首页> 外文期刊>Theranostics >Cardioprotective C-kit+ Bone Marrow Cells Attenuate Apoptosis after Acute Myocardial Infarction in Mice - In-vivo Assessment with Fluorescence Molecular Imaging
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Cardioprotective C-kit+ Bone Marrow Cells Attenuate Apoptosis after Acute Myocardial Infarction in Mice - In-vivo Assessment with Fluorescence Molecular Imaging

机译:心脏保护性C-kit +骨髓细胞可减轻小鼠急性心肌梗死后的凋亡-荧光分子成像的体内评估

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Cardiomyocyte loss via apoptosis plays a crucial role in ventricular remodeling following myocardial infarction (MI). Cell-based therapy approaches using bone marrow derived c-kit+ pluripotent cells may attenuate apoptosis following ischemic injury. We therefore thought to examine the early course of apoptosis following myocardial infarction - in-vivo - and non-invasively determine the effect of c-kit+ bone marrow cells on post-MI remodeling. We studied apoptosis in wild-type Kit+/+, c-kit mutant KitW/KitW-v and KitW/KitW-v mice after cell therapy with bone-marrow derived c-kit+ cells after ischemia-reperfusion injury. Mice were followed by hybrid Fluorescence Molecular Tomography/X-ray Computed Tomography (FMT-XCT) at 6h, 24h and 7 days after ischemia-reperfusion injury using an Annexin V-based fluorescent nanosensor targeting phosphatidylserine. KitW/KitW-v mice showed increased and prolonged apoptosis compared to control Kit+/+ mice while c-kit cell therapy was able to attenuate the altered apoptosis rates. Increased apoptosis was accompanied by severe decline in heart function, determined by cardiac Magnetic Resonance Imaging, and cell therapy was able to rescue the animals from deleterious heart failure. Post-mortem cryoslicing and immunohistochemistry localized the fluorescence signal of the Annexin V sensor within the infarcted myocardium. Flow cytometry of digested infarct specimens identified apoptotic cardiomyocytes as the major source for the in-vivo Annexin V signal. In-vivo molecular imaging using hybrid FMT-XCT reveals increased cardiomyocyte apoptosis in KitW/KitW-v mice and shows that c-kit+ cardioprotective cells are able to attenuate post-MI apoptosis and rescue mice from progressive heart failure.
机译:通过细胞凋亡导致的心肌细胞丢失在心肌梗死(MI)后的心室重构中起着至关重要的作用。使用骨髓衍生的c-kit + 多能细胞进行基于细胞的治疗可能会减轻缺血性损伤后的细胞凋亡。因此,我们认为应该检查心肌梗塞后体内的凋亡早期过程,并通过无创方法确定c-kit + 骨髓细胞对心肌梗死后重塑的影响。我们研究了野生型Kit + / + ,c-kit突变Kit W / Kit Wv 和Kit W 细胞进行细胞治疗后,对sup> / Kit Wv 小鼠进行了治疗。使用靶向磷脂酰丝氨酸的膜联蛋白V型荧光纳米传感器,在缺血再灌注损伤后6h,24h和7天,对小鼠进行混合荧光分子层析成像/ X射线计算机断层扫描(FMT-XCT)。与对照组Kit + / + 小鼠相比,Kit W / Kit Wv 小鼠显示出增加的细胞凋亡和延长的凋亡,而c-kit细胞疗法能够减弱凋亡率的改变。细胞凋亡的增加伴随着心脏功能的严重下降,这由心脏磁共振成像确定,并且细胞疗法能够使动物免于有害的心力衰竭。验尸冷冻切片和免疫组织化学在梗死心肌内定位膜联蛋白V传感器的荧光信号。消化后的梗死标本的流式细胞仪确定凋亡的心肌细胞是体内膜联蛋白V信号的主要来源。使用混合FMT-XCT进行的体内分子成像显示,Kit W / Kit Wv 小鼠的心肌细胞凋亡增加,并显示c-kit + 具有心脏保护作用细胞能够减轻心肌梗死后的细胞凋亡,并使小鼠免于进行性心力衰竭。

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