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Associations of Serum Mineral levels of Copper, Magnesium and Calcium with Skeletal Muscle mass and Strength in Chinese children, aged 6-11: A Cross-Sectional Study Abubakar Tarawally; Zheqing Zhang
Health Dynamics Vol 1, No 3 (2024): March 2024
Publisher : Knowledge Dynamics

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Abstract

Skeletal Muscle mass (SMM) and strength are important parameters used in determining children’s health throughout their stages of development and through adulthood. Similar to its properties in adulthood and aging, low skeletal muscle mass and strength contribute to adverse health outcomes in childhood, several pieces of research have described an increased risk of developing metabolic dysfunction and cardiovascular diseases in children and adolescents with low skeletal muscle mass and strength[1-3]. Several macro-and micro minerals are involved in maintaining healthy skeletal muscles and strength from childhood through to adulthood. Copper (Cu), magnesium (Mg), and calcium (Ca) are essential for the normal development of the skeleton [4]. Copper serves as an important trace element vital to the health of all living organisms and collagen, which is the main structural material in bone. Copper deficiency can lead to fractures, skeletal abnormalities, and osteoporosis quite recently, the relevance of loss of skeletal muscle mass or strength to bone health has been recognized, with evidence of associations between low skeletal muscle mass, low strength, or low physical performance and outcomes of osteoporosis [5, 6]. Serum copper concentrations were reported to have a positive correlation with BMD of the lumbar spine as measured using dual-energy X-ray absorptiometry and quantitative computerized tomography in premenopausal female [7], copper serum level was also reported to have a positive correlation with bone density at total hip and spine in postmenopausal women [8].
Associations of Serum Mineral levels of Copper, Magnesium and Calcium with Skeletal Muscle mass and Strength in Chinese children, aged 6-11: A Cross-Sectional Study Abubakar Tarawally; Zheqing Zhang; Unami Japhta-Mlandu
Health Dynamics Vol 1, No 3 (2024): March 2024
Publisher : Knowledge Dynamics

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33846/hd10304

Abstract

Background:Skeletal Muscle Mass (SMM) and strength are crucial for children's health, and low SMM can lead to adverse health outcomes. A deficiency of essential minerals can cause poor growth, fractures or osteoporosis. The study aimed to explore the relationship between serum Calcium (Ca), Copper (Cu), and Magnesium (Mg) levels and SMM in Chinese children.Methods:466 primary school children were recruited for a cross-section study aged 6-11 in Guangzhou City, South of China, from December 2015 to February 2017. The study conducted whole-body dual-energy x-ray absorptiometry (DXA) scans using the Hologic discovery W to obtain the Total skeletal mass (TSM) and appendicular skeletal mass (ASM) were calculated, which were used as parameters to calculate variables of Skeletal muscle mass (SMM).Results:Of the 466 primary school children, 266 were boys and 200 girls with mean ages of 8.001.00 years for boys and 8.080.97 years for girls. An increase in mean Cu serum concentration between the T1 and T3 in girls resulted in 3.19% (P- trend =0.034, P-diff =0.083), 3.57% (P- trend =0.037, P-diff=0.083), 2.44% (P- trend =0.018, P=diff=0.060) and 2.25% (P- trend =0.024, P-diff= 0.072) for ASM/Height, ASH/ Weight, TSM/ Height and TSM/ Weight respectively, No significant mean difference was observed between serum Cu and ASM, TSM, ASM/ AFM and TSM/TFM (P- trend >0.05). A significant mean difference in serum Mg levels and ASM/ AFM for the total and boys' group was observed, with 6.68% and 9.44% (P- trend =0.042 and 0.041) respectively. No significant mean differences were seen between all the variables of serum Ca levels and all the variables of skeletal muscle mass and strength.Conclusions:Serum copper levels influence the development of SMM in girls, but not in boys. Serum Ca and Mg level in girls and boys do not influence SMM development among children aged 6-11.