| Literature DB >> 31991680 |
Michael Kaiser1, Lisa Müller-Ehl1, Maike Passon1, Andreas Schieber1.
Abstract
Recent in vitro and in vivo studies on anthocyanins confirmed numerous health-promoting effects in humans. Daily anthocyanin intake can be estimated via food databases, but the amount absorbed by the organism still remains uncertain because anthocyanin bioavailability is yet to be elucidated in its entirety. For this purpose, suitable and validated methods of sample preparation and analysis are required. Therefore, a sample preparation method for anthocyanin metabolite analysis in plasma was successfully established and validated. The validation yielded acceptable results for the anthocyanins in terms of recovery (54-108%) and precision (coefficient of variation (CV) < 15%). The UHPLC-MS method used in the consecutive reaction monitoring (CRM) mode was sufficiently sensitive, resulting in limits of detection <2.3 ng/mL and limits of quantification < 8.1 ng/mL with associated repeatability of the MS system with CVs of <5.1%. In addition, a method for the sum parameter determination of anthocyanidins in urine comprising solely the evaporation of acidified samples was developed, validated, and successfully applied to real samples. The results showed that this method is applicable for the methylated anthocyanidins, but not for the hydroxylated anthocyanidins, due to the chosen CRM modes required for optimum selectivity.Entities:
Keywords: LC-MS analysis; anthocyanidins; anthocyanins; metabolites; plasma; proteolysis; urine
Year: 2020 PMID: 31991680 PMCID: PMC7037091 DOI: 10.3390/molecules25030518
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of (a) delphinidin, (b) cyanidin, (c) petunidin, (d) pelargonidin, (e) peonidin, and (f) malvidin.
Validation parameters of anthocyanidins in urine.
| Linearity | Analytical Limits | Precision | Recovery | Repeatability | Robustness | ||||
|---|---|---|---|---|---|---|---|---|---|
| Range | LOD | LOQ | System | Method | (%) | (%) | Process Stability | ||
|
| 0.125–67 | 58.1 | 205.3 | 9.4 | 38.0 | 46.7 | 51.5 | 6.7 | |
|
| 0.116–71 | 124.1 | 427.2 | 6.8 | 26.7 | 78.7 | 60.5 | 7.1 | |
|
| 0.006–11 | 12.7 | 46.0 | 2.9 | 15.3 | 96.5 | 42.5 | 7.4 | |
|
| 0.005–38 | 9.6 | 35.3 | 2.2 | 19.1 | 64.3 | 31.7 | 3.7 | |
|
| 0.005–15 | 5.1 | 18.8 | 3.7 | 18.7 | 65.8 | 30.9 | 5.6 | |
|
| 0.106–54 | 120.3 | 416.2 | 7.4 | -- | -- | -- | -- | |
LOD = limit of detection, LOQ = limit of quantification, LLOQ = lower limit of quantification, CV = coefficient of variation.
Consecutive reaction monitoring (CRM) transitions of anthocyanins and anthocyanidins.
| Analyte | MS | MS2 | MS3 | Collision Energies |
|---|---|---|---|---|
|
| 303 | 257 | 229 | 60/45 |
|
| 465 | 303 | - | 10 |
|
| 287 | 213 | - | 65 |
|
| 449 | 287 | - | 10 |
|
| 317 | 302 | 274 | 40/25 |
|
| 479 | 317 | - | 10 |
|
| 301 | 286 | 258 | 40/40 |
|
| 463 | 301 | - | 10 |
|
| 331 | 316 | 299 | 50/20 |
|
| 493 | 331 | - | 10 |
|
| 271 | 149215 | - | 67 |
|
| 433 | 271 | - | 10 |
Figure 2Chromatographic profiles (top: UV at 520 nm; bottom: extracted ion chromatograms) of (a) anthocyanidins in urine and (b) anthocyanins in plasma. (Dp (m/z) 303→257→229; Cy (m/z) 287→213; Pt (m/z) 317→302→274; Pg (m/z) 271→149 and 215; Pn (m/z) 301→286→258; Mn (m/z) 331→316→299; Dp-glc (m/z) 465→303; Cy-glc (m/z) 449→287; Pt-glc (m/z) 479→317; Pg-glc (m/z) 433→271; Pn-glc (m/z) 463→301; Mn-glc (m/z) 493→331).
Results of the analysis of real urine samples.
| Urine Sample | c(Dp) | c(Cy) | c(Pt) | Øc(Pt) | CV | c(Pn) | Øc(Pn) | CV | c(Mn) | Øc(Mn) | CV |
|---|---|---|---|---|---|---|---|---|---|---|---|
| #1 | n.d. | n.d. | 19.4 | 19.5 | 7.6 | 27.6 | 31.8 | 11.1 | 16.6 | 19.8 | 13.3 |
| #2 | n.d. | n.q. | 22.1 | 20.7 | 9.4 | 37.2 | 37.4 | 3.1 | 26.6 | 25.8 | 9.6 |
| #3 | n.d. | n.d. | 29.7 | 27.3 | 6.7 | 43.2 | 41.3 | 3.3 | 21.6 | 20.0 | 9.8 |
| #4 | n.d. | n.q. | 32.6 | 35.9 | 16.1 | 32.5 | 35.0 | 14.2 | 18.9 | 21.0 | 14.1 |
| #5 | n.d. | n.d. | 26.3 | 26.4 | 11.0 | 45.9 | 44.5 | 2.3 | 29.1 | 29.1 | 0.3 |
n.d. = not detectable, n.q = not quantifiable, c = concentration, Øc = mean concentration, CV = coefficient of variation.
Validation parameters of anthocyanins in plasma.
| Linearity | Analytical Limits | Precision | Recovery | Repeat-Abilityr | Robust-Ness | |||
|---|---|---|---|---|---|---|---|---|
| Range | LOD | LOQ | System | Method | (%) | (%) | Process Stability | |
|
| 0.002–24 | 2.3 | 8.1 | 1.9 | 15.6 | 53.8 | 20.7 | 5.0 |
|
| 0.003–23 | 2.0 | 7.3 | 2.6 | 7.7 | 84.6 | 10.8 | 5.7 |
|
| 0.004–25 | 2.1 | 7.7 | 2.8 | 14.5 | 68.6 | 23.2 | 3.1 |
|
| 0.002–24 | 1.2 | 4.1 | 3.3 | 4.9 | 98.8 | 13.2 | 5.4 |
|
| 0.002–25 | 2.2 | 7.9 | 5.1 | 12.2 | 107.6 | 20.7 | 5.5 |
|
| 0.003–25 | 2.2 | 8.0 | 3.0 | -- | -- | -- | -- |
LOD = limit of detection, LOQ = limit of quantification, LLOQ = lower limit of quantification, CV = coefficient of variation.