Hendrixbarnes0901

Z Iurium Wiki

Verze z 2. 11. 2024, 15:40, kterou vytvořil Hendrixbarnes0901 (diskuse | příspěvky) (Založena nová stránka s textem „9%) subjects attained healthy aging. Compared with subjects not participating in any activity, the multivariable-adjusted ORs (95%CIs) were 1.90 (1.40, 2.5…“)
(rozdíl) ← Starší verze | zobrazit aktuální verzi (rozdíl) | Novější verze → (rozdíl)

9%) subjects attained healthy aging. Compared with subjects not participating in any activity, the multivariable-adjusted ORs (95%CIs) were 1.90 (1.40, 2.59) for those participating in one type, 2.49 (1.84, 3.38) for two types, and 3.06 (2.30, 4.07) for three types (P for trend <.0001). Furthermore, for each type of community activity, a higher frequency of participation was related to higher probability of healthy aging.

Our study suggests that social participation is associated with the promotion of healthy aging, and that the benefits were observed across different types of community activities.

Our study suggests that social participation is associated with the promotion of healthy aging, and that the benefits were observed across different types of community activities.The roles of the resting heart rate (RHR) have been actively investigated and increasingly recognized in recent decades, because of the growing evidence that fast RHR is associated with and predicts the risk of developing cardiovascular and metabolic disorders, as well as all-cause mortality. Long-chain omega-3 polyunsaturated fatty acids (PUFAs) (eg, eicosapentaenoic acid and docosahexaenoic acid) have been shown to have chronotropic effects on heartbeat in both healthy people and patients with various disease conditions. The aims of this review are (1) to briefly summarize the importance of elevated RHR in disease pathogenesis and mortality; (2) to provide an update on the negative chronotropic effect of omega-3 PUFAs on the heart; (3) to highlight how omega-3 PUFAs regulate heart rate through the autonomic nervous system - a central control mechanism; and (4) to highlight how omega-3 PUFAs modulate the trans-membrane ionic channels in cardiomyocytes - a fundamental mechanism of cardiac automaticity. Eicosapentaenoic acid and docosahexaenoic acid are nutrients derived from some aquatic organisms, and they can also be converted from digested oily seeds and nuts of some terrestrial plants in the body. The consumption of omega-3 PUFAs for RHR reduction represents a lifestyle modification for risk factor management and promises nutritional benefits for public health improvement.Diabetic cardiomyopathy (DCM) is a common cardiovascular disease. A declined miR-20a-5p was observed in hearts of diabetic mice, while its effect on DCM remains unknown. Herein, we established streptozotocin-induced DCM rat model and high glucose-stimulated H9C2 model of DCM. They then were treated with adenovirus expressing miR-20a-5p to explore the function of miR-20a-5p. ITT and ipGTT assay revealed that miR-20a-5p reduced blood glucose level. Besides, miR-20a-5p improved cardiac dysfunction reflected by reduced HW/BW and LVDP, and increased LVSP and ±LV dp/dt max. MiR-20a-5p prevented cardiomyocyte apoptosis, along with the up-regulated c-caspase-3, bax and down-regulated bcl-2. Moreover, miR-20a-5p alleviated cardiac hypertrophy as the parameters of ANP, BNP and MyHC-β decreased. Also, miR-20a-5p attenuated the cardiac fibrosis demonstrated by decreased TGF-β1, collagen I levels and the inflammatory response manifested by reduced IL-6, TNF-α and IL-1β production. Furthermore, miR-20a-5p prevented JNK phosphorylation and NF-κB p65nuclear translocation. Similarly, the effects of miR-20a-5p on DCM were confirmed in our in vitro experiments. Additionally, ROCK2 is a possible target gene of miR-20a-5p. ROCK2 overexpression reversed the protective effect of miR-20a-5p on DCM. Overall, miR-20a-5p may effectively ameliorate DCM through improving cardiac metabolism, and subsequently inhibiting inflammation, apoptosis, hypertrophy, fibrosis, and JNK/NF-κB pathway via modulating ROCK2.

Determinants of mortality may depend on the time and place where they are examined. China provides an important context in which to study the determinants of mortality at older ages because of its unique social, economic, and epidemiological circumstances. This study uses a nationally representative sample of persons in China to determine how socioeconomic characteristics, early-life conditions, biological and physical functioning, and disease burden predict four-year mortality after age 60.

We used data from the China Health and Retirement Longitudinal Study (CHARLS). We employed a series of Cox proportional hazard models based on exact survival time to predict four-year all-cause mortality between the 2011 baseline interview and the 2015 interview.

We found that rural residence, poor physical functioning ability, uncontrolled hypertension, diabetes, cancer, a high level of systemic inflammation, and poor kidney functioning are strong predictors of mortality among older Chinese.

The results show that the objectively-measured indicators of physical functioning and biomarkers are independent and strong predictors of mortality risk after accounting for several additional self-reported health measures, confirming the value of incorporating biological and performance measurements in population health surveys to help understand health changes and aging processes that lead to mortality. This study also highlights the importance of social and historical context in the study of old-age mortality.

The results show that the objectively-measured indicators of physical functioning and biomarkers are independent and strong predictors of mortality risk after accounting for several additional self-reported health measures, confirming the value of incorporating biological and performance measurements in population health surveys to help understand health changes and aging processes that lead to mortality. This study also highlights the importance of social and historical context in the study of old-age mortality.

Inflammation plays a role in the pathogenesis of atrial fibrillation (AF). Pericarditis enhanced atrial arrhythmogenesis, but the role of the pericardium remains unclear in AF. Activation of the toll-like receptor 4 (TLR4) by binding to lipopolysaccharide (LPS) promotes cardiac electrical remodelling. In this study, we hypothesized that pericarditis may induce atrial arrhythmogenesis via pericardium-myocardium interactions by TLR4 signalling.

Pericarditis was induced in rabbits by injecting LPS (1-2 mg/kg) into the pericardium. Conventional microelectrodes were used to record the action potentials of left atrial (LA) posterior walls (LAPWs) and LA appendages (LAAs) with and without attached pericardium in the control or pericarditis-induced rabbits. Cytokine array was used to measure the expression levels of proinflammatory cytokines in control and LPS-treated pericardium. Compared with the controls, the LPS-treated pericardium had higher expressions of IL-1α, IL-8, and MIP-1β. VBIT-4 Rapid atrial pacing-induced burst firing in LPS-treated LAPWs and LAAs, and in control LAPWs (but not in LAAs).

Autoři článku: Hendrixbarnes0901 (Li Arsenault)