Background/purposeChronic obstructive pulmonary disease (COPD), especially in severe forms, is commonly associated with systemic inflammation and balance impairment. The aim of our study was to evaluate the impact on equilibrium of stable and exacerbation (acute exacerbation of COPD [AECOPD]) phases of COPD and to investigate if there is a connection between lower extremity muscle weakness and systemic inflammation.MethodsWe enrolled 41 patients with COPD (22 stable and 19 in AECOPD) and 20 healthy subjects (control group), having no significant differences regarding the anthropometric data. We analyzed the differences in balance tests scores: Falls Efficacy Scale-International (FES-I) questionnaire, Berg Balance Scale (BBS), Timed Up and Go (TUG) test, Single Leg Stance (SLS), 6-minute walking distance (6MWD), isometric knee extension (IKE) between these groups, and also the correlation between these scores and inflammatory biomarkers.ResultsThe presence and severity of COPD was associated with significantly decreased score in IKE (P<0.001), 6MWD (P<0.001), SLS (P<0.001), and BBS (P<0.001), at the same time noting a significant increase in median TUG score across the studied groups (P<0.001). The AECOPD group vs stable group presented a significant increase in high-sensitive C-reactive protein (hs-CRP) levels (10.60 vs 4.01; P=0.003) and decrease in PaO2 (70.1 vs 59.1; P<0.001). We observed that both IKE scores were significantly and positive correlated with all the respiratory volumes. In both COPD groups, we observed that fibrinogen reversely and significantly correlated with the 6MWD, and FES-I questionnaire is correlated positively with TUG test. Hs-CRP correlated reversely with the walking test and SLS test, while correlating positively with TUG test and FES-I questionnaire.ConclusionAccording to this study, COPD in advanced and acute stages is associated with an increased history of falls, systemic inflammation, balance impairment, and lower extremity muscle weakness.
Background: End-stage renal disease patients can be considered as ‘cardiovascular time bombs' due to their tremendous cardiovascular risk. Our study has determined the impact of 3 months of exercise training during dialysis on some of the cardiovascular risk factors (arterial stiffness, body composition and physical performance) in a chronic hemodialyzed population. Methods: The study group (n = 19) and control group (n = 16) of chronic hemodialysis patients from Timisoara, Romania, were enrolled in a prospective cohort study. The intervention - 40 min of exercise training (with non-fistula hand and both lower limbs) during each hemodialysis session for 3 months - was applied only to the study group. The measurements made before and after intervention were aortic pulse wave velocity (PWV), aortic augmentation index, return time and both central and peripheral blood pressure for arterial stiffness evaluation, using the Arteriograph Tensiomed system, body composition by multifrequency bioimpedance and physical performance (Myotest PRO system and hand dynamometer). Results: We found a significant 1-m/s reduction in PWV, a 12-second increase in return time and a 10-mm Hg reduction in both central and systolic blood pressure driven only by the exercise training. Exercise training significantly increased the skeletal muscle mass and the soft lean mass of the study group patients. Physical performance significantly improved in the study group jumping height by 1 cm, lower limbs explosive power by 3 W/kg and non-fistula hand strength prehension by 0.06 bar. Conclusions: Exercise training during dialysis has a positive effect on arterial stiffness, body composition and physical performance of chronic hemodialyzed patients.
Ankylosing spondylitis patients who performed eight weeks of inspiratory muscle training associated to conventional exercise training had an increased chest expansion, a better aerobic capacity, resting pulmonary function and ventilatory efficiency than those who performed conventional exercise training only.
The aim of this study is to obtain and characterize of alginate-based membranes, as well as to choose the most suitable membrane type for the transdermal release of methotrexate. The paper presents the synthesis of four types of membranes based on alginate to which are added other copolymers (Carbopol, Tween, and Polyvinylpyrrolidone) as well as other components with different roles. Membranes and binary mixtures made between the components used in membrane synthesis and methotrexate are analyzed by thermogravimetric techniques, FTIR and UV spectroscopic techniques as well as SEM. The analyses aim to establish the type of membrane most indicated in the use of the controlled release of methotrexate, namely those membranes in which there are no interactions that could inactivate the active substance. Following these studies, it was concluded that membranes obtained from alginate/alginate and Tw can be used for methotrexate release. The membrane obtained from alginate and carbopol was excluded from the beginning because it is not homogeneous. Regarding the AGP-MTX membrane, it presents interactions with the active substance, carboxylate group interactions argued by TGA and FTIR studies, and interactions that occur in aqueous medium.
This study revealed a difference of physical activity in both healthy individuals and COPD patients, in the latter group the decrease being worse and in accordance with the disease severity.
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