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Biomedical subjects

C Maffeis

Publications and source records attributed to C Maffeis.

At least 19 recordsLinked to original sources

Metabolic syndrome in obese Caucasian children: prevalence using WHO-derived criteria and association with nontraditional cardiovascular risk factors.

OBJECTIVE: Studies on the prevalence of metabolic syndrome (MS) in European obese children using child-based criteria are scanty. Moreover, it is unknown if nontraditional cardiovascular disease (CVD) risk factors are associated with the MS at this early age in these subjects. DESIGN AND SUBJECTS: We studied the prevalence of the MS in 588 Caucasian obese children and adolescents by devising a World Health Organization derived definition and child-specific criteria, whose deviation from normalcy was based on an age, sex, and ethnically comparable control group of 1363 subjects. In a subgroup of 206 obese children, we investigated the association of the MS with nontraditional CVD risk factors. MEASUREMENTS: Fasting blood samples for glucose and lipids measurements were taken in both control and obese children. In addition, the obese children underwent an oral glucose tolerance test. In the subgroup of 206 obese children, albumin excretion rate , plasma uric acid, fibrinogen, plasminogen activator inhibitor type 1(PAI-1), C-reactive protein, interleukin 6 and white blood cells were also measured. RESULTS: The prevalence of MS was 23.3%. A similar prevalence of 23% of MS was recorded in the subgroup of 206 obese children in whom measurements of nontraditional CVD risk factors were available. After adjustment for the degree of obesity, subjects with MS had significantly higher uric acid (6.6+/-0.23 vs 6.1+/-0.12 mg/dl, P<0.0001) and PAI-1 plasma concentrations (231.4+/-25.50 vs 214.3+/-12.96 ng/ml, P<0.05) and a higher frequency of microalbuminuria (37 vs 20%, P<0.05) than those without MS. Microalbuminuria, uric acid and PAI-1 explained 10.6% of the variance of MS. CONCLUSION: Approximately, a quarter of Caucasian obese children have the MS. The association of MS with several nontraditional risk factors for CVD early in life suggests a heightened CVD risk in these individuals.

Adolescent↗

Genetic analysis carried out on blood-spots of phenylalanine hydroxylase-deficient newborns detected by northeastern Italian neonatal screening.

The aim of this work was to perform genetic analysis on 18 different blood-spot samples collected from neonates detected as hyperphenylalaninemic by Northeastern Italian screening program. DNA was extracted from blood-spots. Exons/introns of PAH gene were amplified by polymerase chain reaction (PCR), and PCR products were purified and sequenced with both forward and reverse primers. The most frequent mutations were IVS12nt1g>a (16.7%) and R408W, P281L and L48S (all together 11.1%). As expected, compound heterozygosity was the usual finding; homozygosity was found only in two patients with R158Q and IVS2nt5g>c mutations. The V230I mutation was reported for the first time in Italy. We found six previously described polymorphisms (V245V, IVS4nt47c>t, IVS2nt19t>c, IVS3nt-22c>t, IVS5nt-54a>g, and E280>Q280). To our knowledge, four genotypes were not previously described: R158Q/V230I present in one patient with classical PKU; and L48S/R408Q, A403V/IVS2nt-13t>g, and G272X/V230I present in patients showing HPA phenotype. Most of the mutations were located in the exons 12 and 7 and in exon/intron 2 (83.3% detection of total mutations in PKU or HPA patients of Northeastern Italy). From a practical viewpoint, the genetic analysis of blood-spots collected on Guthrie cards for neonatal screening for PKU could be a simple method to establish the genotype of neonates. Consequently, the genotype/phenotype correlation could lead to a more accurate diagnosis and prognosis for families.

Amino Acid Substitution↗

[Depressive symptoms and low self-esteem in obese children and adolescents].

AIM: The aim of th study was to assess the prevalence of depressive symptoms and low self-esteem (SE) in a clinical sample of obese children and adolescents; to examine whether Body Mass Index (BMI) or age are correlated to scores of depression and SE. METHODS: Fifty-five obese patients, aged 9-16 years, completed 2 questionnaires: the Children's Depression Inventory (CDI) and the Multidimensional Self Concept Scale (MSCS), which assesses global SE and 6 specific domains of SE (Social, Competence, Affect, Academic, Family and Physical). RESULTS: The prevalence of depressive symptoms and low global SE was not significantly different from normative data of the general pediatric population. The mean overall scores on CDI (8+/-4.69) and MSCS (96.6+/-11.54) fell within the normal range (0-19 and 85-115, respectively). The lowest scores in specific domains of MSCS were obtained in Physical SE (94.42+/-12.64). The scores on questionnaires were not significantly correlated to BMI or age. A significant negative correlation between Physical SE scores and CDI scores was found (r=-0.43; p<0.05). CONCLUSIONS: Obese children and adolescents, as a whole, did not present more depressive symptoms and lower SE than the general pediatric population. However, some obese patients may be at higher risk for psychopathology. In this study, the degree of obesity (BMI), age and sex were not risk factors for psychopathology. The relative low scores on Physical SE and their correlation to CDI scores suggest that body image dissatisfaction may be a risk factor for psychopathology in a subgroup of obese patients.

Adolescent↗

Nutrient oxidation during moderately intense exercise in obese prepubertal boys.

The aim of this study was to measure the nutrient oxidation rate during walking at different speeds and to identify the walking speed associated with the highest fat oxidation rate in a group of prepubertal boys with different levels of adiposity. Twenty-four prepubertal boys (age, 10 +/- 1 yr) with different levels of overweight (body mass index, 25.5 +/- 3.5 kg/m(2); sd score of body mass index, 3.4 +/- 1.1) performed a treadmill test. We measured by indirect calorimetry their respiratory exchange while they walked at speeds of 4, 5, and 6 km/h as well as their maximal oxygen uptake. The fat oxidation rate did not change significantly when the speed of walking was increased, whereas carbohydrate oxidation increased significantly (P < 0.001). A significant (P < 0.05) association was found between adiposity (percent fat mass) and the fat to carbohydrate oxidation ratio during walking at 4, 5, and 6 km/h (r = 0.37, r = 0.37, and r = 0.36, respectively), adjusting for exercise intensity (maximal oxygen uptake, percentage). The lowest fat to carbohydrate oxidation ratio, i.e. the highest fat oxidation/carbohydrate oxidation rate, was found at a walking speed of 4 km/h. Moderately intense exercise promoted the highest fat to carbohydrate oxidation ratio. Increasing the exercise intensity did not promote fat oxidation. Therefore, walking at a speed of 4 km/h is recommended as practicable exercise for obese boys and, consequently, for the treatment of childhood obesity.

Adipose Tissue↗

Substrate metabolism, nutrient balance and obesity development in children and adolescents: a target for intervention?

Obesity results from the organism's inability to maintain energy balance over a long term. Childhood obesity and its related factors and pathological consequences tend to persist into adulthood. A cluster of factors, including high energy density in the diet (high fat intake), low energy expenditure, and disturbed substrate oxidation, favour the increase in fat mass. Oxidation of three major macronutrients and their roles in the regulation of energy balance, particularly in children and adolescents, are discussed. Total glucose oxidation is not different between obese and lean children; exogenous glucose utilization is higher whereas endogenous glucose utilization is lower in obese compared with lean children. Carbohydrate composition of the diet determines carbohydrate oxidation regardless of fat content of the diet. Both exogenous and endogenous fat oxidation are higher in obese than in lean subjects. The influence of high fat intake on accumulation of fat mass is operative rather over a long term. Several future directions are addressed, such that a combination of increased physical activity and modification in diet composition, in terms of energy density and glycemic index, is recommended for children and adolescents.

Adolescent↗

Waist circumference as a predictor of cardiovascular and metabolic risk factors in obese girls.

OBJECTIVES: (a). to explore the relationship between waist circumference and certain cardiovascular risk factors in a group of girls; and (b). to assess the clinical relevance of waist circumference in identifying girls with higher cardiovascular risk across puberty. SUBJECTS AND METHODS: One-hundred and fifty-five overweight or obese girls aged 5-16 y were recruited. Overweight and obesity were defined on the basis of BMI, according to Cole. RESULTS: : Waist circumference was significantly correlated with plasma insulin (r=0.43; P<0.001), systolic blood pressure (r=0.22; P=0.007) and IR(HOMA) (r=0.40; P<0.001). A multivariate linear correlation analysis showed that, when adjusted for age and Tanner stage, waist circumference was significantly associated with plasma insulin (r(2)=0.23; P<0.01), IR(HOMA) (r(2)=0.17; P<0.02), systolic and diastolic blood pressure (r(2)=0.20; P=0.006 and r(2)=0.32; P<0.001, respectively). A logistic regression analysis, using IR(HOMA) as the dependent variable, showed that waist circumference was a significant independent risk factor of insulin resistance (IR(HOMA)>or=2.6) in this group of girls (OR 1.10; 95% CI 1.03-1.18; P=0.003), independently of their age and Tanner stage. CONCLUSIONS: Waist circumference of these girls was independently associated with certain cardiovascular risk factors, in particular insulin resistance and diastolic blood pressure, independently of age and Tanner stage. Thus suggesting that waist circumference may be reasonably included in clinical practice as a simple tool that may help to identify sub-groups of obese girls at higher metabolic risk across puberty.

Adolescent↗

Body size and early growth in appropriate- and large-for-gestational-age infants.

AIMS: To study weight, length, body composition, sleeping energy expenditure (SEE), and respiratory quotient (RQ) at birth and at 5 mo of age in both adequate-for-gestational-age (AGA) and large-for-gestational-age (LGA) subjects; to compare the changes in body weight and body composition adjusting for gender, age, SEE, RQ and several maternal factors; to investigate the contribution of initial SEE and RQ to changes in body weight and body composition. METHODS: Sixty-nine neonates were recruited among term infants in the University Hospital of Verona, Italy. Forty-nine subjects participated until follow-up. At birth and follow-up, weight and length were measured and arm-fat area and arm-muscle area were calculated from triceps and subscapular skinfolds. SEE and RQ were measured by indirect calorimetry. RESULTS: At birth, weight, length, arm-muscle and arm-fat areas were significantly higher in LGA subjects than in AGA subjects. Weight status, SEE and RQ at birth did not explain the relative weight change after adjusting for gestational weight, placental weight, age at follow-up and gender. Arm-fat area and weight/length ratio at birth were negatively associated with relative changes in body weight after adjusting for the above variables (p < 0.05). CONCLUSION: Early growth from birth to 5 mo of life is significantly affected by body size and adiposity at birth. Fatter newborns had a slower growth rate than thinner newborns.

Basal Metabolism↗

[Definition of obesity in childhood: criteria and limits].

A rigorous scientific definition of obesity in childhood is not yet available: in fact, there is not agreement among researchers on the adiposity index to use and on the best cut-off to define overweight and obesity. In this review, the reference methods for the diagnosis of childhood obesity in the clinical practice in Italy are reported. All the statements are based on evidences of the literature and obtained the consensus of the pediatricians of the Study Group on Obesity of the Italian Society of Pediatric Diabetology and Endocrinology. Obesity is caused by an excess of body fat. The methods more frequently used to measure body fat are the measure of subcutaneous skinfold thickness, bioimpedence assessment and DXA. The measure of skinfolds is preferable in the clinical setting because it is easy to use and cheap, although reproducibility is modest. Triceps skinfold is commonly used to define obesity: children with triceps higher than the 85(th) centile for age and gender, using Tanner's tables, are obese. An estimation of fat mass obtained, for instance, with skinfolds is always suggested in addition to the measure of weight and height. It is possible to define a child as obese calculating the ratio between weight (kg) and height squared (m). This ratio is an index, called body mass index (BMI), which is strictly associated to the level of adiposity in children, reproducible and valid. The BMI was recently proposed as the reference index for the diagnosis of childhood obesity at the international level. The use of the centiles of BMI may offer useful information on the changes of weight excess, simplifying the follow-up of the patient and the sensitivity to treatment. The cut-off limits of BMI to define overweight or obesity are still debated. However, in agreement with Cole et al., the choice to use the BMI cut-offs centiles passing through the adult BMI cut-off of 30, is reasonable. However, it is always preferable to use population specific BMI reference tables.

Adolescent↗

[Diagnosis and differential diagnosis of obesity in childhood].

About 2-3% of "essential" obesity in pediatric age is of endocrine or genetic origin (secondary obesity). The clinical picture of these forms is almost always characteristic; however, some patients affected by secondary obesity can present with an incomplete or atypical aspect. The aim of this review is to offer the pediatrician useful indications to correctly diagnose children presenting with obesity. It is advisable to make a careful anamnesis and an accurate medical examination in order to ascertain the causes that may have contributed to the onset and increase of weight gain. Obesity associated with mental retardation, short stature, cryptorchidism or hypogonadism, dysmorphism with facies sui generis, ocular or uditive defects, might suggest a genetic origin. Prader-Willi syndrome is the most frequent of these disorders and it is due to an alteration of chromosome 15 of paternal origin. These patients have to undergo the methilation test (easy and low cost genetic research) in order to confirm the clinical suspicion. Endocrine alterations, that play a pathogenic role in pediatric obesity (i.e., hypothyroidism, hypothalamic-pituitary diseases, pseudohypoparathyroidism), are rare. Early treatment of hormonal dysfunction generally allows to ameliorate or normalize the weight gain. In absence of specific clinical manifestations or lacking a significant clinical history, no endocrine test is required. The family pediatrician should require some routine hematochimic tests, in order to evaluate the possible presence of hyperlipidemia and/or glycometabolic complications. An oral glucose tolerance test is necessary only for patients presenting with serious weight gain, acanthosis nigricans, and for those with a family history of diabetes. In the most serious cases, a careful cardiovascular and respiratory evaluation should be performed. Children with a suspicion of secondary obesity have to be submitted to an endocrinologist, for a correct diagnosis and a specific treatment. However, the family pediatrician's assistance is essential during the follow-up period, in order to assure the patient and his/her family a proper assistance.

Adolescent↗

[Treatment of childhood obesity].

This article provides current guidelines on the treatment and prevention of childhood obesity. Since factors involved in obesity change with age, the therapeutic approach in pre-school children will be different from pupils and adolescents. The treatment will also be modulated on the basis of weight excess, weight gain velocity and complications. The main goal of the treatment should be to encourage the child and his family to have healthy lifestyle. Families who are not ready for change might benefit from counselling to improve motivation before starting treatment. A detailed alimentary and behavioural history is the start point of the treatment. The strategy of the intervention is to induce changes at three levels: 1) attitudes of parents; 2) physical activity; 3) energy intake. The treatment of the adolescents should take into account the pubertal changes and the psychological aspects of this peculiar period of life. Obesity is a chronic disease and its treatment needs long-life follow-up. The long-term results of the obesity treatment are often disappointing and we have to consider consistent prevention programs for better results.

Adolescent↗

Neonatal hyperinsulinemic hypoglycemia. Two case reports.

Neonatal hyperinsulinemic hypoglycemia must be suddenly and appropriately diagnosed and treated to prevent any further neurological dysfunction and damage. Therefore, we report two cases of our observation. Case 1: birth asphyxia, episodes of hypoglycemia after delivery, hyperinsulinism and reduced IGFBP1 blood concentration. Clinical and laboratory pictures resolved progressively after 8 days of life, perfusions were stopped and the neonate began to suck breast milk. Case 2: negative familial and perinatal history. On the 3rd day of life he developed cyanosis, hypotonia, tremors and hypoglycemia. He was discharged with a diagnosis of cerebral injury and neonatal hypoglycemia. At 1 year of life the child showed progressive and heavy neurological damage. The RMN of the brain showed: enlarged ventricles and liquor spaces around the brain, particularly in the frontal region. Hyperinsulinism was diagnosed in our Clinic. He began pharmacological treatment with Diazoxide that permitted euglycemia. The ammonium was normal and excluded glutamate dehydrogenase deficiency (mutation of GLUD1 gene); Diazoxide responsivity excluded mutations of SUR1 and KIR6.3 genes. At 9 years of life he showed motor and language retardation. Newborns with perinatal history of asphyxia may develop transient hyperinsulinism with absent neurological consequences. Persistent hypoglycemic or epileptic-like episodes, in particular on waking up, after meals or during banal infections, must be studied to reveal hyperinsulinism.

Asphyxia Neonatorum↗

Waist circumference and cardiovascular risk factors in prepubertal children.

OBJECTIVE: Intra-abdominal fat has been identified as being the most clinically relevant type of fat in humans. Therefore, an assessment of body-fat distribution could possibly identify subjects with the highest risk of adverse lipid profile and hypertension. Few data on the relationship between body-fat distribution and cardiovascular risk factors are available in children, especially before puberty. RESEARCH METHODS AND PROCEDURES: This cross-sectional study was undertaken to explore the relationship between anthropometric variables, lipid concentrations, and blood pressure (BP) in a sample of 818 prepubertal children (ages 3 to 11 years) and to assess the clinical relevance of waist circumference in identifying prepubertal children with higher cardiovascular risk. Height, weight, triceps and subscapular skinfolds, waist circumference, and BP were measured. Plasma levels for triacylglycerol, total cholesterol, high-density lipoprotein (HDL) cholesterol, low-density lipoprotein cholesterol, apolipoprotein A1 (ApoA1), and apolipoprotein B (ApoB) were determined. RESULTS: Females were fatter than males (5.8 [3.5] vs. 4.8 [3.3] kg of fat mass; p < 0.01). Males had higher HDL cholesterol and ApoA1/ApoB plasma concentrations than females (p < 0.001 and p < 0.01, respectively). Waist circumference had a higher correlation with systolic and diastolic BP (r = 0.40 and 0.29, respectively; p < 0.001) than triceps (r = 0.35 and 0.21, respectively; p < 0.001) and subscapular (r = 0.28 and 0.16, respectively; p < 0.001) skinfolds and relative body weight (0.33 and 0.23, respectively; p < 0.001). Multivariate linear model analysis showed that ApoA1/ApoB, HDL cholesterol, total cholesterol/HDL cholesterol, and systolic as well as diastolic BP were significantly associated with waist circumference and triceps and subscapular skinfolds, independently of age, gender, and body mass index. DISCUSSION: Waist circumference as well as subscapular and triceps skinfolds may be helpful parameters in identifying prepubertal children with an adverse blood-lipids profile and hypertension. However, waist circumference, which is easy to measure and more easily reproducible than skinfolds, may be considered in clinical practice. Children with a waist circumference greater than the 90th percentile are more likely to have multiple risk factors than children with a waist circumference that is less than or equal to the 90th percentile.

Abdomen↗

Does waist circumference predict fat gain in children?

OBJECTIVE: The aim of this study was to identify in a group of 8-y-old prepubertal children the anthropometric parameter with the highest prediction power of overweight, measured 4 y later. SUBJECTS: One-hundred and twelve Caucasian children (54 males, 58 females), aged 8.7+/-0.9 y, were studied. RESULTS: An analysis of the association between relative body mass index (BMI) at follow-up (%) and some indexes of adiposity like relative BMI (%), waist circumference, subscapular and triceps skinfolds, the sum of four skinfolds and percentage fat mass measured at baseline, showed that relative BMI (relBMI) at baseline had the highest association with relBMI at follow-up (r=0.77; P<0.001); waist circumference had a slightly lower significant association with relBMI at follow-up (r=0.74; P<0.001). In a multiple regression analysis, waist circumference (adjusted for age) accounted for approximately 64% of the variation of relBMI at follow-up (P<0.001). RelBMI measured at baseline accounted for approximately 59% of the variation of relBMI at follow-up (P<0.001). Multiple logistic regression analysis included waist circumference, adjusted for age, mother's BMI and relBMI measured at baseline as independent variables in the final equation. In particular, each centimeter increase of waist circumference at the age of 8 y doubled the risk of having a relBMI greater than 120% at the age of 12 y. CONCLUSION: The results of this study, the first which has approached this investigation in children, showed that waist circumference measured at the age of 8 y, which is simple to perform and easy to reproduce, may be a promising index to assess adiposity as well as to predict overweight at puberty.

Adipose Tissue↗

Long-term effects of childhood obesity on morbidity and mortality.

Obesity tracks from childhood into adulthood, and the persistence of obesity rises with age among obese children. Early onset obesity was suggested as a risk factor for morbidity and mortality later in life. In both sexes, rates of diabetes, coronary heart disease, atherosclerosis, hip fracture and gout were increased in those who were overweight as adolescents. Especially in females, obesity at late adolescence was associated with several and relevant psychosocial consequences in adulthood. Finally, a higher mortality risk for all causes of death, especially atherosclerotic cerebrovascular disease and colorectal cancer, was demonstrated in males but not in females who were overweight during high school years. Although the persistence of excess adiposity from childhood to adulthood is a morbidity risk factor, it is not known if total body fat or body fat distribution is the main factor responsible. In particular, a specific role for the intra-abdominal adipose tissue (IAAT) in childhood, independently from that of total body fat, on morbidity risk in adulthood was not demonstrated yet. The association between childhood obesity and adult morbidity and mortality strongly suggests that a more effective prevention and treatment of childhood obesity should be pursued.

Aging↗

Meal-induced thermogenesis and obesity: is a fat meal a risk factor for fat gain in children?

Diet composition, in particular fat intake, has been suggested to be a risk factor for obesity in humans. Several mechanisms may contribute to explain the impact of fat intake on fat gain. One factor may be the low thermogenesis induced by a mixed meal rich in fat. In a group of 11 girls (10.1 +/- 0.3 yr), 6 obese (body mass index, 25.6 +/- 0.6 kg/m(2)), and 5 nonobese (body mass index, 19 +/- 1.6 kg/m(2)), we tested the hypothesis that a mixed meal rich in fat can elicit energy saving compared with an isocaloric and isoproteic meal rich in carbohydrate. The postabsorptive resting energy expenditure and the thermic effect of a meal (TEM) after a low fat (LF; 20% fat, 68% carbohydrate, and 12% protein) or an isocaloric (2500 kJ or 600 Cal) and isoproteic high fat (HF; 48% fat, 40% carbohydrate, and 12% protein) meal were measured by indirect calorimetry. Each girl repeated the test with a different, randomly assigned menu (HF or LF) 1 week after the first test. TEM, expressed as a percentage of energy intake was significantly higher after a LF meal than after a HF meal (6.5 +/- 0.7% vs. 4.3 +/- 0.4%; P < 0.01). The postprandial respiratory quotient (RQ) was significantly higher after a LF meal than after a HF meal (0.86 +/- 0.013 vs. 0.83 +/- 0.014; P < 0.001). The HF low carbohydrate meal induced a significantly lower increase in carbohydrate oxidation than the LF meal (20.3 +/- 6.2 vs. 61.3 +/- 7.8 mg/min; P < 0.001). On the contrary, fat oxidation was significantly higher after a HF meal than after a LF meal (-1.3 +/- 2.4 vs. -15.1 +/- 3.6 mg/min; P < 0.01). However, the postprandial fat storage was 8-fold higher after a HF meal than after a LF meal (17.2 +/- 1.7 vs. 1.9 +/- 1.8 g; P < 0.001). These results suggest that a high fat meal is able to induce lower thermogenesis and a higher positive fat balance than an isocaloric and isoproteic low fat meal. Therefore, diet composition per se must be taken into account among the various risk factors that induce obesity in children.

Adipose Tissue↗

Aetiology of overweight and obesity in children and adolescents.

UNLABELLED: The epidemic diffusion of obesity in industrialised countries has promoted research on the aetiopathogenesis of this disorder. The purpose of this review is to focus mainly on the contribution that European research has made to this field. Available evidence suggests that obesity results from multiple interactions between genes and environment. Parents obesity is the most important risk factor for childhood obesity. Twin, adoption, and family studies indicated that inheritance is able to account for 25% to 40% of inter-individual difference in adiposity. Single gene defects leading to obesity have been discovered in animals and, in some cases, confirmed in humans as congenital leptin deficiency or congenital leptin receptor deficiency. However, in most cases, genes involved in weight gain do not directly cause obesity but they increase the susceptibility to fat gain in subjects exposed to a specific environment. Both genetic and environmental factors promote a positive energy balance which cause obesity. The relative inefficiency of self-adapting energy intake to energy requirements is responsible for fat gain in predisposed individuals. The role of the environment in the development of obesity is suggested by the rapid increase of the prevalence of obesity accompanying the rapid changes in the lifestyle of the population in the second half of this century. Early experiences with food, feeding practices and family food choices affect children's nutritional habits. In particular, the parents are responsible for food availability and accessibility in the home and they affect food preferences of their children. Diet composition, in particular fat intake, influences the development of obesity. The high energy density and palatability of fatty foods as well as their less satiating properties promotes food consumption. TV viewing, an inactivity and food intake promoter, was identified as a relevant risk factor for obesity in children. Sedentarity, i.e. a low physical activity level, is accompanied by a low fat oxidation rate in muscle and a low fat oxidation rate is a risk factor of fat gain or fat re-gain after weight loss. CONCLUSION: Further research is needed to identify new risk factors of childhood obesity, both in the genetic and environmental areas, which may help to develop more effective strategies for the prevention and treatment of obesity.

Adolescent↗