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1.
Int J Obes (Lond) ; 45(1): 66-76, 2021 01.
Article in English | MEDLINE | ID: mdl-32921795

ABSTRACT

OBJECTIVES: To determine the prevalence of Melanocortin-4 Receptor (MC4R) mutations in a cohort of children and adolescents with overweight or obesity and to determine whether treatment responses differed between carriers and noncarriers. METHODS: Using target region capture sequencing, an MC4R mutation screen was performed in 1261 Danish children and adolescents enrolled at a tertiary multidisciplinary childhood obesity treatment center. Measurements of anthropometrics, blood pressure, fasting blood biochemistry including lipid and hormone levels, and dual-energy X-ray absorptiometry were performed at baseline and throughout treatment. RESULTS: Of 1209 children and adolescents that met all criteria to be included in the described analyses, 30 (2.5%) carried damaging or unresolved MC4R mutations. At baseline, mutation carriers exhibited higher concentrations of plasma thyroid-stimulating hormone (p = 0.003), and lower concentrations of plasma thyroxine (p = 0.010) compared to noncarriers. After a median of 1 year of treatment (range 0.5-4.0 years), body mass index (BMI) standard deviation score (SDS) was reduced in noncarriers but not in carriers, and this difference in treatment response was statistically significant (p = 0.005). Furthermore, HDL cholesterol was reduced in carriers, a response significantly different from that of noncarriers (p = 0.017). CONCLUSION: Among Danish children and adolescents with overweight or obesity entering a tertiary lifestyle intervention, 2.5% carried damaging or unresolved MC4R mutations. In contrast to noncarriers, carriers of damaging or unresolved MC4R mutations failed to reduce their BMI SDS during obesity treatment, indicating a need for personalized treatment based on the MC4R genotype.


Subject(s)
Pediatric Obesity , Receptor, Melanocortin, Type 4/genetics , Adolescent , Adult , Child , Child, Preschool , Cross-Sectional Studies , Denmark , Humans , Life Style , Mutation/genetics , Pediatric Obesity/blood , Pediatric Obesity/epidemiology , Pediatric Obesity/genetics , Pediatric Obesity/therapy , Thyrotropin/blood , Thyroxine/blood , Young Adult
2.
PLoS One ; 10(8): e0135018, 2015.
Article in English | MEDLINE | ID: mdl-26252778

ABSTRACT

OBJECTIVES: This cross sectional study aims to investigate the associations between ectopic lipid accumulation in liver and skeletal muscle and biochemical measures, estimates of insulin resistance, anthropometry, and blood pressure in lean and overweight/obese children. METHODS: Fasting plasma glucose, serum lipids, serum insulin, and expressions of insulin resistance, anthropometry, blood pressure, and magnetic resonance spectroscopy of liver and muscle fat were obtained in 327 Danish children and adolescents aged 8-18 years. RESULTS: In 287 overweight/obese children, the prevalences of hepatic and muscular steatosis were 31% and 68%, respectively, whereas the prevalences in 40 lean children were 3% and 10%, respectively. A multiple regression analysis adjusted for age, sex, body mass index z-score (BMI SDS), and pubertal development showed that the OR of exhibiting dyslipidemia was 4.2 (95%CI: [1.8; 10.2], p = 0.0009) when hepatic steatosis was present. Comparing the simultaneous presence of hepatic and muscular steatosis with no presence of steatosis, the OR of exhibiting dyslipidemia was 5.8 (95%CI: [2.0; 18.6], p = 0.002). No significant associations between muscle fat and dyslipidemia, impaired fasting glucose, or blood pressure were observed. Liver and muscle fat, adjusted for age, sex, BMI SDS, and pubertal development, associated to BMI SDS and glycosylated hemoglobin, while only liver fat associated to visceral and subcutaneous adipose tissue and intramyocellular lipid associated inversely to high density lipoprotein cholesterol. CONCLUSION: Hepatic steatosis is associated with dyslipidemia and liver and muscle fat depositions are linked to obesity-related metabolic dysfunctions, especially glycosylated hemoglobin, in children and adolescents, which suggest an increased cardiovascular disease risk.


Subject(s)
Liver/pathology , Muscles/pathology , Pediatric Obesity/pathology , Adolescent , Anthropometry , Blood Glucose/analysis , Blood Pressure , Body Mass Index , Body Weight , Cardiovascular Diseases/physiopathology , Child , Cross-Sectional Studies , Denmark , Dyslipidemias/blood , Fatty Liver/pathology , Female , Humans , Insulin/blood , Insulin Resistance , Intra-Abdominal Fat/pathology , Linear Models , Lipids/blood , Liver/metabolism , Male , Overweight , Pediatric Obesity/blood , Proton Magnetic Resonance Spectroscopy , Puberty , Sex Factors , Subcutaneous Fat/pathology
3.
Nat Genet ; 45(1): 76-82, 2013 Jan.
Article in English | MEDLINE | ID: mdl-23202124

ABSTRACT

Birth weight within the normal range is associated with a variety of adult-onset diseases, but the mechanisms behind these associations are poorly understood. Previous genome-wide association studies of birth weight identified a variant in the ADCY5 gene associated both with birth weight and type 2 diabetes and a second variant, near CCNL1, with no obvious link to adult traits. In an expanded genome-wide association meta-analysis and follow-up study of birth weight (of up to 69,308 individuals of European descent from 43 studies), we have now extended the number of loci associated at genome-wide significance to 7, accounting for a similar proportion of variance as maternal smoking. Five of the loci are known to be associated with other phenotypes: ADCY5 and CDKAL1 with type 2 diabetes, ADRB1 with adult blood pressure and HMGA2 and LCORL with adult height. Our findings highlight genetic links between fetal growth and postnatal growth and metabolism.


Subject(s)
Birth Weight/genetics , Body Height/genetics , Fetal Development/genetics , Genetic Linkage , Quantitative Trait Loci , Adult , Blood Pressure/genetics , Diabetes Mellitus, Type 2/genetics , Female , Genetic Predisposition to Disease , Genome-Wide Association Study , Humans , Infant, Newborn , Male , Meta-Analysis as Topic , Polymorphism, Single Nucleotide
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