Both obesity and the metabolic syndrome are risk factors for type 2 diabetes and cardiovascular disease. Identification of novel biomarkers are needed to distinguish metabolic syndrome from equally obese individuals in order to direct them to early interventions that reduce their risk of developing further health problems. We utilized mass spectrometry-based targeted metabolic profiling of 221 metabolites to evaluate the associations between metabolite profiles and established metabolic syndrome criteria (i.e. elevated waist circumference, hypertension, elevated fasting glucose, elevated triglycerides, and low high-density lipoprotein cholesterol) in plasma samples from obese men ( n = 29; BMI = 35.5 ± 5.2 kg/m) and women ( n = 40; 34.9 ± 6.7 kg/m), of which 26 met the criteria for metabolic syndrome (17 men and 9 women). Compared to obese individuals without metabolic syndrome, univariate statistical analysis and partial least squares discriminant analysis showed that a specific group of metabolites from multiple metabolic pathways (i.e. purine metabolism, valine, leucine and isoleucine degradation, and tryptophan metabolism) were associated with the presence of metabolic syndrome. Receiver operating characteristic curves generated based on the PLS-DA models showed excellent areas under the curve (0.85 and 0.96, for metabolites only model and enhanced metabolites model, respectively), high specificities (0.86 and 0.93), and good sensitivities (0.71 and 0.91). Moreover, principal component analysis revealed that metabolic profiles can be used to further differentiate metabolic syndrome with 3 versus 4-5 metabolic syndrome criteria. Collectively, these findings support targeted metabolomics approaches to distinguish metabolic syndrome from obesity alone, and to stratify metabolic syndrome status based on the number of criteria met. Impact statement We utilized mass spectrometry-based targeted metabolic profiling of 221 metabolites to evaluate the associations between metabolite profiles and established MetS criteria. To our best knowledge, the findings of this study provide the first evidence that metabolic profiles can be used to differentiate participants with MetS from similarly obese individuals who do not meet established criteria of MetS. Furthermore, the study demonstrated that within MetS participants, their unique metabolic profiles correlated to the number of criteria used for MetS determination. Taken together, this metabolic profiling approach can potentially serve as a novel tool for MetS detection and monitoring, and provide useful metabolic information for future interventions targeting obesity and MetS.
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http://dx.doi.org/10.1177/1535370217694098 | DOI Listing |
Nutr Hosp
March 2025
Facultad de Medicina. Universidad de Castilla-La Mancha.
Introduction: currently there are changes in lifestyle that have been modifying the nutritional culture, moving away from the Mediterranean diet (DMed) and acquiring a more sedentary lifestyle, a fact that has contributed to a significant increase in risk factors. (CVRF) such as obesity and type 2 diabetes mellitus (DM2), and consequently to a global increase in metabolic syndrome (MS) and cardiovascular diseases (CVD), which in the 21st century reinforces being the first cause of morbidity and mortality To reduce this pandemic, a multidisciplinary approach is required focused on the application of primary and secondary prevention strategies for modifiable CVRFs, focused on nutritional promotion and education through the promotion of a healthier lifestyle and diet from childhood, as the one that encompasses the MedD. This dietary pattern, together with physical exercise, has been shown to contribute to the primary and secondary prevention of DM2 and coexisting CVRF.
View Article and Find Full Text PDFFront Cardiovasc Med
February 2025
The Affiliated Suzhou Hospital of Nanjing Medical University, Suzhou Municipal Hospital, Suzhou, Jiangsu, China.
Objective: Estimated glucose disposal rate (eGDR) is a reliable marker of insulin resistance (IR), which has been proven to be strongly linked to cardiovascular and renal diseases. However, the link between eGDR and the occurrence of cardiovascular disease (CVD) in individuals exhibiting Cardiovascular-Kidney-Metabolic (CKM) syndrome stages 0-3 remains ambiguous.
Methods: The data employed in this investigation was procured from the China Health and Retirement Longitudinal Study (CHARLS).
Oman Med J
September 2024
Department of Biology, Shiraz University, Shiraz, Iran.
Cureus
February 2025
Internal Medicine, Jawaharlal Nehru Medical College, Datta Meghe Institute of Higher Education and Research, Wardha, IND.
Background Obesity is a risk factor for metabolic syndrome, which is a combination of metabolic abnormalities leading to development of cardiovascular abnormalities. Based on factors such as body mass index and metabolic syndrome, specific phenotypes for obesity have been established. These include metabolically healthy obese (MHO), metabolically unhealthy non-obese (MUNO), metabolically unhealthy obese (MUO), and metabolically healthy non-obese (MHNO).
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