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首页> 外文期刊>Heart and vessels: An international journal >Exogenous midkine administration prevents cardiac remodeling in pacing-induced congestive heart failure of rabbits
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Exogenous midkine administration prevents cardiac remodeling in pacing-induced congestive heart failure of rabbits

机译:外源性中期因子给药可防止起搏诱发的兔充血性心力衰竭的心脏重塑

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Midkine (MK), a heparin-binding growth factor, has been shown to prevent cardiac remodeling after ischemic injury through its anti-apoptotic effect. Cell apoptosis is central to the pathophysiology of cardiac remodeling in congestive heart failure (CHF) of ischemic as well as non-ischemic origin. We hypothesized that MK exerts the anti-apoptotic cardioprotective effect in CHF of non-ischemic etiology. MK protein or vehicle (normal saline) was subcutaneously administered in tachycardia-induced CHF rabbits (right ventricular pacing, 350 beats/min, 4 weeks). The vehicle-treated rabbits (n = 19, control) demonstrated severe CHF and high mortality rate, whereas MK (n = 16) demonstrated a well-compensated state and a lower mortality rate. In echocardiography, left ventricular (LV) end-diastolic dimension decreased in MK versus control, whereas LV systolic function increased. In histological analysis (picrosirius red staining), MK decreased collagen deposition area compared with control. TUNEL staining showed that MK prevented cell apoptosis and minimized myocyte loss in the CHF rabbit ventricle, associated with activation of PI3-K/Akt signaling, producing a parallel decrease of Bax/Bcl-2 ratio. MK prevented progression of cardiac remodeling in the CHF rabbit, likely by activation of anti-apoptotic signaling. Exogenous MK application might be a novel therapeutic strategy for CHF due to non-ischemic origin.
机译:Midkine(MK)是一种肝素结合生长因子,通过其抗凋亡作用,可预防缺血性损伤后的心脏重塑。细胞凋亡对于缺血性和非缺血性充血性心力衰竭(CHF)中心脏重塑的病理生理至关重要。我们假设MK在非缺血性病因的CHF中发挥抗凋亡的心脏保护作用。在心动过速诱发的CHF兔中皮下注射MK蛋白或媒介物(生理盐水)(右心室起搏,350次/分钟,4周)。媒介物治疗的兔子(n = 19,对照)表现出严重的CHF和高死亡率,而MK(n = 16)表现出良好的补偿状态和较低的死亡率。在超声心动图检查中,与对照相比,MK患者左室舒张末期尺寸减小,而左室收缩功能增加。在组织学分析(picrosirius红染色)中,与对照相比,MK减少了胶原蛋白沉积面积。 TUNEL染色显示,MK阻止了CHF兔心室的细胞凋亡并使心肌细胞的损失最小化,这与PI3-K / Akt信号的激活相关,导致Bax / Bcl-2比值平行下降。 MK可能通过激活抗凋亡信号来阻止CHF兔心脏重塑的进展。由于非缺血性起源,外源性MK的应用可能是CHF的一种新型治疗策略。

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