scholarly journals Cross-Sectional Study of Soluble Intercellular Adhesion Molecule-1 and Cardiovascular Risk Factors in Apparently Healthy Men

1999 ◽  
Vol 19 (7) ◽  
pp. 1595-1599 ◽  
Author(s):  
Luis E. P. Rohde ◽  
Charles H. Hennekens ◽  
Paul M. Ridker
2010 ◽  
Vol 3 (1) ◽  
pp. 11 ◽  
Author(s):  
Mahmoud U Sani ◽  
Kolawole W Wahab ◽  
Bashir O Yusuf ◽  
Maruf Gbadamosi ◽  
Omolara V Johnson ◽  
...  

2012 ◽  
Vol 3 (3) ◽  
pp. 1-11 ◽  
Author(s):  
Macide Artac ◽  
Andrew R H Dalton ◽  
Azeem Majeed ◽  
Kit Huckvale ◽  
Josip Car ◽  
...  

Thorax ◽  
2014 ◽  
Vol 69 (Suppl 2) ◽  
pp. A11-A12 ◽  
Author(s):  
V. Navaratnam ◽  
E. Millett ◽  
J. Hurst ◽  
S. Thomas ◽  
L. Smeeth ◽  
...  

2020 ◽  
Author(s):  
Juan Reyes-Barrera ◽  
Victor H. Sainz-Escárrega ◽  
Aida X. Medina-Urritia ◽  
Esteban Jorge-Galarza ◽  
Horacio Osorio-Alonso ◽  
...  

Abstract BackgroundCompared to body mass index (BMI), waist circumference (WC), and adiposity measurements, adipose tissue morpho-functionality evaluations are more consistent predictors of cardiometabolic abnormalities. However, these evaluations require determination of adipokines and other non-routine biochemical parameters, which is not feasible in clinical practice. The present study establishes dysfunctional adiposity index (DAI) as a simple, accessible, and reliable marker of early adipocytes morpho-functional abnormalities and cardiometabolic diseases.MethodsTo establish the DAI constant parameters, 340 subjects (134 males and 206 females) without cardiovascular risk factors were selected from a cross-sectional study. Then, DAI was calculated in 36 healthy subjects who underwent subcutaneous adipose tissue biopsy, for whom adipocytes number and size, body composition, circulating adipokines, glucose, insulin, and lipids were also determined. The correlation of DAI with adipocyte morphology (size/number of adipocytes) and functionality (adiponectin/leptin ratio) was analyzed. The receiver operating characteristic curve was used to define the optimal DAI cut-off point to identify metabolic abnormalities. Finally, the independent association of DAI with cardiometabolic abnormalities was determined in 1418 subjects from the cross-sectional study through multivariate analyses.ResultsThe constant parameters to calculate the DAI were [WC/[22.79+[2.68*BMI]]]*[triglycerides (TG, mmol/L)/1.37]*[1.19/high density lipoprotein-cholesterol (HDL-C, mmol/L)] for males, and [WC/[24.02+[2.37*BMI]]]*[TG(mmol/L)/1.32]*[1.43/HDL-C(mmol/L)] for females. In subjects underwent biopsy, DAI correlated with adipocytes mean area (r=0.358; p=0.032), adipocyte number (r=-0.381; p=0.024), adiponectin/leptin ratio (r=-0.483; p=0.003), and systemic inflammation markers. Compared to BMI, WC, and visceral fat, DAI was the only determination associated with insulin resistance (area under the curve: 0.743; p = 0.017). In the cross-sectional study, DAI ≥1.065 was independently associated with diabetes (OR: 1.96; 95%CI: 1.36-2.84), non-alcoholic fatty liver disease (OR: 2.57; 95%CI: 1.98-3.33), subclinical atherosclerosis (OR: 1.74; 95%CI: 1.02-2.94), and hypertension (OR: 1.44; 95%CI: 1.10-1.88).ConclusionsThe present study establishes the constant parameters to calculate the DAI and highlights that a DAI ≥ 1.065 is associated with early cardiometabolic abnormalities independently of adiposity and other risk factors. Since DAI is calculated using accessible parameters routinely used in the clinic, this indicator can be easily incorporated in clinical practice for the early identification of adipose tissue abnormalities in apparently healthy subjects.


2020 ◽  
Author(s):  
Maryam Sabbari ◽  
Atieh Mirzababaei ◽  
Farideh Shiraseb ◽  
Khadijeh Mirzaei

Abstract Objective: No studies have examined the relationship between recommended food score (RFS), none recommended food score (NRFS) and cardiovascular risk factors. This study was conducted to evaluate the association of RFS and NRFS with cardiovascular risk factors in overweight and obese women.Methods: This cross-sectional study was performed on 379 overweight and obese (BMI ≥25 kg/m2) women aged 18-48 years. Anthropometric measurements and body composition analysis were assessed in all participants. Dietary intake was assessed by a valid and reliable food frequency questionnaire (FFQ) containing 147 items and RFS and NRFS calculated. Biochemical assessments including TC, HDL, LDL, TG, FBS, insulin, HOMA-IR and hs-CRP were quantified by ELISA.Results: The mean age and BMI of participants were 36.73±9.21 (y) and 31.17±4.22 (kg/m²) respectively. Binary logistic analysis showed that participants in the highest quartile of the RFS compared to the lowest quartile had 82% lower risk for Hypertriglyceridemia [OR=0.18, 95%CI=0.06-0.53, P=0.002] and 91% lower risk for abdominal obesity [OR=0.09, 95%CI=0.008-1.04, P=0.05]. in addition, Participants who were in the highest quartile of the RFS compared to the lowest quartile had lower HOMA-IR [OR=0.29, 95%CI=0.08-1.00, P=0.05]. subjects with high adherence to the NRFS had lower HDL [OR=2.11, 95%CI=1.08-4.12, P=0.02] and higher risk for Hypertriglyceridemia [OR=2.95, 95%CI=1.47-5.94, P=0.002] compared to low adherence. Conclusions: There was an inverse significant association between adherence to RFS and risk of Hypertriglyceridemia, insulin resistance, and abdominal obesity. There was a significant association between NRFS and Hypertriglyceridemia, and also we found an inverse relationship between NRFS and HDL.


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