O2 | 256.4241 |
| 23 | 29.46 | 3-Undecene, 3-methyl- | C12H24 | 168.323 |
| 24 | 30.02 | Nonanal | C9H18O | 142.24 |
Evaluation of kinetic parameters for AChE and BuChE inhibitory activity of benzene extract of G. acerosa.
| AChE | BuChE | |||
|---|---|---|---|---|
| Parameters | Control | Treated | Control | Treated |
|
| 0.8774 ± 0.41 | 1.729 ± 0.56 | 3.12 ± 0.87 | 1.086 ± 0.60 |
|
| 0.0047 ± 0.0002 | 0.005 ± 0.0002 | 0.0027 ± 0.0002 | 0.0024 ± 0.0001 |
|
| 202.18 ± 72.20 | 162.94 ± 71.52 | ||