| Literature DB >> 34209985 |
Tomislav Jurendić1, Mario Ščetar2.
Abstract
Due to factors such as cultivar, fertilization, maturation or climate conditions, as well as the date of their harvest, chokeberries (Aronia melanocarpa) differ in their content of minerals, vitamins, carbohydrates, amino acids, organic acids, fats, aroma compounds and especially polyphenols, substances exerting a beneficial impact on health. The total content of the most important ingredients, polyphenolic compounds, influence many proven chokeberry activities like antioxidative, anti-inflammatory, hypotensive, antiviral, anticancer, antiplatelet, antidiabetic and antiatherosclerotic, respectively. Polyphenolic compounds such as anthocyanins, flavonoids, procyanidins and phenolic acids in different rates and amounts are responsible for all mentioned activities. In the human body, they undergo different biotransformative processes strengthening their bioactivity inside and outside cells. The popularity of chokeberry has been significant lately because of its effects on human health and not just because of its nutritional value. The main interest in this review has been refocused on the chokeberry benefits to human health, nutritional contribution of its components, particularly polyphenolic compounds, and its physiological effects.Entities:
Keywords: Aronia melanocarpa; antioxidant activity; health benefits; nutrition; polyphenolic compounds
Year: 2021 PMID: 34209985 PMCID: PMC8300639 DOI: 10.3390/antiox10071052
Source DB: PubMed Journal: Antioxidants (Basel) ISSN: 2076-3921
Chemical composition of chokeberry, juice and pomace.
| Chemical | Berries g/kg | References | Juice g/L | References | Pomace g/kg | References |
|---|---|---|---|---|---|---|
| Dry matter % | 15–31 | [ | 11–17 | [ | 45–50 | [ |
| pH | 3.3–3.7 | [ | ||||
| Titratable acidity | 0.5–1 | [ | 0.9–1 | [ | 0.5–0.6 | [ |
| Total sugar | 68–158 | [ | 110–143 | [ | 84 | [ |
| Glucose | 11–40 | 32–40 | 22 | |||
| Fructose | 14–42 | 30–39 | 24 | |||
| Sorbitol | 44–76 | 48–64 | 38 | |||
| Total | 79 | [ | 4.7–9.0 | [ | 31–63 | [ |
| Fiber | 56 | [ | 3 | [ | 630–780 | [ |
| Minerals | 4–6 | 5 | 14–39 | |||
| Fat | 1.4 | <1 | 29–139 | |||
| Proteins | 7 | 2 | 49–241 | |||
| Amygdalin mg/100 g | 20 | [ | 5.8 | [ | 7–185 | [ |
Chokeberry Nutrients and Recommended Daily Intake.
| Ingredient | Amount in 100 g [ | Recommended Daily Intake [ | Percent Daily Value | |||
|---|---|---|---|---|---|---|
| 1–4 Years Old | 4–15 Years Old | After 15 Years Old | Average | % | ||
| Energy (kcal) | ||||||
| Carbohydrates (Kcal) | 60 | 1100–1300 | 1300–2900 | 2000–3400 | 2000 | 3 |
| Proteins (g) | 0.7 | 14 | 18–50 | 48–67 | 40 | 2 |
| Fats (g) | 0.14 | - | - | - | - | |
| Minerals (mg) | ||||||
| Sodium (Na) | 2.6 | 400 | 500–1400 | 1500 | 950 | 0.3 |
| Calcium (Ca) | 32 | 600 | 750–1200 | 1200 | 900 | 4 |
| Potassium (K) | 218 | 1100 | 1300–3600 | 4000 | 2550 | 9 |
| Magnesium (Mg) | 16 | 80 | 120–310 | 350–400 | 240 | 7 |
| Zinc (Zn) | 0.2 | 3 | 4–12 | 11–16 | 10 | 2 |
| Iron (Fe) | 0.9 | 8 | 8–15 | 12–15 | 12 | 8 |
| Vitamins (mg) | ||||||
| Thiamin (B1) | 0.02 | 0.6 | 0.7–1.2 | 1.1–1.4 | 1 | 2 |
| Riboflavin (B2) | 0.02 | 0.7 | 0.8–1.4 | 1.2–1.6 | 1 | 2 |
| Pyridoxin (B6) | 0.03 | 0.6 | 0.7–1.5 | 1.4–1.6 | 1 | 3 |
| Niacin | 0.3 | 8 | 9–15 | 13–17 | 12 | 3 |
| Phantothenic acid | 0.3 | 4 | 4–6 | 6 | 5 | 6 |
| Ascorbic acid (C) | 14 | 20 | 30–85 | 90–110 | 65 | 22 |
| Tocopherols (E) | 1.7 | 5–6 | 8–14 | 12–15 | 10 | 17 |
| Folate/µg | 20 | 120 | 140–300 | 300 | 210 | 10 |
| Phyllochinon (K)/µg | 24 | 15 | 20–50 | 60–80 | 48 | 50 |
Macro- and micro-element contents (mg/100 g) in Aronia melanocarpa berries, juice, pomace and leaves.
| Elements | Berries [ | Juice [ | Pomace [ | Leaves [ |
|---|---|---|---|---|
| K | 271–498 | 85–320 | 181–308 | 262 |
| Ca | 60–117 | 14–123 | 219–408 | 373 |
| P | 24–96 | 17–104 | 239 | 151 |
| Mg | 16–58 | 21–59 | 37–250 | 83 |
| Na | 1–2 | 2–6 | 5–9 | 2 |
| Zn | 0.4–0.8 | 0.1–0.3 | 0.6–3.7 | 1.2 |
| Fe | 0.9–1.4 | 0.7–2.5 | 7.5–8.6 | 2.2 |
| Se | 0.02 | 0.07–0.1 | 0.05 | |
| Cu | 0.08–0.2 | 0.1–0.5 | 0.5–1.2 | 0.4 |
| Mo | 0.002 | 0.005–0.006 | 0.008 | |
| Cr | 0.05 | 0.06–0.07 | 0.05 | |
| Mn | 0.5–1.8 | 0.3–1.2 | 3.2 | 0.6 |
| Si | 0.2–0.6 | 0.3–0.7 | 0.6 | |
| Ni | 0.01–0.07 | 0.01–0.09 | 0.01 | |
| B | 0.3–1.4 | 0.1–0.9 | 0.5 | |
| V | 0.04–0.2 | 0.1 | 0.2 | |
| Pb | 0.005–0.009 | 0.006–0.01 | 0.005 | |
| Cd | 0.02–0.004 | 0.005–0.006 | 0.002 | |
| As | 0.03–0.04 | 0.06–0.08 | 0.03 |
Phenolic phytochemicals present in Aronia fruit, pomace, juice and leaves.
| Phenolic Constituents | Fruit | Fruit | Pomace | Juice | Leaves |
|---|---|---|---|---|---|
|
| |||||
| (−)-Epicatechin | 15 | 32 | 11 | 13 | |
| Procyanidins | 5182 | 1646 | 8192 | 1579 | |
| Degree polymerization (DP) | 23 | 59 | 34 | 23 | |
|
| |||||
| Cyanidin-3- | 19–1282 | 417–636 | 1120 | 787 | 0.2–2 |
| Cyanidin-3- | 0.3–42 | 8–27 | 79 | 28 | |
| Cyanidin-3- | 6.2–582 | 129–299 | 533 | 324 | 0.2 |
| Cyanidin-3- | 53 | 29–38 | 105 | 34 | |
|
| |||||
| Chlorogenic acid | 16–302 | 72–111 | 204 | 416 | 184–706 |
| Neochlorogenic acid | 92–291 | 59–100 | 169 | 393 | 143–483 |
| 3,4-Dihydroxyphenylacetic acid | 4–26 | 5,8–66 | |||
| Protocatechuic acid | 0.4–31 | 2–9 | |||
| Rosmarinic acid | 9–18 | 23–155 | |||
|
| |||||
| Quercetin | 12–44 | 7.1 | 83–316 | ||
| Quercetin-3- | 37 | 7–13 | 47 | 50 | |
| Quercetin-3- | 22 | 4 | 27 | 31 | |
| Quercetin-3- | 15 | 4 | 14 | 28 | 62–103 |
| Quercetin-3- | 97–367 | ||||
| Quercetin-3- | 3–5 | ||||
| Quercetin-3- | 1–5 | ||||
| Quercetin derivates unidentified | 27 | 82 | 47 | ||
| Kaempferol | 0,5 | ||||
|
| |||||
| Eriodictyol-7- | 24 |
DW: dry weight; FW: fresh weight.
Chemical structures of anthocyanins [3,36].
| Phenolic Constituents | Substituents | Chemical Structure | ||
|---|---|---|---|---|
| Cyanidin-3- | R1 = galactose | R2 = OH | R3 = OH |
|
| Cyanidin-3- | R1 = glucose | R2 = OH | R3 = OH |
|
| Cyanidin-3- | R1 = xylose | R2 = OH | R3 = OH |
|
| Cyanidin-3- | R1 = arabinose | R2 = OH | R3 = OH |
|
| Pelargonidin-3- | R1 = arabinose | R2 = H | R3 = OH |
|
| Pelargonidin-3- | R1 = galactose | R2 = H | R3 = OH |
|
Chemical structures of quercetin glycosides [3,24,36].
| Phenolic Constituents | Substituents | Chemical Structures |
|---|---|---|
| Quercetin-3- | R = vicianose |
|
| Quercetin-3- | R = robinose |
|
| Quercetin-3- | R = rutinose |
|
| Quercetin-3- | R = galactose |
|
| Quercetin-3- | R = glucose |
|
| Quercetin-3-arabinoside | R = arabinose |
|
| Quercetin-3- | R = glucuronide |
|
| Quercetin-3- | R = Xylose |
|
| Quercetin-3- | R = arabinoglucoside |
|
| Quercetin-3- | R = malonyl-glucoside |
|