| Literature DB >> 28725622 |
I Made Agus Gelgel Wirasuta1, I Gusti Ayu Made Srinadi2, Ida Bagus Gede Dwidasmara3, Ni Luh Putu Putri Ardiyanti1, I Gusti Ayu Arya Trisnadewi1, Ni Luh Putu Vidya Paramita1.
Abstract
The TLC profiles of intra- and inter-day precision for Piper betle L. (PBL) folium <span class="Chemical">methanol extract was studied for their peak marker recognition and identification. The Numerical chromatographic parameters (NCPs) of the peak markers, the hierarchical clustering analysis (HCA) and the principal component analysis (PCA) were applied to authenticate the PBL. folium extract from other Piper species folium extract and to ensure the antifungal activity quality of the PBL essential oil. The spotted extract was developed with the mobile phase of toluene: ethyl acetate; 93:7, (v/v). The eluted plate was viewed with the TLC-Visualizer, scanned under absorption and fluorescent mode detection, and on each sample the in-situ UV spectra were recorded between 190 to 400 nm. The NCPs profiles of intra- and inter-day precision results offered multi-dimensional chromatogram fingerprints for better marker peak pattern recognition and identification. Using the r-value fingerprints data series generated with this method allowed more precise discrimination the PBL. from other Piper species compared to the marker peak area fingerprint method. The cosine pair comparison was a simple method for authentication of two different fingerprints. The ward linkage clustering and the pair cross-correlation comparison were better chemometric methods to determine the consistency peak area ratio between fingerprints. The first component PCA-loading values of peak marker area fingerprints were correlated linearly to both the bio-marker concentration as well as the antifungal activity. This relationship could be used to control the quality and pharmacological potency. This simple method was developed for the authentication and quantification of herbal medicine.Entities:
Keywords: Antifungal; Authentication; Piper betle; Quantification; TLC multi-dimensional fingerprint
Year: 2016 PMID: 28725622 PMCID: PMC5506626 DOI: 10.1016/j.jtcme.2016.08.006
Source DB: PubMed Journal: J Tradit Complement Med ISSN: 2225-4110
Fig. 1Intra- and inter-day precision densitograms (A–C) and the densitograms of methanol PBL. extracts from different geographic location and other Piper species under difference scanned modes (D–F). The Pb: P. betle L. from 21 different harvesting areas, Pa: Piper abli, Pn: Piper nigrum, Pc: Piper cubeba, Pr: Piper retrofractum and Po: Piper ornatum.
Fig. 2Identification of eugenol on PBL. folium extract. A and B were spotted extract PBL. folium and C was the eugenol reference.
Fig. 3The multi-dimensional TLC fingerprint of PBL. folium.
The inter-day precision marker peak areas on different spotted volumes and their regression parameters.
| Assumed marker-scanned λ (nm) | Baseline correction peak areas | |||||
|---|---|---|---|---|---|---|
| Peak areas on different spotted volume [mean (%RSD)] | Regression Parameters | |||||
| 5 (μL) | 10 (μL) | 15 (μL) | Reg-equ | sdv | ||
| nP1-210 | 182.5 (58.5) | 351.1 (34.1) | 474. 2 (18.0) | Y = 44.2 + 29.2x | 0.777 | 30.4 |
| nP2-210 | 101.3 (27.3) | 120.2 (41.3) | 152.6 (21.1) | Y = 73.3 + 5.1x | 0.518 | 29.4 |
| nP2-283 | 1219.2 (11.7) | 1896.3 (9.2) | 2271.6 (5.7) | Y = 743 + 105x | 0.941 | 9.1 |
| nP2-366 | 1209.5 (5.2) | 1540.7 (6.5) | 1809.7 (6.5) | Y = 919 + 60x | 0.941 | 6.2 |
| nP3-283 | 289.1 (14.1) | 393.6 (17.8) | 434.5 (15.6) | Y = 227 + 14x | 0.715 | 16.4 |
| nP3-366 | 3500.1 (3.4) | 5713.5 (4.1) | 7660.2 (5.1) | Y = 1464 + 416x | 0.989 | 4.8 |
| nP4-210 | 655.9 (6.0) | 1063.5 (3.7) | 1402.4 (9.8) | Y = 291 + 74x | 0.967 | 8.14 |
| nP4-283 | 737.0 (9.9) | 1367.1 (6.4) | 1830.4 (6.2) | Y = 202 + 111x | 0.979 | 7.8 |
| nP4-366 | 4483.3 (3.6) | 7963.7 (3.6) | 9485.6 (7.1) | Y = 2140 + 521x | 0.961 | 9.2 |
| mP1210 | 5021.5 (1.3) | 7529.4 (2.1) | 10 319.3 (6.5) | Y = 2325 + 529x | 0.986 | 5.2 |
| mP1-283 | 4220.5 (4.1) | 6746.7 (3.5) | 8340.0 (5.2) | Y = 2316 + 411x | 0.978 | 5.8 |
| mP2-210 | 1528.6 (5.3) | 3342.6 (7.2) | 5064.5 (4.3) | Y = −195 + 349x | 0.992 | 5.7 |
| mP2-283 | 589.3 (7.8) | 808.5 (4.9) | 966.5 (2.5) | Y = 410 + 37x | 0.972 | 5 |
| mP3-210 | 4556.3 (5.6) | 6770.8 (2.0) | 7769. (1.2) | Y = 3406 + 323x | 0.973 | 5.4 |
| mP3-283 | 3034.3 (5.5) | 4395.7 (7.1) | 5614.0 (2.2) | Y = 1771 + 257x | 0.981 | 5.1 |
| nP5-283 | 1368.5 (2.9) | 2750.1 (4.7) | 4482.0 (2.7) | Y = −239 + 310x | 0.995 | 4.9 |
| nP6-210 | 5044.7 (6.8) | 7585.1 (3.3) | 9882.3 (7.0) | Y = 2727 + 472x | 0.977 | 6.2 |
| fP1-366 | 349.4 (12.4) | 1121.0 (7.5) | 1703.2 (3.2) | Y = −295 + 135x | 0.991 | 7.3 |
| fP2-366 | 4570.1 (3.4) | 6288.4 (2.5) | 7990.3 (5.0) | Y = 2794 + 351x | 0.989 | 3.8 |
Fig. 4The PCA score plot graph, relationship between PC1-score value of each marker and their peak area, and the %RSD distribution.
Relation between the marker peak area ratio variation on the PCA and HCA calculation results.
| Spotted volume | Simulated marker peak area ratio AUCmP3:AUCmP2:AUCmP1 (ratio) | |||
|---|---|---|---|---|
| Lv:1,2,3 | Lv(mP3):1,2,3 | Lv(mP2):1,2,3 | Lv(mP1):1,2,3 | |
| 5 μL | 3217:2417:4973 | 3217:2417:4973 | 3217:2417:4973 | 3217:2417:4973 |
| 10 μL | 4954:4142:6677 | 3217:4142:6677 | 4954:2417:6677 | 4954:4142:4973 |
| 15 μL | 6487:5364:9250 | 3217:5364: 9250 | 6487:2417:9250 | 6487:5364:4973 |
Fig. 5PCA, HCA, and pair comparison of the r-values TLC-fingerprints data of PBL and other Piper sp.
Fig. 6TLC bioautography of PBL essential oil to the Candida albicans ATCC 10231.
Fig. 7The relationship between the multivariate analysis results of inter-day precision bio-marker fingerprints, their NCPs (a–b), and the antifungal activity (c–d).