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Purpose: Acute kidney injury (AKI) requiring continuous kidney replacement therapy (CKRT) has been hypothesized to increase the risk of developing intensive care unit-associated weakness (ICU-AW), but prospective data are lacking.
Materials And Methods: This prospective observational study evaluated critically ill adults with AKI requiring CKRT at two U.S. academic hospitals. Using ultrasonography (US), we quantified changes in rectus femoris (RF) muscle mass and quality in the first week after CKRT initiation. At hospital discharge, we assessed for ICU-AW, physical function, and frailty.
Results: Twenty-three patients with median age 56 [IQR 47-60] years, BMI 29 [26-36] kg/m, and Charlson Comorbidity Index 3 [1.5-5] were enrolled. The baseline Sequential Organ Failure Assessment (SOFA) score was 9 [7.5-11.5] and CKRT duration was 4 [1-7] days. Six (26 %) patients died in the ICU and one (4 %) transitioned to comfort measures before study completion. Substantial muscle wasting occurred between Day 1 and Day 7: RF muscle thickness (mT) decreased by 10 % [3 %-20 %]; RF cross-sectional area (CSA) decreased by 19 % [12 %-22 %]; and echo intensity (EI) increased (implying worse muscle quality) by 14 % [5 %-25 %]. A significant effect of time within subjects was observed for all three ultrasound measures (CSA: F = 66.2, p < 0.001; mT: F = 27.1, p < 0.001; EI: F = 22.5, p < 0.001). At hospital discharge, 67 % of survivors (n = 10/15) met criteria for ICU-AW.
Conclusions: Patients with AKI requiring CKRT experienced significant muscle wasting in the first week following CKRT initiation and had high rate of ICU-AW at hospital discharge.
Trial Registration: NCT05287204, Registered 20 October 2021.
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http://dx.doi.org/10.1016/j.jcrc.2025.155142 | DOI Listing |
J Intensive Care Med
September 2025
Medical Intensive Care Unit, 108 Military Central Hospital, Hanoi, Vietnam.
Background: Bedside ultrasound is increasingly utilized to assess muscle mass in critically ill patients, providing a noninvasive and real-time tool for early risk stratification. Muscle wasting is known to be associated with adverse outcomes in septic shock, but its prognostic value using ultrasound in this population remains underexplored. This study aimed to investigate the association between changes in rectus femoris cross-sectional area (CSA), assessed by bedside ultrasound, and 28-day mortality in patients with septic shock.
View Article and Find Full Text PDFCancer cachexia is a highly debilitating clinical syndrome of involuntary body mass loss featuring profound muscle wasting leading to high mortality. Notably, cardiac wasting is prominent in cancer patients and cancer survivors. Cachexia studies present significant challenges due to the absence of human models and mainly short-term animal studies.
View Article and Find Full Text PDFMater Today Bio
October 2025
Department of Sports Medicine, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai Jiao Tong University, Shanghai, 200080, China.
Unlabelled: Disuse muscle atrophy (DMA) is characterized by progressive loss of muscle mass and strength, often accompanied by inflammation and macrophage imbalance. Here, we introduce hydrogenated silicene nanosheets (H-silicene) as a novel nanotherapeutic strategy to mitigate DMA through modulating macrophage polarization. H-silicene exhibited good biocompatibility and sustained hydrogen release.
View Article and Find Full Text PDFFront Public Health
September 2025
Changzhou University, Changzhou, Jiangsu, China.
Objective: Insulin-like growth factor-1 (IGF-1) is thought to play an important role in regulating skeletal muscle mass and function, with its decline potentially linked to age-related frailty and sarcopenia. Given the limitations of pharmacological and nutritional interventions, exercise may serve as a potential non-pharmacological strategy to modulate IGF-1 levels. The purpose of this study is to systematically evaluates the effects of exercise interventions on serum IGF-1 levels in older adults with frailty and/or sarcopenia using a meta-analysis approach.
View Article and Find Full Text PDFFront Biosci (Landmark Ed)
August 2025
Division of Biochemistry and Molecular Biology, Siberian State Medical University, Ministry of Health of the Russian Federation, 634050 Tomsk, Russia.
Background: Sarcopenia is a complex, multifactorial condition characterized by progressive loss of muscle mass, strength, and function. Despite growing awareness, the early diagnosis and pathophysiological characterization of this condition remain challenging due to the lack of integrative biomarkers.
Objective: This study aimed to conduct a comprehensive multilevel profiling of clinical parameters, immune cell phenotypes, extracellular vesicle (EV) signatures, and biochemical markers to elucidate biological gradients associated with different stages of sarcopenia.