Background: Eating frequency (EF) has been associated with generalized obesity.
Aim: We aimed to prospectively investigate potential associations of frequency of eating episodes with regional fat layers.
Design: EF was evaluated at baseline in 115 subjects free of clinically overt cardiovascular disease (54 ± 9.1 years, 70 women) in a prospective, observational study.
Methods: Metabolic parameters known to be associated with dietary factors and anthropometric markers including ultrasound assessment of subcutaneous (Smin) and pre-peritoneal (Pmax) fat and their ratio Smin/Pmax (AFI) were evaluated at baseline and at follow-up, 5 years later.
Results: EF at baseline positively correlated with Pmax, even after adjustment for potential confounders. EF above median was also an independent predictor for Pmax (beta coefficient = -0.192, P = 0.037) and AFI (beta coefficient = 0.199, P = 0.049) at follow up. Multivariable linear mixed models analysis demonstrated that subjects with increased EF presented a lower progression rate of Pmax (beta = -0.452, P = 0.006) and a higher progression rate of AFI (beta = 0.563, P = 0.003) over time, independently of age, sex, progression of BMI, energy intake, smoking and changes in parameters of glucose metabolism.
Conclusions: High EF is associated with lower progression rate of pre-peritoneal fat accumulation. Future interventional studies should further investigate the clinical utility of these findings.
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http://dx.doi.org/10.1093/qjmed/hcx120 | DOI Listing |
Anticancer Agents Med Chem
January 2025
Stem Cell Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Lung cancer is correlated with a high death rate, with approximately 1.8 million mortality cases reported worldwide in 2022. Despite development in the control of lung cancer, most cases are detected at higher stages with short survival rates.
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January 2025
State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization, ANSTEEL Research Institute of Vanadium & Titanium (Iron & Steel), Chengdu 610031, China.
One-dimensional (1D) vanadium-based nanostructures have advantageous properties and are showing emerging critical applications in the fields of catalysis, smart devices, and electrochemical energy storage. We herein timely gave an overview of the 1D vanadium pentoxide (VO)-based nanomaterials for these promising applications, especially regarding the merits of different synthetic methods, structures and properties combined with recent research frontiers in advanced energy storage, including batteries, supercapacitors and like. The high capacity, high rate and flexibility of 1D VO-based nanomaterials endow them with great potential in high-energy-density, high-power energy devices and specific/harsh environments.
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January 2025
Division of Arthritis and Rheumatic Diseases, Oregon Health & Science University, Portland, USA.
Purpose Of Review: The purpose of this review is to highlight high impact clinical research in axial spondyloarthritis that was published between May 2023 and April 2024. These publications were presented at the SPARTAN annual meeting in May 2024.
Recent Findings: Three publications addressed the rate and predictors of radiographic progression in axial spondyloarthritis.
Ir J Med Sci
January 2025
Department of General Surgery, Sorgun State Hospital, Yozgat, 66700, Turkey.
Aim: This study aimed to investigate the effect of the COVID-19 pandemic on the clinical and pathological stages of patients diagnosed with breast cancer.
Method: In this retrospective study, a total of 298 male and female patients over the age of 18 who were diagnosed with breast cancer and who were continuing surgical and oncologic treatment were included.
Results: Of the 298 patients diagnosed with breast cancer, 186 (62.
J Phys Chem A
January 2025
School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, P. R. China.
Microkinetic modeling of heterogeneous catalysis serves as an efficient tool bridging atom-scale first-principles calculations and macroscale industrial reactor simulations. Fundamental understanding of the microkinetic mechanism relies on a combination of experimental and theoretical studies. This Perspective presents an overview of the latest progress of experimental and microkinetic modeling approaches applied to gas-solid catalytic kinetics.
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