1.Postpartum bone mineral density in Korean women: associations with lactation status and calcium intake
Cheawon LEE ; Hangyeol JEON ; Yoon Ha KIM ; Myeong Gyun CHOI ; Jong Woon KIM ; Clara Yongjoo PARK
Nutrition Research and Practice 2026;20(1):145-155
BACKGROUND/OBJECTIVES:
Postpartum bone metabolism undergoes substantial alterations based on breastfeeding status. Research on maternal calcium intake and bone recovery, particularly among Asian women, remains limited. This study investigated postpartum change in bone mineral density (BMD) and its association with calcium intake during late pregnancy and post-delivery according to breastfeeding status.
SUBJECTS/METHODS:
Thirty-six women (22 breastfeeding, 14 non-breastfeeding) underwent dual-energy X-ray absorptiometry 3 times: 1) within 3 days of delivery, 2) at 6 mon postpartum for non-breastfeeding women or within 1 mon of weaning for breastfeeding women, and 3) at 12 mon postpartum. Dietary calcium intake was evaluated using a food frequency questionnaire and dietary supplement survey at all visits. Association between calcium intake with percentage change in BMD (%ΔBMD) was assessed by linear regression.
RESULTS:
The BMD at the lumbar spine, total hip, femoral neck, and trochanter significantly decreased during breastfeeding, whereas non-breastfeeding women displayed increased BMD at the femoral neck at 6 mon postpartum. In non-breastfeeding women, postpartum calcium intake was positively associated with %ΔBMD at the total hip, femoral neck, and intertrochanter (P < 0.05). Few significant associations were observed between %ΔBMD and late pregnancy intakes across all women, regardless of breastfeeding status. At 12 mon, BMD in breastfeeding women recovered to delivery levels, while non-breastfeeding women maintained their BMD observed at 6 mon postpartum.
CONCLUSION
Postpartum calcium intake is positively associated with bone recovery in non-breastfeeding women, suggesting that its effects on bone recovery potentially vary with lactation status.
2.Comparison of Allergenic Properties among Commercially Available House Dust Mite Allergen Extracts in Korea
Ji Tae KIM ; Hyunho KIM ; Sung Hyun KIM ; Dong Jun KIM ; Yeji SHIN ; Jung Dong KIM ; Hangyeol SONG ; Seok Woo JANG ; Deug-chan LEE ; Kyung Hee PARK ; Jae-Hyun LEE ; Kyoung Yong JEONG ; Jung-Won PARK
Yonsei Medical Journal 2021;62(1):86-90
Precise allergy diagnosis and effective allergen specific immunotherapy are largely dependent on the quality of allergen extract. A new extract of Dermatophagoides farinae was commercially developed by Prolagen. The allergenic properties of the new extract were compared with those of other commercial products. The allergenic properties of the new extract were compared according to protein concentration, protein profiles, major allergen (Der f 1) contents, and allergenic potency to those for three commercially available extracts imported in Korea (Jubilant HollisterStier Allergy, Lofarma S.p.A., and Stallergenes Greer). Protein concentrations varied up to 2.62-fold (0.404 to 1.057 mg/mL), and Der f 1 contents varied up to 11.3-fold (3.597 to 40.688 μg/mL). Protein profiles of the extracts showed no major discrepancies, although there were some differences in SDS-PAGE band intensities, reflecting protein concentrations. Allergen potency ranged from 37038 to 60491 PAU/mL. The Prolagen product was highest in terms of protein concentration and allergen potency. The Lofarma product displayed Der f 1 content similar to that in Prolagen (19.4 μg/mg vs. 19.3 μg/mg). Endotoxin levels varied 8.9-fold (1020 to 8985 EU/mL). The newly developed house dust mite extract showed equal or better allergenic properties than available commercial extracts. This new product may be useful for better diagnostics and allergen-specific immunotherapeutics.
3.Profiling of remote skeletal muscle gene changes resulting from stimulation of atopic dermatitis disease in NC/Nga mouse model
Donghee LEE ; Yelim SEO ; Young Won KIM ; Seongtae KIM ; Jeongyoon CHOI ; Sung Hee MOON ; Hyemi BAE ; Hui Sok KIM ; Hangyeol KIM ; Jae Hyun KIM ; Tae Young KIM ; Eunho KIM ; Suemin YIM ; Inja LIM ; Hyoweon BANG ; Jung Ha KIM ; Jae Hong KO
The Korean Journal of Physiology and Pharmacology 2019;23(5):367-379
Although atopic dermatitis (AD) is known to be a representative skin disorder, it also affects the systemic immune response. In a recent study, myoblasts were shown to be involved in the immune regulation, but the roles of muscle cells in AD are poorly understood. We aimed to identify the relationship between mitochondria and atopy by genome-wide analysis of skeletal muscles in mice. We induced AD-like symptoms using house dust mite (HDM) extract in NC/Nga mice. The transcriptional profiles of the untreated group and HDM-induced AD-like group were analyzed and compared using microarray, differentially expressed gene and functional pathway analyses, and protein interaction network construction. Our microarray analysis demonstrated that immune response-, calcium handling-, and mitochondrial metabolism-related genes were differentially expressed. In the Kyoto Encyclopedia of Genes and Genomes (KEGG) and Gene Ontology pathway analyses, immune response pathways involved in cytokine interaction, nuclear factor-kappa B, and T-cell receptor signaling, calcium handling pathways, and mitochondria metabolism pathways involved in the citrate cycle were significantly upregulated. In protein interaction network analysis, chemokine family-, muscle contraction process-, and immune response-related genes were identified as hub genes with many interactions. In addition, mitochondrial pathways involved in calcium signaling, cardiac muscle contraction, tricarboxylic acid cycle, oxidation-reduction process, and calcium-mediated signaling were significantly stimulated in KEGG and Gene Ontology analyses. Our results provide a comprehensive understanding of the genome-wide transcriptional changes of HDM-induced AD-like symptoms and the indicated genes that could be used as AD clinical biomarkers.
Animals
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Biomarkers
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Calcium
;
Calcium Signaling
;
Citric Acid
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Citric Acid Cycle
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Cytokines
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Dermatitis, Atopic
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Gene Ontology
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Genome
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Metabolism
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Mice
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Microarray Analysis
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Mitochondria
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Muscle Cells
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Muscle Contraction
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Muscle, Skeletal
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Myoblasts
;
Myocardium
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Oxidation-Reduction
;
Protein Interaction Maps
;
Pyroglyphidae
;
Receptors, Antigen, T-Cell
;
Skin

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