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An enhanced bioluminescence-based Annexin V probe for apoptosis detection in vitro and in vivo

机译:一种增强的基于生物发光的膜联蛋白V探针用于体内外的凋亡检测

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摘要

The process of controlled cellular death known as apoptosis has an important central role not only in normal homeostatic maintenance of tissues, but also in numerous diseases such as cancer, neurodegenerative, autoimmune, and cardiovascular diseases. As a result, new technologies with the capability to selectively detect apoptotic cells represent a central focus of research for the study of these conditions. We have developed a new biosensor for the detection of apoptotic cells, incorporating the targeted selectivity for apoptotic cells from Annexin V with the sensitivity of bioluminescence signal generation from a serum-stable mutant of Renilla luciferase (RLuc8). Our data presents a complete characterization of the structural and biochemical properties of this new Annexin-Renilla fusion protein (ArFP) construct, as well as a validation of its ability to detect apoptosis in vitro. Moreover, this work represents the first report of a bioluminescent Annexin V apoptosis sensor utilized in vivo. With this new construct, we examine apoptosis within disease-relevant animal models of surgery-induced ischemia/reperfusion, corneal injury, and retinal cell death as a model of age-related macular degeneration. In each of these experiments, we demonstrate successful application of the ArFP construct for detection and bioluminescence imaging of apoptosis within each disease or treatment model. ArFP represents an important new tool in the continuously growing kit of technologies for apoptosis detection, and our results from both in vitro and in vivo experiments suggest a diverse range of potential clinically relevant applications including cancer therapeutic screening and efficacy analysis, atherosclerosis and cardiovascular disease detection, and the monitoring of any number of other conditions in which apoptosis has a central role.
机译:被称为细胞凋亡的受控细胞死亡过程不仅在正常的组织体内稳态维持中而且在许多疾病如癌症,神经退行性疾病,自身免疫性疾病和心血管疾病中均具有重要的中心作用。结果,能够选择性检测凋亡细胞的新技术成为研究这些疾病的研究重点。我们已经开发了一种新的生物传感器,用于检测凋亡细胞,并结合了膜联蛋白V对凋亡细胞的靶向选择性以及对血清稳定的海肾荧光素酶(Rluc8)突变体产生生物发光信号的敏感性。我们的数据提供了这种新的膜联蛋白-肾小球融合蛋白(ArFP)构建体的结构和生化特性的完整表征,并验证了其在体外检测凋亡的能力。此外,这项工作代表体内使用的生物发光膜联蛋白V细胞凋亡传感器的首次报道。使用这种新的构建体,我们可以检查与疾病相关的动物模型中的细胞凋亡,该模型与手术相关的缺血/再灌注,角膜损伤和视网膜细胞死亡是与年龄相关的黄斑变性的模型。在这些实验的每一个中,我们证明了ArFP构建体在每种疾病或治疗模型内凋亡检测和生物发光成像中的成功应用。 ArFP代表着不断增长的细胞凋亡检测技术套件中的重要新工具,我们的体外和体内实验结果表明,多种潜在的临床相关应用包括癌症治疗筛选和功效分析,动脉粥样硬化和心血管疾病检测,以及监测凋亡在其中起关键作用的许多其他情况。

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