| Literature DB >> 23429347 |
Ali Khoddami1, Meredith A Wilkes, Thomas H Roberts.
Abstract
Phenolic compounds are well-known phytochemicals found in all plants. They consist of simple phenols, benzoic and cinnamic acid, coumarins, tannins, lignins, lignans and flavonoids. Substantial developments in research focused on the extraction, identification and quantification of phenolic compounds as medicinal and/or dietary molecules have occurred over the last 25 years. Organic solvent extraction is the main method used to extract phenolics. Chemical procedures are used to detect the presence of total phenolics, while spectrophotometric and chromatographic techniques are utilized to identify and quantify individual phenolic compounds. This review addresses the application of different methodologies utilized in the analysis of phenolic compounds in plant-based products, including recent technical developments in the quantification of phenolics.Entities:
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Year: 2013 PMID: 23429347 PMCID: PMC6270361 DOI: 10.3390/molecules18022328
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Basic structures of phenolic acids and flavonoids.
Extraction of biologically active compounds using UAE.
| Sample | Solvent | Extraction time (min) | Phenolic class | Yield (mg GAE b/g) | Reference |
|---|---|---|---|---|---|
| Ethanol 80% | 55 | Isoflavones | 128 | [ | |
| Methanol | 60 | TPC a and flavonoid | 55.90 | [ | |
| Ethanol 70% | 40 | Tannin | 491.2 | [ | |
| Sunflower meal | Acetone 80% | 30 | TPC a | 30.93 | [ |
| Orange peel | Ethanol 80% | 30 | TPC a | 2.758 | [ |
| Satsuma mandarin peel | Methanol 80% | 60 | Hesperidine | 1.446 | [ |
| Aerial parts of | Ethanol 50% | 60 | TPC a | 27.80 | [ |
| Soy beans | Ethanol 40–60% | 20 | Isoflavones | 1.353 | [ |
a Total phenolic content; b Gallic acid equivalent.
Important properties of some solvents commonly used in MAE.
| Solvent | Formula | Boiling point (°C) | Dielectric constant a | Dissipation factor |
|---|---|---|---|---|
| Acetonitrile | C2H3N | 81.60 | 37.50 | 620 |
| Water | H2O | 100 | 78.30 | 1570 |
| Ethanol | C4H8O2 | 78.5 | 24.30 | 2500 |
| Acetone | C3H6O | 56.2 | 20.70 | 5555 |
| Methanol | CH4O | 64.6 | 32.60 | 6400 |
| 2-Propanol | C4H8O | 98 | 19.90 | 6700 |
a Determined at 20 °C [94,95].
Optimized conditions for phenolic extraction from plant-based foods using MAE.
| Sample | Analyte | Solvent | MAE time (min) | MAE temperature (°C) | MAE power (W) | Solvent/sample (mL/g) | Reference |
|---|---|---|---|---|---|---|---|
| Green Tea | Flavanol | Water | 30 | 80 | 600 | 20 | [ |
| Tea | Polyphenols | Ethanol 60% | 10 | 80 | 600 | 12 | [ |
| TPC a | Ethanol 53% | 2.05 | -- | 302 | 30 | [ | |
| TPC a | Ethanol 50% | 15 | 150 | -- | 49 | [ | |
| TPC a | Ethanol 50% | 15 | 150 | -- | 50 | [ | |
| TPC a, Flavonoids | Methanol 100% | 60 | 110 | 60 | 5 | [ | |
| Coumarin | Ethanol 50% | 5 | 50 | 100 | 20 | [ | |
| Vanilla beans | Vanillin | Ethanol 70% | 20 | -- | 150 | 25 | [ |
| Ferulic acid | Ethanol 90% | 9 | -- | 850 | 6 | [ | |
| Flavonoids | Ethanol 80% | 60 | 80 | 1200 | 50 | [ | |
| Sorghum | Phenolic acids | 2 M NaOH | 0.45 | 190 | 1400 | 25 | [ |
| Spices | Phenolic acids | Ethanol 50% | 18 | 50 | 200 | 20 | [ |
a Total phenolic content.
Figure 2Schematic diagram of an apparatus for ultrasonic-microwave assisted extraction (UMAE) [115].
Conditions for phenolic extraction from plant-based foods using UMAE.
| Sample | Analyte | Solvent | Ultrasound power (W) | Microwave power (W) | UMAE time (s) | UMAE temp (°C) | Solvent/sample (mL/g) | Ref. |
|---|---|---|---|---|---|---|---|---|
| Caffeic acid | Ionic solution | 50 | 400 | 30 | -- | 20 | [ | |
| Flavonoids | Methanol 70% | 50 | 300 | 450 | 80 | 20 | [ | |
| Tomato | Lycopene | Ethyl acetate | 50 | 98 | 367 | -- | 10.6 | [ |
| Burdock leaves | Phenoliccompounds | Ethanol 70% | 50 | 500 | 30 | -- | 20 | [ |
| Quercetin | Ethanol 50% | 50 | 800 | 900 | 45 | 8 | [ |
Critical properties of commonly used SCFs.
| Solvent | Pc (bar) | Tc (°C) | Density (g/mL) |
|---|---|---|---|
| Methane | 46.41 | −82.4 | 0.16 |
| Carbon dioxide | 73.87 | 31.2 | 0.47 |
| Ethane | 48.84 | 32.5 | 0.20 |
| Propane | 42.46 | 97.3 | 0.22 |
| Ammonia | 113.99 | 132.6 | 0.24 |
| Ethanol | 63.83 | 243.6 | 0.28 |
| Benzene | 48.94 | 289.1 | 0.30 |
| Water | 221.19 | 374.3 | 0.32 |
SFE conditions for extraction of phenolic compounds from plant-based samples.
| Sample | Target phenolic class | Temperature (°C) | Time (min) | Pressure (bar) | Modifier | Ref. |
|---|---|---|---|---|---|---|
| Elder berry and grape marc | Phenolic compounds | 40 | -- | 150, 350 | Ethanol | [ |
| Phenolic compounds | 50 | -- | 100, 200 | Methanol and Acetone | [ | |
| Sweet basil | Phenolic compounds | 35, 50 | 15, 30, 45, 60 | 100, 150, 200, 250, 300 | H2O | [ |
| Phenolic compounds | 40, 50, 60 | -- | 200, 300, 400 | -- | [ | |
| Guava seed | Phenolic content | 40, 50, 60 | 120 | 100, 200, 300 | Ethylacetate and Ethanol | [ |
| Wheat germ | Phenolic content | 40, 60 | 10, 60 | 148, 602 | -- | [ |
| Pistachio hulls | Phenolic content | 35, 45, 55 | 15, 25, 40 | 100, 200, 350 | Methanol | [ |
| Bupleurum roots | Phenolic content | 40 | -- | 50, 100, 150, 200 | -- | [ |
| Bitter melon | Flavonoids | 30, 40, 50 | 40, 50, 60 | 250, 300, 350 | Ethanol | [ |
| Spearmint leaves | Flavonoids | 40, 50, 60 | 30, 60, 90 | 100, 200, 300 | Ethanol | [ |
| Pecah Kaca | Flavonoids | 40, 50, 60 | 40,60,80 | 100, 150, 200 | Ethanol | [ |
| Flavonoids | 40, 50, 60 | 90 | 150, 200, 250 | Ethanol | [ |
Conditions for SCWE of phenolic compounds from plant-based materials.
| Sample | Analyte | Temperature (°C) | Time (min) | Pressure (bar) | Solvent/sample (mL/g) | Ref. |
|---|---|---|---|---|---|---|
| Pomegranate seeds | Phenolic compounds | 80–280 | 15–120 | 60 | 10–50 | [ |
| Cinnamon bark | Phenolic compounds | 150,200 | 60 | 60 | -- | [ |
| Potato peel | Phenolic compounds | 100–240 | 30–120 | 60 | -- | [ |
| Rice bran | Phenolic compounds | 125–200 | 5 | 20 | 2.5 | [ |
| Phenolic compounds | 120–220 | 10–150 | 40 | -- | [ | |
| Bitter melon | Phenolic compounds | 130–200 | 10–120 | -- | -- | [ |
| Oregano leaves | Phenolic compounds | 25–200 | 15, 30 | 103.4 | -- | [ |
| Green tea | Catechin and epicatechin | 140–260 | -- | 38–72 | 20 | [ |
Summary of GC conditions to detect molecules belonging to phenolic classes.
| Sample | Derivatization | Detected phenolics | Detection | Chromatographic assay details | Ref. |
|---|---|---|---|---|---|
| Guarana | Dried phenolic extract derivatized with a mixture of hexamethyldisiloxane and dimethylchlorosilane in pyridine | 3-Hydroxybenzoic acid, benzoic acid, gallic acid, syringic acid, isovanillic acid, protocatechuic acid, catechin, caffeine, epicatechin, quercetin | GC–MS | Zebron ZB-5 ms fused silica capillary column (30 m × 0.25 mm I.D. × 0.25 μm film thickness); Oven temperature: 150 °C held for 5 min, to 295 °C at 3 °C/min, held for 18 min; Injector temperature: 300 °C; Carrier gas: helium flow at 1 mL/min; Ion source temperature: 200 °C; Transfer line temperature: 290 °C | [ |
| Mirabelle plums | Dried phenolic extractderivatized with | Benzoic acid, | GC–MS | HP 5MS capillary column, (30 m × 0.25 mm I.D × 0.25 μm film thickness). Oven temperature: 100–270 °C at 4 °C /min, held for 20 min; Injector temperature: 250 °C; Helium flow at 0.9 mL/s; Ion source temperature: 230 °C; Transfer line temperature: 280 °C | [ |
| Guava bagasse, Cabernet Sauvignon, Pinot Noir, and Isabella grape marcs wastes | --------------------- | Succinic acid, azelaic acid, syringic acid, | GC–MS | RTX 5MS capillary column (30 m × 0.25 mm ID × 0.25 μm film thickness); Oven | [ |
| Cranberry | Dried phenolic extract derivatized with a mixture of | Benzoic acid, | GC-MS | Temperature: 80 °C for 1 min, to 250°C, at 20°C/min, held 1 min, to 300°C at 6°C/min, held 5 min, to 310°C at 15 °C/min held 10 min, to 320 °C at 20°C/min, held 10 min; Injector temperature: 280 °C; Transfer line temperature: 280 °C. DB-5 fused-silica capillary column (30 m × 0.32 mm ID × 0.25 μm film thickness) | [ |
| Saffron corms | Dried phenolic extract derivatized with a mixture of | Acetic acid, | GC-MS | Oven temperature: 80 °C for 1 min, to 220 °C, at 10 °C/min, to 310 °C, at 20 °C/min, held 6 min; Injector temperature: 280 °C; | [ |
| Mangosteen fruit | Dried phenolic extract derivatized with | Hydroxybenzoic acid, protocatechuic acid, vanillic acid, caffeic acid, | GC-MS | Held 20 min; Injector temperature: 270 °C; Transfer line temperature: 270 °C. SPB-1 silica-fused capillary column (30 m × 0.25 mm ID × 0.25 μm film thickness); Oven temperature: 120 °C held 2 min, to 260°C at 20 °C /min , held 10 min; Injector temperature: 240 °C; Helium flow at 28 cm3/min; Transfer line temperature: 240 °C. | [ |
| Green tea | Dried phenolic extract derivatized with trimethyl-sulfonium hydroxide and trimethylsilyl diazomethane | Catechin, epicatechin, epigallocatechin, gallocatechin, kaempferol, quercetin | GC-MS | A ZB-5HT Inferno capillary column (15 m × 0.32 mm ID × 0.10 μm film thickness); Oven temperature: 100°C held for 5 min, to 375°C at 20°C/ min, held for 5 min; Injector temperature: 350°C; Transfer line temperature: 300°C | [ |
| Various plant extracts | Dried phenolic extract derivatized with a mixture of trimethylchlorosilane and | Gallic acid, | GC-MS | CP-Sil 8 capillary column (30 m × 0.32 mm ID × 0.25 μm film thickness) | [ |
| Propolis | Dried phenolic extract derivatized with | quercetin, apigenin, naringenin, luteolin, caffeic acid, epicatechin, rutin, hydroxytyrosol. | GC-MS | Oven temperature: 70 °C, to 135 °C at 2 °C /min, held for 10 min, to 220 °C at 4°C /min, held for 10 min, to 270 °C at 3.5 °C/min, held for 20 min; Injector temperature: 280 °C; Transfer line temperature: 290 °C. Borosilicate capillary column (20 mm × 0.3 mm ID × 0.1 μm) | [ |
Summary of recent HPLC conditions for plant and food phenolic classes.
| Sample | Phenolic class | Column/Detector | Solvent/ Flow rate/ injection volume | Temperature (°C)/Detection time (min) | Ref. |
|---|---|---|---|---|---|
| Mangosteen pericarp | Gallic acid, gentisic acid, protocatechuic acid, gentisic acid, 4-hydroxybenzoic acid, veratric acid, vanillic acid, caffeic acid, syringic acid, | Bondapak C18 column (300 mm × 3.9 mm ID × 5 μm)/ PDA b, ESI-MS e | Water : methanol : acetic acid (85:14:1); Flow rate: 1.0 mL/min; Injection volume: 20 μL | Ambient/ 45 | [ |
| Mulberry fruit | Cyanidin 3- | RP C18 column (250 mm × 4.6 mm ID, 5 μm)/ PDA b, ESI-MS e | A: water containing 0.1% TFA (trifluoroacetic acid); B: acetonitrile containing 0.1% TFA; Elution profile: 0–2 min, 10% B; 2–35 min, 10–90% B; 35–40 min, 90–100% B; 40–60 min, 100% B/ Flow rate: 1.0 mL/min; NMa | Ambient/ 60 | [ |
| Fruit juice | Cyanidin, peonidin, delphinidin, petunidin, malvidin, pelargonidin | ODS-3 column (250 mm × 4.6 mm ID × 5 μm)/ PDA b | A: acetonitrile; B: water containing 10% acetic acid and 1% phosphoric acid; Elution profile: 25 min, 2–20% A; 5 min, 20–40%; Flow rate: 1.0 mL/min; Injection volume: 25 μL | NM a/50 | [ |
| Quercetin, kaempferol derivatives, rutin | Supelcosil C8 and C18 (250 mm × 4.6 mm ID × 5 μm) column/ PDA b | A: water containing 2.0, 2.5 or 3.0% formic acid or 0.3% trifluoroacetic acid; B: acetonitrile or methanol; Various elution profiles; Flow rate 1.0 mL/ min/ Injection volume: 10 μL | 35/ Different detection times | [ | |
| Apple | Gallic acid, chlorogenic acid, catechin, epicatechin, procyanidin, phloridzin, cyanidin 3-galactoside, quercetin 3-rutinoside, quercetin 3-galactoside, quercetin 3-glucoside, quercetin 3-rhamnoside | RP C18 (250 mm × 4.6 mm ID × 4 μm) column/ PDA b | A: water containing 1% TFA, B: ACN containing 1% TFA; Elution profile: 0–10 min, 10% B; 10–45 min, 10–20% B; 45–50 min, 20–50% B; 50–55 min, isocratic 50%; 55–60 min, 50–10% B. Flow rate: 1 mL/min. Injection volume: 10 μL | 40/ 60 | [ |
| Medicinal plants | Cyanidin glucoside, pelargonidin glucoside, gallocatechin-catechin gallate, afzelechin–catechin dimer, gallocatechin catechin gallate, ferulic acid glucoside, rutin, naringenin-7- | RP C18 (250 mm × 4.6 mm ID × 5 μm) column/ PDA b, ESI- MS e | A: water containing 1% formic acid, B: acetonitrile; Elution profile: 30 min, 90–75% A; 30–45 min, 75–40% A; Flow rate: 1 mL/min; Injection volume: 20 μL | 25/ 45 | [ |
| Food samples | Monomeric, dimeric and trimeric procyanidins, catechin, epicatechin | RP 18 (250 mm × 2 mm ID × 5 μm) column/ PDA b, FLD d, ESI-MS/MS | A: water containing 0.1% formic acid; B: acetonitrile containing 0.1% formic acid; Elution profile: 0–10 min, 10% B; 10–30 min, 15% B; 30–65 min, 40% B. Flow rate: 300 μL/min; Injection volume: 20 μL | 25/ 30 | [ |
| Oregano | Quercetin, fisetin, kaempferol, luteolin, apigenin, eriodictyol, hesperetin, taxifolin, (+)-catechin, (-)-epicatechin | Hypersil C18 ODS (250 mm × 4.6 mm ID × 5 μm) column/ PDA b, ESI-MS-MS | A: water; B: methanol; C: acetonitrile, each containing 0.2% trifluroacetic acid; Elution profile: Initial, 90% A, 6% B, 4% C; 5 min, 85% A, 9% B, 6% C; 5–35 min, 71% A, 17.4% B, 11.6% C; 35–95 min, 0% A, 85% B, 15% C; Flow rate: 1 mL/min; NM a | 30/ NM a | [ |
| Lotus leaves | Myricetin 3- | C18 (150 mm × 4.6 mm ID × 3.5 μm) column/ PDA b, ESI-MS e | A: water containing 0.5% formic acid; B: acetonitrile containing 0.1% formic acid; Elution profile: 0–10 min, 12% B; 10–32 min, 12–20% B; 32–40 min, 20–30% B; 40–48 min, 30–60% B; 48–49 min, 60–12% B; 49–53 min 12% B; Flow rate: 0.6 mL/min; NM a | 30 /53 | [ |
| Bilberries and Blueberries | Delphinidin-3- | C18 (250 mm × 4.6 mm ID × 3 μm) column/ UV-VISc | A: acetonitrile: water: formic acid (87/3/10); B acetonitrile: water: formic acid (50/40/10); Elution profile: 0–20 min, 2%–14% B; 20–40 min, 14% B; 40–50 min, 15% B; 50–55 min, 19% B; 55–65 min, 20% B/ Flow rate: 0.5 mL/min; Injection volume: 20 μL | Ambient/ 65 | [ |
| Persian walnut | 3-caffeoylquinic, 3- | LiChroCART RP C 18 (250 mm × 4 mm ID × 5 μm)/ PDA b, MS-MS | A: water containing 0.1% TFA; B: methanol; Elution profile: 30 min, 30–50% B; 30–32 min, 70% B; 32–33 min, 80% B, 33–35 min, 80% B; Flow rate: 1 mL/ min; Injection volume: 5 μL | NM a/35 | [ |
| Rye grain | Sinapic acid, syringic acid, vanillic acid, ferulic acid, caffeic acid, | Inertsil ODS-3 (150 mm × 4.0 mm ID × 3 μm/ PDA b | A: 50 mM H3PO4 (pH 2.5) B: acetonitrile; Elution profile: 0–5 min, 95% A; 5–17 min, 95–85% A; 17–40 min, 85–80% A; 40–60 min, 80–50% A; 60–65 min 50% A. Flow rate: 0.7 mL/min; Injection volume: 10 μL | 35/ 67 | [ |
| Pomegranate juices | Delphinidin 3,5-diglucoside, cyanidin 3,5-diglucoside, delphinidin 3-glucoside, pelargonidin 3,5-diglucoside, ellagic acid | RP C18 Nucleosil (125 mm × 5.0 mm ID × 5.0 μm) column/ UV-VIS c | A: water containing 2.5% acetic acid; B: methanol containing 2.5%, acetic acid; Elution profile: 0–5 min, 100% A; 5–15 min, 90%; 15–45 min, 50% A; 45–55 min, 100% A. Flow rate: 1.0 mL/min; Injection volume: 50 μL | NM a/55 | [ |
| Orange juice | Gallic acid, protocatechuic acid, | Ultrasphere ODS (250 mm× 4.6 mm ID × 5 μm) column/ UV-VIS c | A: water containing 5% formic acid; B: acetonitrile/solvent A (60:40; v/v); Elution profile: 0-10 min, 0% B; 10–40 min, 0–5% B; 40–58 min, 5–15% B; 48–62 min, 15–25%, 62–93 min, 25–50% B; 93–96 min, 50–100% B; Flow rate: 1.0 mL/min; NM a | 25/ 96 | [ |
| Quinoa | Apigenin-7-methyl ether, 1- | Kinetex C18 (100 mm × 4.6 mm ID × 2.6 μm) column/ PDA b, ESI-MS e | A: water containing 1% acetic acid; B: acetonitrile/solvent A (40:60; v/v); Elution profile: 0–3.5 min, 2% B; 3.5–4.5 min, 2–6%; 4.5–6 min, 6–10% B; 6–7.5 min, 10–17%; 7.5–13 min, 17–36% B; 13–14 min, 36–38.5% B; 14–19 min, 38.5–60% B; 19–24 min, 60–100% B; 24–30 min, 100% B; 30–32 min, 100–2% B; Flow rate: 0.8 mL/min; Injection volume: 10 μL | 25/ 30 | [ |
| Pine needle | Catechin, proanthocyanidins | SupelcoSil LC18 (250 mm × 4.6 mm ID × 5 μm) column/ UV c | A: acetonitrile; B: water containing 0.3% phosphoric acid; Elution profile: 0–35 min, 10–20% A; 35–55 min, 20–90% A; Flow rate: 0.7 ml/min; Injection volume: 10 μL | NMa/47 | [ |
| Apricot fruit | Gemini C18 (150 mm × 4.6 mm ID × 3 μm) column/ UV-VIS c | A: citric acid (75 mM); B: ammonium acetate (25 mM); Elution profile: 0–1 min, 5% B; 1–4 min, 5–6% B; 4–20 min, 6–25% B; 20–30 min, 25–100% B; 30–36 min, 100% B; 36–38 min, 100–5% B; 38–45 min, 5% B; Flow rate: 1.0 mL/min; Injection volume: 20 μL | 35/45 | [ | |
| Sage tea | Carnosic acid, epirosmanol, luteolin-rutinoside, salvianolic acid, apigenin-glucuronide, rosmarinic acid, apigenin-rutinoside, luteolin-rutinoside, luteolin-7- | RP C18 (150 mm × 2.1 mm ID × 1.7 μm) column/ PDA b, MS-MS | A: water containing 0.1% formic acid; B: acetonitrile containing 0.1% formic acid; Elution profile: 0–14 min, 4–27% A; 14–28 min, 27–59.7% A; 28–28.2 min, 59.7–100% A; 28.2–30.5 min, 100% A; 30.5–31 min, 100–4% A; 31–34 min, 4% A; Flow rate: 0.4 mL/min; Injection volume: 3 μL | 40/ 28 | [ |
| Almond skin | Quercetin-3- | RP C18 (50 mm × 2 mm ID, × 2.5 μm) column/ ESI-MS e | A: water containing 0.1% formic acid. B: acetonitrile containing 0.1% formic acid; Elution profile: 0–9.5 min, 1–100% B; Flow rate: 0.5 mL/min; Injection volume: 5 μL | 35/9.5 | [ |
| Burdock leaves | Quercetin, cynarin, benzoic acid, quercitrin, caffeic acid, luteolin, chlorogenic acid, | BEH C18 (150 mm × 2.1 mm ID × 1.7 μm) column/ PDA, ESI-MS-MS | A: water containing 0.1% formic acid; B: acetonitrile/methanol (20/80); Elution profile: 0–10 min, 10–30% B; 10–20 min, 30–50% B; 20–23 min, 50–70% B; 23–25 min, 70–10% B; Flow rate: 0.28 mL/min; NM a | NM a/25 | [ |
| Grape extract | Malvidin glucoside, delphinidin glucoside, cyanidin glucoside, petunidin glucoside, peonidin glucoside, malvidin acetylglucoside, delphinidin acetylglucoside, cyanidin acetylglucoside, petunidin acetylglucoside, peonidin acetylglucoside, malvidin coumarylglucoside | Zorbax SB-C18 (50 mm × 2.1 mm ID × 1.8 μm) column /PDA b, MS-MS | A: water containing 10%; B: acetonitrile; Elution profile: 0–1.5 min, 10–13% B; 1.5–4.5 min, 13-15% B; 4.5–7.5 min, 15–22% B; 7.5–15 min, 22% B; Flow rate: 0.2 mL/min; Injection volume: 1 μL | NM a/15 | [ |
| Stem Bark of | (+)-catechin, (−)-epicatechin, 4β-(2-aminoethylthio) catechin, 4β-(2-aminoethylthio) epicatechin | Hypersil ODS (250 mm × 4.6 mm ID × 2.5 μm) column/ ESI-MS e | A: water containing 0.5 % trifluoroacetic acid; B: acetonitrile containing 0.5% trifluoroacetic acid; Elution profile: 0–5 min, 3% B; 5–15 min, 3%–9% B; 15–45 min, 9%–16% B; 45–60 min, 16%–60% B; Flow rate: 1 mL/min; NM a | Ambient/NM a | [ |
| Lettuce | Caffeoyltartaric acid, | HSS T3 (100 mm × 2.1 mm ID × 1.8 μm)column/ PDA b, ESI-MS e | A: water:methanol:formic acid (94.9:5.0:0.1); B: methanol:water:formic acid (60.0:39.9:/0.1); Elution profile: 0–30 min, 100–50% A; Flow rate: 0.5 mL/min; Injection volume: 10 μL | 35/NM a | [ |
| Cocoa and Chocolate products | Catechin, epicatechin | diol-based (250 mm × 4.6 mm ID × 5 μm) /FLD d, MS | A: acetonitrile:acetic acid (98:2); B: methanol:water:acetic acid (95:3:2); 0–35 min, 100–60% A; 35–39 min, 60% A; 39–41 min, 60–0% A; 41–47 min, 0.0% A; 47–51 min, 0–100% A; Flow rate: 1.0 mL/min; Injection volume: 10 μL | 30/ 51 | [ |
| Wild mushroom | Benzoic acids, | Spherisorb RP C18 (150 mm × 4.6 mm ID × 3 μm) column/ PDA b, ESI-MS e | A: water containing 2.5% acetic acid; B: acetic acid 2.5%: acetonitrile (90:10); C: acetonitrile; Elution profile: 10 min, 100% A; 10–20 min, 50% A and 50% B; 20–35 min, 100% B; 35–45 min, 90% B and 10% C; 45–55 min, 70% B and 30% C; 55–60 min, 50% B and 50% C; 60–65 min, 20% B and 80% C; 65–70 min, 100% A; Flow rate: 0.50 mL/min; NM a | 25/NM a | [ |
| Cocoa, apple | Quercetin, phloridzin, clovamide, | BEH C18 (50 mm × 2.1 mm ID× 1.7 μm) column/ UV c, FLD d, ESI-MS e | A: water containing 0.1 %formic acid; B: acetonitrile; Elution profile: 0–0.25 min, 2% B; 0.25–10.70 min, 2–18% B; 10.70–18 min, 18–25% B; 18–20.70 min, 25–100% B; 20.70–22.5 min, 100% B; Flow rate: 0.80 ml/min; Injection volume: 2 μL | 50/22.5 | [ |
| Bean | Ferulic acid, | RP C18 Luna (150 mm × 4.6 mm ID × 5 μm) column/ PDA b | A: water containing 0.1% formic acid; B: methanol; Elution profile: 0–50 min, 5–30% B; 50–65 min, 30% B; 65–75 min, 30–100% B; Flow rate: 0.7 mL/min; NM a | 25/65 | [ |
| Green tea, green coffee, grapefruit | Catechin, epigallocatechin gallate, epicatechin gallate, epicatechine, gallocatechin, catechin gallate, gallic acid, caffeine | RP C18 Atlantis (100 mm × 4.6 mm ID × 3 μm)/ UV | A: water containing 0.1% formic acid; B: methanol containing 0.1% formic acid; Elution profile: 0–5 min, 10% B; 5–14 min, 10–20% B; 14–20 min, 20–50% B; 20–22 min, 50–90% B; 22–26 min, 90% B; 26–30 min, 90–10% B; Flow rate: 0.5 mL/min; Injection volume: 20 μL | 25/NM | [ |
a Not mentioned; b Photodioide array detector; c Ultraviolet/ visible detector; d Fluorimetric detector; e Electroscopy ionization mass spectroscopy.