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1.
目的建立小鼠心衰模型,应用超声影像学和病理学技术综合评价疾病发展过程中的特征性的心脏功能和结构的改变。方法应用主动脉弓缩窄(transverse aortic constriction,TAC)手术技术建立压力超负荷致小鼠心衰模型,造模前0周和造模后2、4、8周采集主动脉弓缩窄处血流多普勒估测血管承受压力,采集B型和M型超声图像评价心脏结构左室收缩功能,采集二尖瓣口血流多普勒结合二尖瓣环组织多普勒评价心脏舒张功能,采集心脏组织进行组织病理学观察。结果超声影像学结果显示术后2、4、8周主动脉血流压力均显著性增加。术后2周主要表现为特征性左室壁代偿性厚度增加、内径减少,收缩功能代偿性增加,但伴随舒张功能受损和心肌纤维化;术后4周为过渡期,主要表现为从室壁肥厚到心室扩张的过渡、收缩功能开始下降、舒张功能持续性受损、心肌进一步纤维化;术后8周为表现为特征性的心室腔扩大,收缩、舒张功能均显著性降低,心肌细胞部分溶解并且显著性纤维化。结论通过评价小鼠主动脉弓缩窄后代偿性心肌肥厚期、过渡期到失代偿扩张型心衰等三个阶段的左室结构和功能,为主动脉弓缩窄模型的在基础和转化研究上的应用提供理论依据。  相似文献   

2.
目的比较主动脉弓缩窄和腹主动脉缩窄复制心力衰竭衰模型的异同,探索快速有效的心衰动物模型。方法将大鼠分为主动脉缩窄手术组,腹主动脉缩窄手术组和对照组(C组)。主动脉缩窄手术组实施颈部手术,在主动脉弓处缩窄动脉直径;腹主动脉缩窄手术组实施腹部手术,在腹主动脉处缩窄动脉直径;C组实施颈部手术但不实施动脉缩窄手术。各组实验动物均正常喂养4~6周后进行心脏的超声检测和心脏血流动力学检测。结果心脏超声结果显示:主动脉弓缩窄手术组左心室壁厚度和左心室腔内径在术后4周明显高于正常组;而腹主动脉缩窄手术组左心室壁厚度和左心室腔内径在术后4周较正常组没有明显增加。术后6周,腹主动脉缩窄手术组左心室壁厚度和左心室腔内径都明显增加,而主动脉弓缩窄手术组左心室壁厚度没有明显改变,左心室腔内经明显增加。血流动力学指标显示:主动脉弓缩窄手术组LVESP、LVEDP、LVDP、±dp/dtmax都明显低于腹主动脉缩窄手术组。结论主动脉弓缩窄手术复制心肌肥大导致心功能衰竭模型效果明显快于腹主动脉缩窄手术复制的心肌肥大导致心功能衰竭模型。  相似文献   

3.
目的:研究金丝桃苷(hyperoside, HYP)对主动脉弓缩窄所致小鼠病理性心肌肥厚的保护作用及其机制。方法:将32只C57BL/6J小鼠随机分为4组:假手术(Sham)组、单纯给药(HYP)组、主动脉弓缩窄(TAC)组及主动脉弓缩窄给药(TAC+HYP)组,每组8只。采用经典的主动脉弓缩窄术建立小鼠压力负荷型心肌肥厚模型。TAC术后4周,超声心动图仪检测心脏功能;左心室导管监测血流动力学指标;分离心脏、肺脏和胫骨计算心/体比、肺/体比和心/胫比,HE染色计算心肌细胞平均横截面积,Masson染色观察心肌纤维化程度,试剂盒检测心肌组织中SOD的活性和MDA的含量;DHE荧光探针检测心肌组织ROS生成量;Western blotting检测SIRT3、NOX 4、Collagen-1和Collagen-3蛋白表达,实时定量PCR检测SIRT3、ANP、α-MHC、β-MHC的m RNA表达情况。结果:与Sham组相比,TAC组小鼠的LVPWD值增加,LVSP和LVEDP值上升,LVEF、LVFS、E/A和±dp/dtmax值均降低;HM/BW、LW/BW和HW/TL值升高,心肌细胞横截面积增加;心肌组织胶原沉积加重;肥厚基因ANP的m RNA表达水平显著上升,α-MHC/β-MHC的比例倒置;心肌组织SOD活性降低,MDA和ROS生成量增加;SIRT3信号表达明显降低(均P<0.05)。给予HYP药物处理后,TAC+HYP组小鼠的心脏功能、血流动力学改变、心肌细胞肥厚程度、心肌组织纤维化和氧化应激水平均明显改善,并且心肌细胞SIRT3信号表达也显著增强(均P<0.05)。结论:HYP能够通过减轻心肌组织氧化应激损伤,抑制心肌纤维化进展,改善压力负荷引起的病理性心肌肥厚,且其作用机制可能与激活SIRT3信号有关。  相似文献   

4.
目的通过显微外科技术建立小鼠主动脉弓缩窄压力超负荷模型,探讨心脏形态及功能变化的规律。方法135只雄性昆明小鼠随机分为主动脉弓缩窄组75只和假手术组60只。在术前、术后1周、4周、6周、8周1、2周进行高频心脏超声、血流动力学、心脏病理学检测,并对器官称重,对死亡原因进行分析。结果(1)主动脉弓缩窄手术成功率为88%;(2)与假手术组比较,术后4周,缩窄组小鼠出现左室向心性肥厚,左心室收缩期、舒张期后壁厚度(Pwsth;Pwdth)、左心室重量指数(LVMI)显著增加(P〈0.05),术后6、8、12周上述指标呈轻度上升趋势;术后4、68、、12周,缩窄组小鼠动脉收缩压(SBP)、动脉舒张压(DBP)、左心室收缩压(LVSP)、左心室舒张末压(LVEDP)显著增加(P〈0.05);术后8周,缩窄组小鼠表现为离心性肥厚,左心室收缩末期、舒张末期内径(LVESd;LVEDd)显著增加(P〈0.05);术后12周,缩窄组小鼠出现失代偿性心力衰竭,左心室射血分数(EF%)、左心室压力上升和下降最大速率(dp/dtmax;dp/dtmin)显著降低(P〈0.05),与8周缩窄组比较,12周缩窄组SBP、DBP、LVSP、LVEDP显著降低(P〈0.05)。结论通过主动脉弓缩窄,可以建立稳定的小鼠压力超负荷诱导左室向心性肥厚致心衰的动物模型,类似人类心肌肥厚向心衰发展的病理过程,是用于临床研究的一种较理想动物模型。  相似文献   

5.
目的: 探讨腹主动脉缩窄小鼠在向心衰发展的过程中心脏结构和功能的动态变化。方法: 健康雄性昆明小鼠,随机分为模型组、假手术组和对照组。模型组采用腹主动脉缩窄的方法制备慢性心力衰竭小鼠模型,假手术组只分离出腹主动脉但不结扎,对照组不做任何处理。模型组组内分为2周组、4周组、6周组和8周组,每组10只。观察各组小鼠行为学表现、心电图、超声心动图和心肌组织病理学的变化。结果: 模型组与对照组相比:模型组小鼠术后2周开始出现行为学改变并且仅有2周组小鼠出现IVSS降低(P<0.05);术后4周开始出现病理性J波、EF降低(P<0.05)、IVSD增加(P<0.05)和心肌损伤;术后6周开始出现LVPWD和LVPWS增加(P<0.05);术后8周开始出现LV mass corrected增加(P<0.05)。各组小鼠心率、R幅值、T幅值、ST段、PR间期、QT间期、QTc等数据差异均无显著性。结论: 腹主动脉缩窄导致小鼠出现心衰的过程中出现了EF降低、室间隔肥厚、病理性J波、左室后壁肥厚以及左室质量增加等变化。  相似文献   

6.
目的建立大鼠胸主动脉部分缩窄诱导心肌肥厚动物模型。方法雄性SD大鼠30只,随机分为两组:胸主动脉缩窄组20只和同期假手术组10只。在右无名动脉和左颈总动脉之间将主动脉结扎于8G针头上,随后将针头退出即可。术后10周,采用超声心动图检测心脏、观察心脏的大体剖面以及HE染色、测量心肌肥厚指数评价心肌肥厚的效果。结果术后10周,肉眼观:模型组心脏体积明显大于对照组。M型超声示:模型组较假手术组缩短分数下降,左室内径和室壁厚度明显增加。超声测量结果示:模型组与假手术组比较:室间隔厚度增加明显(2.527±0.269 vs.1.943±0.1)mm,(P〈0.01);后壁厚度增加明显(2.492±0.242 vs.1.902±0.076)mm,(P〈0.01);缩短分数略减小(49±7.681 vs.55.7±9.828)(P〉0.05);左室舒张末期内径、左室收缩末期内径及射血分数均无明显变化。心脏肥厚指数明显增大(3.196±0.11 vs.1.785±0.099),P〈0.01。结论胸主动脉缩窄可以导致大鼠心肌肥厚,为研究心室肥厚、心肌功能障碍以及心肌重构提供了一个很好的模型。  相似文献   

7.
压力后负荷增高大鼠心肌肥厚向心力衰竭的转变   总被引:6,自引:0,他引:6  
目的观察单纯腹主动脉缩窄造成的心肌肥厚能否转变成为心力衰竭。方法实验选用8周龄的Wistar大鼠,使用7-0号尼龙线对其肾上腹主动脉进行缩窄手术,造成后负荷性心肌肥厚模型(LVH,n=10),同时设置假手术组(Sham,n=10)和正常组(Con,n=10)作为对照。术后第20周和第38周使用超声多普勒和多导生理仪对大鼠血流动力学进行检测。解剖后取出心脏,计算心脏/体重比,并通过HE染色和天狼猩红染色观察心脏形态和纤维化程度。结果腹主动脉结扎后第20周,LVH组大鼠心室壁肥厚,舒张功能下降(E/Aratio:LVH组:1.0±0.25,Con组:1.6±0.12)。术后38周,左心室壁肥厚程度有所下降,但是心室腔扩大,心脏收缩和舒张功能明显下降(EF:LVH组:44.8±8.42,Con组:70.9±5.19;MaxdP/dt:LVH组:4916±1267.3,Con组:14225±932.1;MindP/dt:LVH组:-3246±1217.3,Con组:-12138±725.2)。腹主动脉缩窄术后的动物心脏重量明显增加(3.58±0.32vs.2.34±0.15),HE染色和天狼猩红染色显示LVH组大鼠在术后38周心脏纤维化明显。结论腹主动脉缩窄造成的后负荷增高动物模型首先出现向心性心肌肥厚,伴以舒张功能下降,进而收缩功能下降,发展为心力衰竭。  相似文献   

8.
腹主动脉旁瘤超声多普勒血流信号的仿真研究,可以为采用超声多普勒技术检测腹主动脉旁瘤的形成、生长过程和估计动脉旁瘤瘤体大小提供指导。先通过有限元数值计算方法得到稳恒流下腹主动脉旁瘤区域内的血液流场分布,然后采用余弦叠加的合成方法仿真出相应的超声多普勒血流信号,最后对仿真信号进行频谱分析,计算其平均频率,并研究它与腹主动脉旁瘤瘤体大小的关系。结果表明:当动脉旁瘤较小时,平均频率的幅度变化较小;当动脉旁瘤较大时,平均频率的幅度变化较大。因此,采用平均频率的幅度变化可以在一定程度上估计动脉旁瘤的瘤体大小。  相似文献   

9.
64层MSCT血管成像对婴幼儿主动脉缩窄及离断的评价   总被引:1,自引:0,他引:1  
目的:评价64层螺旋CT血管成像在婴幼儿主动脉缩窄及离断诊断中的应用价值及其准确性.方法:对临床和超声怀疑主动脉缩窄的21例患儿行胸片、心脏大血管彩超及CT主动脉成像,其中5例行DSA检查,16例进行了手术治疗.CT血管重建技术包括VR、MIP、MPR及CPR等,对主动脉缩窄程度、长度、侧枝血管显示情况进行评价,并比较原始数据、VR、MPR、MIP及CPR几种后处理方式对主动脉缩窄诊断的准确性和敏感性.结果:21例患者中,19例为主动脉缩窄,2例为主动脉离断.病变部位于左锁骨下动脉远端、动脉导管开口附近20例(95.2%),正对左锁骨下动脉1例(4.8%).病变部位位于动脉导管近段2例,动脉导管附着处3例,动脉导管远段16例.多层螺旋CTA对主动脉狭窄诊断的总体准确率和敏感性均为100%,对主动脉缩窄的显示以靶血管VR最好,其次是CPR和MPR;对侧枝血管的显示以整体VR和CPR最好,其次是MIP和MPR;而整体VR和原始轴位图像对主动脉缩窄显示较差.结论:64层MSCT血管成像各种后处理技术相结合能为主动脉缩窄及离断患者提供了更多有价值的诊断信息,有助于临床术前评估和制定恰当的治疗方案.  相似文献   

10.
目的:探讨建立慢性充血性心力衰竭大鼠模型的方法。方法:采用腹主动脉缩窄法制备CHF大鼠模型。于右肾动脉分支处上方缩窄腹主动脉至0.6mm,同时设立假手术组及正常对照组。12周后行一般情况观察,超声心动图及血液动力学检测心脏结构和功能、计算心脏肥厚指数,HE及Masson染色检测心肌病理改变,综合评价CHF大鼠心功能。结果:与假手术及正常对照组比较,CHF模型组术后12周均出现进食减少、精神萎靡、少动、被毛无光;IVS、LVPW、LVM、LVEDD、LVESD、SV显著增加,EF、FS显著降低;HR显著增加;VSP、+dP/dtmax显著降低,T-dP/dtmax显著延长;LVEDP显著升高,-dP/dtmax绝对值显著降低;心脏湿重及心脏肥厚指数均增加;病理结果表明CHF模型组心肌细胞肥大、排列紊乱、心肌胶原纤维增多。结论:应用腹主动脉缩窄术可成功制备CHF大鼠模型。  相似文献   

11.
Yu H  Zhao G  Li H  Liu X  Wang S 《Gene》2012,497(2):301-306
The present study was designed to investigate the underlying molecular mechanism for Angiotensin II type 1 receptor blockers (ARBs) mediated cardio-protection against pressure overload-induced cardiac remodeling with a focus on Smad7. ROCK-1, Smad3 and fibronectin expressions were increased in male C57BL/6 mice underwent transverse aortic constriction (TAC) for 2weeks. Treatment with Candesartan (2mg/kg per day) could effectively downregulate Smad3 and fibronectin accompanied by upregulating of Smad7. Further data showed that Candesartan inhibited TGF-β1 signal-induced epithelial-to-mesenchymal transition (EMT) through attenuating matrix metalloproteinases (MMP-9), such effect was abolished by knocking-down Smad7. Moreover, TAC for 2weeks caused increased collagen deposition, thickness of left ventricular anterior and posterior wall at end-diastole (LVAWD and LVPWD) and LVEF% reduction, which were reversed by treatment with Candesartan, but failed after knocking-down Smad7. In addition, LV dP/dt(max) and dP/dt(min) were increased by TAC for 2weeks, and treatment with Candesartan or Nifedipine effectively depressed the high levels of dP/dt(min) induced by TAC. However, only Candesartan-mediated protective role in improving cardiac function was suppressed by tail-vein injection of Smad7 siRNA. This study uncovered a novel role for ARBs in preventing pressure overload-induced cardiac remodeling via Smad7 upregulation, which suppressed MMP-9 expression and TGF-β1 signal-mediated EMT progress.  相似文献   

12.
Transverse aortic constriction (TAC) is an effective technique for inducing left ventricular (LV) hypertrophy in mice. With the use of transthoracic echocardiography and Doppler measurements, we studied the effects of an acute increase in pressure overload on LV contractile performance and peak systolic wall stress index (WSI) at early time points after TAC and the time course of the development of LV hypertrophy in mice. The LV mass index was similar between TAC and sham-operated mice at postoperative day 1 but progressively increased in TAC mice by day 10. There was no further increase in the LV mass index between postoperative days 10 and 20. On day 1, whereas peak systolic WSI increased significantly, the LV ejection fraction (LVEF) and percent fractional shortening (%FS) decreased in TAC mice compared with sham-operated mice. By day 10, peak systolic WSI, LVEF, and %FS had recovered to baseline levels and were not significantly different between postoperative days 10 and 20. Thus LV systolic performance in mice declines immediately after TAC, associated with increased peak systolic WSI, but recovers to baseline levels with the development of compensatory LV hypertrophy over 10-20 days.  相似文献   

13.
Although nitric oxide synthase (NOS)3 is implicated as an important modulator of left ventricular (LV) remodeling, its role in the cardiac response to chronic pressure overload is controversial. We examined whether selective restoration of NOS3 to the hearts of NOS3-deficient mice would modulate the LV remodeling response to transverse aortic constriction (TAC). LV structure and function were compared at baseline and after TAC in NOS3-deficient (NOS3(-/-)) mice and NOS3(-/-) mice carrying a transgene directing NOS3 expression specifically in cardiomyocytes (NOS3(-/-TG) mice). At baseline, echocardiographic assessment of LV dimensions and function, invasive hemodynamic measurements, LV mass, and myocyte width did not differ between the two genotypes. Four weeks after TAC, echocardiographic and hemodynamic indexes of LV systolic function indicated that contractile performance was better preserved in NOS3(-/-TG) mice than in NOS3(-/-) mice. Echocardiographic LV wall thickness and cardiomyocyte width were greater in NOS3(-/-) mice than in NOS3(-/-TG) mice. TAC-induced cardiac fibrosis did not differ between these genotypes. TAC increased cardiac superoxide generation in NOS3(-/-TG) but not NOS3(-/-) mice. The ratio of NOS3 dimers to monomers did not differ before and after TAC in NOS3(-/-TG) mice. Restoration of NOS3 to the heart of NOS3-deficient mice attenuates LV hypertrophy and dysfunction after TAC, suggesting that NOS3 protects against the adverse LV remodeling induced by prolonged pressure overload.  相似文献   

14.
BACKGROUND: Activation of the vitamin D-vitamin D receptor (VDR) axis has been shown to reduce blood pressure and left ventricular (LV) hypertrophy. Besides cardiac hypertrophy, cardiac fibrosis is a key element of adverse cardiac remodeling. We hypothesized that activation of the VDR by paricalcitol would prevent fibrosis and LV diastolic dysfunction in an established murine model of cardiac remodeling. METHODS: Mice were subjected to transverse aortic constriction (TAC) to induce cardiac hypertrophy. Mice were treated with paricalcitol, losartan, or a combination of both for a period of four consecutive weeks. RESULTS: The fixed aortic constriction caused similar increase in blood pressure, both in untreated and paricalcitol- or losartan-treated mice. TAC significantly increased LV weight compared to sham operated animals (10.2±0.7 vs. 6.9±0.3mg/mm, p<0.05). Administration of either paricalcitol (10.5±0.7), losartan (10.8±0.4), or a combination of both (9.2±0.6) did not reduce LV weight. Fibrosis was significantly increased in mice undergoing TAC (5.9±1.0 vs. sham 2.4±0.8%, p<0.05). Treatment with losartan and paricalcitol reduced fibrosis (paricalcitol 1.6±0.3% and losartan 2.9±0.6%, both p<0.05 vs. TAC). This reduction in fibrosis in paricalcitol treated mice was associated with improved indices of LV contraction and relaxation, e.g. dPdtmax and dPdtmin and lower LV end diastolic pressure, and relaxation constant Tau. Also, treatment with paricalcitol and losartan reduced mRNA expression of ANP, fibronectin, collagen III and TIMP-1. DISCUSSION: Treatment with the selective VDR activator paricalcitol reduces myocardial fibrosis and preserves diastolic LV function due to pressure overload in a mouse model. This is associated with a reduced percentage of fibrosis and a decreased expression of ANP and several other tissue markers.  相似文献   

15.
Granulocyte‐colony stimulating factor (G‐CSF) has been shown to promote mobilization of bone marrow‐derived stem cells (BMCs) into the bloodstream associated with improved survival and cardiac function after myocardial infarction. Therefore, the aim of the present study was to investigate whether G‐CSF is able to attenuate cardiac remodelling in a mouse model of pressure‐induced LV hypertrophy focusing on mobilization and migration of BMCs. LV hypertrophy was induced by transverse aortic constriction (TAC) in C57BL/6J mice. Four weeks after TAC procedure. Mice were treated with G‐CSF (100 μg/kg/day; Amgen Biologicals) for 2 weeks. The number of migrated BMCs in the heart was analysed by flow cytometry. mRNA expression and protein level of different growth factors in the myocardium were investigated by RT‐PCR and ELISA. Functional analyses assessed by echocardiography and immunohistochemical analysis were performed 8 weeks after TAC procedure. G‐CSF‐treated animals revealed enhanced homing of VLA‐4+ and c‐kit+ BMCs associated with increased mRNA expression and protein level of the corresponding homing factors Vascular cell adhesion protein 1 and Stem cell factor in the hypertrophic myocardium. Functionally, G‐CSF significantly preserved LV function after TAC procedure, which was associated with a significantly reduced area of fibrosis compared to control animals. Furthermore, G‐CSF‐treated animals revealed a significant improvement of survival after TAC procedure. In summary, G‐CSF treatment preserves cardiac function and is able to diminish cardiac fibrosis after induction of LV hypertrophy associated with increased homing of VLA‐4+ and c‐kit+ BMCs and enhanced expression of their respective homing factors VCAM‐1 and SCF.  相似文献   

16.
Insulin resistance is an increasingly prevalent condition in humans that frequently clusters with disorders characterized by left ventricular (LV) pressure overload, such as systemic hypertension. To investigate the impact of insulin resistance on LV remodeling and functional response to pressure overload, C57BL6 male mice were fed a high-fat (HFD) or a standard diet (SD) for 9 days and then underwent transverse aortic constriction (TAC). LV size and function were assessed in SD- and HFD-fed mice using serial echocardiography before and 7, 21, and 28 days after TAC. Serial echocardiography was also performed on nonoperated SD- and HFD-fed mice over a period of 6 wk. LV perfusion was assessed before and 7 and 28 days after TAC. Nine days of HFD induced systemic and myocardial insulin resistance (assessed by myocardial 18F-fluorodeoxyglucose uptake), and myocardial perfusion response to acetylcholine was impaired. High-fat feeding for 28 days did not change LV size and function in nonbanded mice; however, TAC induced greater hypertrophy, more marked LV systolic and diastolic dysfunction, and decreased survival in HFD-fed compared with SD-fed mice. Compared with SD-fed mice, myocardial perfusion reserve was decreased 7 days after TAC, and capillary density was decreased 28 days after TAC in HFD-fed mice. A short duration of HFD induces insulin resistance in mice. These metabolic changes are accompanied by increased LV remodeling and dysfunction after TAC, highlighting the impact of insulin resistance in the development of pressure-overload-induced heart failure.  相似文献   

17.
We have previously shown that high-sugar diets increase mortality and left ventricular (LV) dysfunction during pressure overload. The mechanisms behind these diet-induced alterations are unclear but may involve increased oxidative stress in the myocardium. The present study examined whether high-fructose feeding increased myocardial oxidative damage and exacerbated systolic dysfunction after transverse aortic constriction (TAC) and if this effect could be attenuated by treatment with the antioxidant tempol. Immediately after surgery, TAC and sham mice were assigned to a high-starch diet (58% of total energy intake as cornstarch and 10% fat) or high-fructose diet (61% fructose and 10% fat) with or without the addition of tempol [0.1% (wt/wt) in the chow] and maintained on the treatment for 8 wk. In response to TAC, fructose-fed mice had greater cardiac hypertrophy (55.1% increase in the heart weight-to-tibia length ratio) than starch-fed mice (22.3% increase in the heart weight-to-tibia length ratio). Treatment with tempol significantly attenuated cardiac hypertrophy in fructose-fed TAC mice (18.3% increase in the heart weight-to-tibia ratio). Similarly, fructose-fed TAC mice had a decreased LV area of fractional shortening (from 38+/-2% in sham to 22+/-4% in TAC), which was prevented by tempol treatment (33+/-3%). Markers of lipid peroxidation in fructose-fed TAC hearts were also blunted by tempol. In conclusion, tempol significantly blunted markers of cardiac hypertrophy, LV remodeling, contractile dysfunction, and oxidative stress in fructose-fed TAC mice.  相似文献   

18.
The nonpurine selective xanthine oxidase (XO) inhibitor febuxostat attenuates development of left ventricular (LV) hypertrophy and dysfunction in mice when treatment is initiated within 1 hour of transverse aortic constriction (TAC). This study investigated whether a 7-day delay of treatment with the XO inhibitors febuxostat or allopurinol would reverse TAC-induced changes after onset of heart failure (HF). Neither treatment significantly affected TAC-induced LV hypertrophy; only febuxostat caused a modest improvement in LV function (~10% increase in LV ejection fraction). However, the purine analog allopurinol tended to increase mortality compared with vehicle or febuxostat in HF mice.  相似文献   

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