3 research outputs found

    Supplementary Material for: High-Concentrate Diet-Induced Change of Cellular Metabolism Leads to Decreases of Immunity and Imbalance of Cellular Activities in Rumen Epithelium

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    <b><i>Background/Aims:</i></b> In animals, the immune and cellular processes of tissue largely depend on the status of local metabolism. However, in the rumen epithelium, how the cellular metabolism affects epithelial immunity, and cellular processes, when the diet is switched from energy-rich to energy-excess status, with regard to animal production and health, have not as yet been reported. <b><i>Methods:</i></b> RNA-seq was applied to compare the biological processes altered by an increase of dietary concentration from 10% to 35% with those altered by an increase of dietary concentration from 35% to 65% (dietary concentrate: the non-grass component in diet, including corn, soya bean meal and additive. High concentrate diet composed of 35% grass, 55% corn, 8% soya bean meal and 2% additive). In addition to the functional analysis of enriched genes in terms of metabolism, the immune system, and cellular process, the highly correlated genes to the enriched metabolism genes were identified, and the function and signaling pathways related to the differentially expressed neighbors were compared among the groups. <b><i>Results:</i></b> The variation trends of molar proportions of ruminal SCFAs and those of enriched pathways belonging to metabolism, immune system, and cellular process were altered with the change of diets. With regard to metabolism, lipid metabolism and amino acid metabolism were most affected. According to the correlation analysis, both innate and adaptive immune responses were promoted by the metabolism genes enriched under the 65% concentrate diet. However, the majority of immune responses were suppressed under the 35% concentrate diet. Moreover, the exclusive upregulation of cell growth and dysfunction of cellular transport and catabolism were induced by the metabolism genes enriched under the 65% concentrate diet. On the contrary, a balanced regulation of cellular processes was detected under the 35% concentrate diet. <b><i>Conclusions:</i></b> These results indicated that the alterations of cellular metabolism promote the alterations in cellular immunity, repair, and homeostasis in the rumen epithelium, thereby leading to the switch of concentrate effects from positive to negative with regard to animal production and health

    Supplementary Material for: A New and Practical Model of Human-like Ascending Aorta Aneurysm in Rats

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    Introduction: Ascending aortic aneurysm is a serious health risk. In order to study ascending aortic aneurysms, elastase and calcium ion treatment for aneurysm formation are mainly used, but their aneurysm formation time is long, the aneurysm formation rate is low. Thus, this study aimed to construct a rat model of ascending aorta aneurysm with a short modeling time and high aneurysm formation rate, which may mimic the pathological processes of human ascending aorta aneurysm. Methods: Cushion needles with different pipe diameters (1.0, 1.2, 1.4 and 1.6 mm) were used to establish a human-like rat model of ascending aortic aneurysm by narrowing the ascending aorta of rats and increasing the force of blood flow on the vessel wall. The vascular diameters were evaluated using color Doppler ultrasonography after two weeks. The characteristics of ascending aortic aneurysm in rats were detected by Masson’s trichrome staining, Verhoeff’s Van Gieson staining and hematoxylin and eosin staining while RT-PCR were utilized to assess the total RNA of cytokine interleukin-1β, interleukin 6, transforming growth factor-beta1 and metalloproteinase 2. Results: Two weeks after surgery, the ultrasound images and the statistical analysis demonstrated that the diameter of the ascending aorta in rats increased more than 1.5 times, similar to that in humans, indicating the success of animal modeling of ascending aortic aneurysm. Moreover, the optimal constriction diameter of the ascending aortic aneurysm model is 1.4 mm by the statistical analysis of the rate of ascending aortic aneurysm and mortality rate in rats with different constriction diameters. Conclusions: The human-like ascending aortic aneurysm model developed in this study can be used for the studies of the pathological processes and mechanisms in ascending aortic aneurysm in a more clinically relevant fashion

    Supplementary Material for: Clinical Profile and Prognostic Significance of Atrial Fibrillation in Hypertrophic Cardiomyopathy

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    <b><i>Objectives:</i></b> The clinical outcomes of hypertrophic cardiomyopathy (HCM) are largely unpredictable. This study aimed to investigate the relationship between atrial fibrillation (AF) and its prognostic implications in Chinese patients with HCM. <b><i>Methods:</i></b> From 1999 to 2011, 654 unrelated HCM patients were consecutively recruited at Fuwai Hospital. Medical history, including electrocardiographic and echocardiographic data, was analyzed. <b><i>Results:</i></b> AF was documented in 158 patients (24%). During follow-up of 4.2 ± 2.8 years, Kaplan-Meier analysis revealed that the presence of AF was associated with an increased risk for all-cause death (p = 0.001), cardiovascular death (p < 0.001), severe heart failure (p < 0.001) and ischemic stroke (p < 0.001). Multivariate analysis identified AF as an independent predictor of stroke-related death (HR 6.71, 95% CI 1.23-38.58, p = 0.03), advanced heart failure (HR 1.83, 95% CI 1.04-3.22, p = 0.04) and ischemic stroke (HR 9.98, 95% CI 4.06-24.53, p < 0.001). Furthermore, enlarged left atrial diameter was positively related to all-cause death (HR 1.09, 95% CI 1.05-1.13, p < 0.001), cardiovascular death (HR 1.08, 95% CI 1.04-1.20, p < 0.001) and development of advanced heart failure (HR 1.05, 95% CI 1.01-1.10, p = 0.01). <b><i>Conclusions:</i></b> AF predicts poor outcomes for patients with HCM. Left atrial dilation is also related to an adverse prognosis and provides additional prognostic information
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