| Literature DB >> 35683994 |
Aleksandra Purkiewicz1, Renata Pietrzak-Fiećko1, Fritz Sörgel2,3, Martina Kinzig2.
Abstract
This study aimed to assess the content of caffeine and its metabolites-paraxanthine, theophylline, and theobromine-in breast milk according to selected factors. Samples of human milk were collected from 100 women living in the east-northeast region of Poland. Information on the consumption of beverages and foods containing caffeine was collected using a 3 day food record. The determination of caffeine and its metabolite content was performed using liquid chromatography-mass spectrometry (LC-MS/MS). This study research showed that more caffeine was found in the milk of women living in cities, with secondary education, aged 34-43, and also in milk from the 3rd and 4th lactation periods (p ≤ 0.05). Factors such as place of residence, level of education, age, and stage of lactation influenced the nutritional choices of breastfeeding women, which had an impact on the level of caffeine and its metabolites in breast milk. A positive correlation was found between the consumption of caffeine with food and drinks and its level in human milk.Entities:
Keywords: breast milk analysis; caffeine metabolites; lactation; methylxanthines
Mesh:
Substances:
Year: 2022 PMID: 35683994 PMCID: PMC9182860 DOI: 10.3390/nu14112196
Source DB: PubMed Journal: Nutrients ISSN: 2072-6643 Impact factor: 6.706
Figure 1Caffeine metabolism. Source: own elaboration based on: [12].
Caffeine content in different beverages and food products. Source: own elaboration based on: [15].
| Source of Beverage/Food | Volume/Weight | Caffeine Content [mg] |
|---|---|---|
| ground coffee | 150 mL | 60 |
| instant coffee | 150 mL | 66 |
| black tea | 250 mL | |
| bags | 31 | |
| leaf | 43 | |
| green tea | 250 mL | |
| bags | 34 | |
| leaf | 41 | |
| cacao | 250 mL | 5 |
| Coca-Cola | 250 mL | 25 |
| energy drinks | 250 mL | 80 |
| bitter chocolate | 100 g | 67 |
| milk chocolate | 100 g | 21 |
Characteristics of the studied breastfeeding women.
| Factors | |
|---|---|
| Age, year | |
| 18–25 | 29 |
| 26–33 | 37 |
| 34–44 | 34 |
| Education | |
| Secondary | 60 |
| Higher | 40 |
| Place of residence | |
| City | 65 |
| Village | 35 |
| Stage of lactation | |
| 1st | 35 |
| 2nd | 35 |
| 3rd and 4th | 30 |
Information on the consumption of food products and beverages rich in caffeine collected using a 3 day food record.
| Place of | Level of | Age | Stage of Lactation |
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| Factor | City | Village | Secondary | Higher | 18–25 | 26–33 | 34–44 | 1st | 2nd | 3rd–4th | |
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| Coffee consumption * | |||||||||||
| >than 2 times a day | 38;58 | 6;17 | 33;55 | 13;33 | 9;31 | 8;22 | 23;68 | 3;9 | 10;29 | 14;47 | |
| 2 times a day | 14;22 | 8;23 | 17;28 | 5;13 | 10;34 | 12;32 | 7;21 | 11;31 | 17;49 | 12;40 |
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| 1 time a day | 8;12 | 19;54 | 6;10 | 19;48 | 8;28 | 12;32 | 4;12 | 15;43 | 7;20 | 4;13 | |
| I don’t consume coffee | 5;8 | 2;6 | 4;7 | 3;8 | 2;7 | 5;14 | - | 6;17 | 1;3 | - | |
| Number of teaspoons (5 g) used for making coffee | |||||||||||
| >than 2 | 29;45 | 9;26 | 17;28 | 6;15 | 9;31 | 8;22 | 17;50 | 2;6 | 9;26 | 11;37 | |
| <than 2 | 21;32 | 13;37 | 26;43 | 19;48 | 12;41 | 14;38 | 12;35 | 15;43 | 17;49 | 14;47 | 0.5451 |
| 1 or less | 10;15 | 11;31 | 13;22 | 12;30 | 6;21 | 10;27 | 5;15 | 17;49 | 8;23 | 5;17 | |
| I don’t consume coffee | 5;8 | 2;6 | 4;7 | 3;8 | 2;7 | 5;14 | - | 6;17 | 1;3 | - | |
| Tea consumption ** | |||||||||||
| >than 2 times a day | 27;42 | 14;40 | 25;42 | 14;35 | 7;24 | 9;24 | 19;56 | 9;26 | 11;31 | 9;30 | |
| 2 times a day | 32;49 | 19;54 | 32;53 | 19;48 | 16;55 | 23;62 | 12;35 | 14;40 | 16;46 | 13;43 |
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| 1 time a day | 6;9 | 2;6 | 3;5 | 7;18 | 6;21 | 5;14 | 3;9 | 12;34 | 8;23 | 8;27 | |
| The type of tea consumed | |||||||||||
| bags | 57;88 | 32;91 | 55;92 | 31;78 | 25;86 | 28;76 | 29;85 | 31;89 | 27;77 | 24;80 |
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| leaf | 8;12 | 3;9 | 5;8 | 9;23 | 4;14 | 9;24 | 5;15 | 4;11 | 8;23 | 6;20 | |
| Tea brewing time | |||||||||||
| <than 10 min | 62;95 | 31;89 | 57;95 | 36;90 | 27;93 | 32;86 | 31;91 | 35;100 | 32;91 | 26;87 |
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| >than 10 min | 3;5 | 4;11 | 3;5 | 4;10 | 2;7 | 5;14 | 3;9 | - | 3;9 | 4;13 | |
| Chocolate consumption *** | |||||||||||
| >than 3 cubes a day | - | - | - | - | - | - | - | - | - | - | |
| 3 or less than 3 cubes a day | 58;89 | 21;60 | 47;78 | 32;80 | 21;72 | 27;73 | 31;91 | 23;66 | 30;86 | 26;87 |
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| I don’t consume chocolate | 7;11 | 14;40 | 13;22 | 8;20 | 8;28 | 10;27 | 3;9 | 12;34 | 5;14 | 4;13 | |
| The type of chocolate consumed | |||||||||||
| bitter (70% cocoa and more) | 23;35 | 4;11 | 7;12 | 15;38 | 12;41 | 12;32 | 14;41 | 13;37 | 8;23 | 11;37 | |
| milk (less than 70% cocoa) | 35;54 | 17;49 | 40;67 | 17;43 | 9;31 | 15;41 | 17;50 | 10;29 | 22;63 | 15;50 | 0.8192 |
| I don’t consume chocolate | 7;11 | 14;40 | 13;22 | 8;20 | 8;28 | 10;27 | 3;9 | 12;34 | 5;14 | 4;13 | |
* A portion of coffee—200 mL. ** A portion of tea—250 mL. *** 1 cube of chocolate = 5 g. p < 0.05 was indicated by using bold.
The content of caffeine, paraxanthine, theophylline, and theobromine in breast milk according to selected factors.
| Factors | Compounds | |||
|---|---|---|---|---|
| Caffeine | Paraxanthine | Theophylline | Theobromine | |
| Place of residence | 0.590 ± 0.114 a | 0.355 ± 0.098 a | 0.028 ± 0.012 a | 0.442 ± 0.088 a |
| rural areas | 0.227 ± 0.012 b | 0.115 ± 0.055 b | 0.017 ± 0.010 b | 0.181 ± 0.062 b |
| Level of education | ||||
| secondary | 0.673 ± 0.032 a | 0.426 ± 0.021 a | 0.026 ± 0.009 a | 0.368 ± 0.012 b |
| higher | 0.545 ± 0.055 b | 0.331 ± 0.037 b | 0.029 ± 0.004 a | 0.442 ± 0.076 a |
| Age (years) | 0.485 ± 0.022 b | 0.303 ± 0.189 b | 0.019 ± 0.001 b | 0.278 ± 0.119 c |
| 26–33 | 0.353 ± 0.087 c | 0.190 ± 0.027 c | 0.016 ± 0.012 b | 0.313 ± 0.078 b |
| 34–44 | 0.838 ± 0.065 a | 0.505 ± 0.071 a | 0.048 ± 0.033 a | 0.630 ± 0.014 a |
| Stage of lactation | 0.312 ± 0.167 c | 0.169 ± 0.057 b | 0.013 ± 0.009 b | 0.243 ± 0.082 b |
| 2nd | 0.698 ± 0.095 b | 0.427 ± 0.032 a | 0.038 ± 0.011 a | 0.537 ± 0.021 a |
| 3rd–4th | 0.794 ± 0.008 a | 0.472 ± 0.022 a | 0.0410 ± 0.055 a | 0.544 ± 0.059 a |
Explanation: means with different letters (a,b,c) in the columns are significantly different (p < 0.05).
Figure 2Correlation coefficients (r) calculated for the relationship between caffeine consumption and caffeine content inhuman milk (Correlation: r = 0.72).
Correlation coefficients (r) calculated for the relationships between the content of caffeine and its metabolites (r marked by * are statistically significant at p < 0.05).
| Paraxanthine | Theophylline | Theobromine | |
|---|---|---|---|
| Caffeine | 0.92 * | 0.73 * | 0.64 * |
Figure 3Graphical correlation coefficients (r) calculated for the relationship between caffeine content and the content of its metabolites—paraxanthine (A), theophylline (B), and theobromine (C).