| Literature DB >> 29849639 |
Serap Kılıç Altun1, Hikmet Dinç2, Füsun Karaçal Temamoğulları2, Nilgün Paksoy3.
Abstract
Maternal breast milk is a unique biological matrix that contains essential micronutrients. Potentially heavy metals may also affect infants' health and growth through maternal breast milk. The purpose of this study was to determine and compare the essential elements and heavy metals of maternal breast milk of nursery mothers residing in Şanlıurfa province, Turkey. Maternal breast milk concentrations of sodium, magnesium, phosphorus, potassium, calcium, iron, copper, zinc, arsenic, and lead were analyzed in a random sample of the first time in urban and suburban nursery Turkish mothers (n: 42). Eight essential elements and two heavy metals were analyzed using ICP-MS after microwave digestion. For bivariate analyses of variables, we use nonparametric Spearman's correlation coefficient test. The mean concentrations of essential elements and heavy metals were as follows: sodium 330 ± 417 mg/L, magnesium 32.6 ± 15.5 mg/L, phosphorus 156 ± 46.2 mg/L, potassium 488 ± 146 mg/L, calcium 193 ± 53.2 mg/L, iron 1.65 ± 1.43 mg/L, copper 0.54 ± 0.46 mg/L, zinc 2.89 ± 3.23 mg/L, arsenic < 1 μg/L, and lead < 1 μg/L. Concentrations of heavy metals in maternal breast milk may have the important implication that it is not affected by environmental pollution in this province. This study provides reliable information about maternal breast milk concentrations of nursery mothers residing in Şanlıurfa, Turkey, and also compares the relations between essential elements and socioeconomic conditions, residing areas, and using copper equipment for food preparation of which some have not previously been reported.Entities:
Year: 2018 PMID: 29849639 PMCID: PMC5904813 DOI: 10.1155/2018/1784073
Source DB: PubMed Journal: Int J Anal Chem ISSN: 1687-8760 Impact factor: 1.885
Data of nursery mother and the infants' status.
| Parameter | Total number ( | Percentage (%) | Min | Max | Mean ± SD |
|---|---|---|---|---|---|
| Age of infant (day) | 42 | 100.0 | 3 | 520 | 162 ± 139 |
| Age of mother (year) | 42 | 100.0 | 17 | 44 | 28.3 ± 7.08 |
| Income rate < minimum wage | 21 | 50.0 | |||
| Income rate ≥ minimum wage | 21 | 50.0 | |||
| Residing in urban area | 25 | 59.5 | |||
| Residing in suburban area | 17 | 40.4 | |||
| Using copper equipment | 13 | 31.0 | |||
| Not using copper equipment | 29 | 69.0 |
Quantification and detection limits.
| Element | LOQ | LOD | Concentration range of standard solution |
|---|---|---|---|
| Na (mg/L) | 315 | 10.0 | 1–2000 |
| Mg (mg/L) | 48.6 | 4.60 | 1–100 |
| P (mg/L) | 562 | 35.0 | 10–1000 |
| K (mg/L) | 1413 | 100 | 10–1000 |
| Ca (mg/L) | 678 | 22.0 | 10–1000 |
| Fe (mg/L) | 2.53 | 0.40 | 0.1–1000 |
| Cu (mg/L) | 0.06 | 0.01 | 0.01–100 |
| Zn (mg/L) | 1.81 | 0.20 | 0.1–100 |
| As ( | 0.04 | 0.01 | 0.1–100 |
| Pb ( | 0.04 | 0.01 | 0.1–100 |
Concentration of essential elements and heavy metals of MBM samples.
| Min | Max | Mean ± SD | |
|---|---|---|---|
|
| |||
| Na (mg/L) | 44.7 | 1703 | 330 ± 417 |
| Mg (mg/L) | 12.7 | 85.9 | 32.6 ± 15.5 |
| P (mg/L) | 84.0 | 300 | 156 ± 46.3 |
| K (mg/L) | 161 | 903 | 488 ± 147 |
| Ca (mg/L) | 90.0 | 276 | 193 ± 53.2 |
| Fe (mg/L) | 0.45 | 5.11 | 1.65 ± 1.43 |
| Cu (mg/L) | 0.08 | 2.02 | 0.54 ± 0.46 |
| Zn (mg/L) | 0.45 | 15.8 | 2.89 ± 3.23 |
|
| |||
| As ( | <1 | <1 | <1 |
| Pb ( | <1 | <1 | <1 |