Background: The use of nutrition-screening tools in cirrhotic patients is not systematized. Recently, specific tools have been proposed for patients with cirrhosis, but their diagnostic capabilities have been scarcely studied.
Methods: This was a prospective study that includes outpatients with liver cirrhosis undergoing follow-up in the hepatology consultations of a tertiary-care university hospital. A trained gastroenterologist applied the screening tools: Liver Disease Universal Screening Tool (LDUST), Royal Free Hospital-Nutrition Prioritizing Tool (RFH-NPT), and Mini Nutritional Assessment-Short Form (MNA-SF). Subsequently, the diagnosis of malnutrition was made according to Global Leadership Initiative for Malnutrition (GLIM) criteria by an endocrinologist, who was blind to the results of the screening tools.
Results: Sixty-three patients (38.1% women, mean age 63.1 ± 9.9 years) with cirrhosis (60.3% Child-Pugh A, 34.9% Child-Pugh B, and 4.8% Child-Pugh C) were evaluated. The prevalence of malnutrition was 38.1% (15.9% moderate, 22.2% severe). Advanced stages of cirrhosis were associated with a higher prevalence of malnutrition (P = .021). MNA-SF was the most accurate screening tool, being superior to RFH-NPT and LDUST. It presented better sensitivity than RFH-NPT (88% [0.68-0.97] vs 67% [0.45-0.84], P = .031) and better specificity than both LDUST (97% [0.87-0.99] vs 62% [0.45-0.77], P < .001) and RFH-NPT (97% [0.87-0.99] vs 82% [0.67-0.93], P = .016).
Conclusions: According to the GLIM criteria, malnutrition affected 38.1% of patients with cirrhosis, being severe in 22% of the patients. MNA-SF is the most accurate screening test, superior even to tools specifically designed for cirrhotic patients (LDUST).
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Sci Rep
December 2024
Research Centre for Biomedical Engineering (RCBE), School of Science and Technology, City, University of London, Northampton Square, London, EC1V 0HB, UK.
Traditional methods for management of mental illnesses in the post-pandemic setting can be inaccessible for many individuals due to a multitude of reasons, including financial stresses and anxieties surrounding face-to-face interventions. The use of a point-of-care tool for self-management of stress levels and mental health status is the natural trajectory towards creating solutions for one of the primary contributors to the global burden of disease. Notably, cortisol is the main stress hormone and a key logical indicator of hypothalamic-pituitary adrenal (HPA) axis activity that governs the activation of the human stress system.
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December 2024
BAOBAB Unit, NeuroSpin center, CEA, Université Paris-Saclay, Gif-sur-Yvette, France.
Decoding states of consciousness from brain activity is a central challenge in neuroscience. Dynamic functional connectivity (dFC) allows the study of short-term temporal changes in functional connectivity (FC) between distributed brain areas. By clustering dFC matrices from resting-state fMRI, we previously described "brain patterns" that underlie different functional configurations of the brain at rest.
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December 2024
Institute of Pathology, Universitätsklinikum Erlangen, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany.
Pathogenic activating mutations in the fibroblast growth factor receptor 3 (FGFR3) drive disease maintenance and progression in urothelial cancer. 10-15% of muscle-invasive and metastatic urothelial cancer (MIBC/mUC) are FGFR3-mutant. Selective targeting of FGFR3 hotspot mutations with tyrosine kinase inhibitors (e.
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December 2024
College of Engineering and Applied Sciences, Jiangsu Key Laboratory of Artificial Functional Materials, Nanjing University, Nanjing, China.
Early disease diagnosis hinges on the sensitive detection of signaling molecules. Among these, hydrogen sulfide (HS) has emerged as a critical player in cardiovascular and nervous system signaling. On-chip immunoassays, particularly nanoarray-based interfacial detection, offer promising avenues for ultra-sensitive analysis due to their confined reaction volumes and precise signal localization.
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December 2024
Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, Ontario, M5G 1X5, Canada.
Highly mutable pathogens generate viral diversity that impacts virulence, transmissibility, treatment, and thwarts acquired immunity. We previously described C19-SPAR-Seq, a high-throughput, next-generation sequencing platform to detect SARS-CoV-2 that we here deployed to systematically profile variant dynamics of SARS-CoV-2 for over 3 years in a large, North American urban environment (Toronto, Canada). Sequencing of the ACE2 receptor binding motif and polybasic furin cleavage site of the Spike gene in over 70,000 patients revealed that population sweeps of canonical variants of concern (VOCs) occurred in repeating wavelets.
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