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1.
Nutr Hosp ; 26(5): 1125-9, 2011.
Article in English | MEDLINE | ID: mdl-22072363

ABSTRACT

AIM: To correlate the sagittal abdominal diameter (SAD) and waist circumference (WC) with metabolic syndrome-associated abnormalities in adults. METHODS: This cross-sectional study included onehundred twelve adults (M=27, F=85) aging 54.0±11.2 yrs and average body mass index (BMI) of 30.5±9.0 kg/m². The assessment included blood pressure, plasma and anthropometric measurements. RESULTS: In both men and female, SAD and WC were associated positively with body fat% (r=0.53 vs r=0.55), uric acid (r=0.45 vs r=0.45), us-PCR (r=0.50 vs r=0.44), insulin (r=0.89 vs r=0.75), insulin resistance HOMA-IR (r=0.86 vs r=0.65), LDL-ox (r=0.51 vs r=0.28), GGT (r=0.70 vs r=0.61), and diastolic blood pressure (r=0.35 vs r=0.33), and negatively with insulin sensibility QUICKI (r=-0.89 vs r=-0.82) and total cholesterol/TG ratio (r=-0.40 vs r=-0.22). Glycemia, TG, and HDL-c were associated significantly only with SAD (r=0.31; r = 39, r=-0.43, respectively). CONCLUSION: Though the SAD and WC were associated with numerous metabolic abnormalities, only SAD correlated with dyslipidemia (TG and HDL-c) and hyperglycemia (glycemia).


Subject(s)
Abdomen/anatomy & histology , Blood Glucose/metabolism , Cholesterol, HDL/blood , Overweight/blood , Overweight/pathology , Triglycerides/blood , Waist Circumference/physiology , Aged , Anthropometry , Blood Chemical Analysis , Body Mass Index , Cross-Sectional Studies , Female , Humans , Insulin Resistance/physiology , Male , Middle Aged
2.
Dev Biol ; 121(2): 417-22, 1987 Jun.
Article in English | MEDLINE | ID: mdl-3582734

ABSTRACT

The syrinx, the vocal organ in birds, shows sexual dimorphism in the duck, Anas platyrhynchos. At the cellular level, to examine the role of estrogen in sexually dimorphic and laterally asymmetric development of duck syrinx, cells dissociated from the right and left halves of sexually monomorphic and primitive masculine syrinxes from 10 2/3-day embryos of male and female ducks were cultured by the micromass culture method, with or without estrogen. In the absence of estrogen, primary cell cultures from either side of male syrinx revealed identical abilities in both cell proliferation and chondrogenesis. In the female cell cultures, the right- and left-side cells proliferated equally but the right-side cells accumulated a larger amount of sulfated proteoglycans than the left-side cells did. Both proliferation and chondrogenesis in the male cell cultures were more active than those in the female cell cultures. Estradiol inhibited significantly cell proliferation as well as chondrogenesis in cell cultures from either side of female syrinx. Cultures from right-side cells of male syrinx were less inhibited by estradiol in cell proliferation and especially in chondrogenesis than the other three cultures. Generally, in both sexes the left-side cells of syrinx were more responsive to estrogen than the right-side cells in diminishing proliferation and chondrogenesis. The present results suggest that estrogen inhibits both cell proliferation and chondrogenesis in the female syrinx and that this process may contribute to the development of sexual dimorphism in the duck syrinx.


Subject(s)
Cartilage/embryology , Ducks/embryology , Estradiol/pharmacology , Sex Characteristics , Vocal Cords/embryology , Animals , Cartilage/cytology , Cartilage/drug effects , Cell Division/drug effects , Cells, Cultured , Female , Kinetics , Male , Vocal Cords/cytology , Vocal Cords/drug effects
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