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Nano-zymography Using Laser-Scanning Confocal Microscopy Unmasks Proteolytic Activity of Cell-Derived Microparticles

机译:使用激光扫描共聚焦显微镜的纳米酶学揭示细胞衍生的微粒的蛋白水解活性。

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摘要

Cell-derived microparticles (MPs) are nano-sized vesicles released by activated cells in the extracellular milieu. They act as vectors of biological activity by carrying membrane-anchored and cytoplasmic constituents of the parental cells. Although detection and characterization of cell-derived MPs may be of high diagnostic and prognostic values in a number of human diseases, reliable measurement of their size, number and biological activity still remains challenging using currently available methods. In the present study, we developed a protocol to directly image and functionally characterize MPs using high-resolution laser-scanning confocal microscopy. Once trapped on annexin-V coated micro-wells, we developed several assays using fluorescent reporters to measure their size, detect membrane antigens and evaluate proteolytic activity (nano-zymography). In particular, we demonstrated the applicability and specificity of this method to detect antigens and proteolytic activities of tissue-type plasminogen activator (tPA), urokinase and plasmin at the surface of engineered MPs from transfected cell-lines. Furthermore, we were able to identify a subset of tPA-bearing fibrinolytic MPs using plasma samples from a cohort of ischemic stroke patients who received thrombolytic therapy and in an experimental model of thrombin-induced ischemic stroke in mice. Overall, this method is promising for functional characterization of cell-derived MPs.
机译:细胞来源的微粒(MPs)是由细胞外环境中的活化细胞释放的纳米大小的囊泡。它们通过携带亲代细胞的膜锚定和细胞质成分而充当生物活性的载体。尽管细胞源性MP的检测和表征在许多人类疾病中可能具有很高的诊断和预后价值,但是使用当前可用的方法对其大小,数量和生物学活性进行可靠的测量仍然具有挑战性。在本研究中,我们开发了一种协议,可以使用高分辨率激光扫描共聚焦显微镜对MP进行直接成像和功能表征。一旦被困在膜联蛋白-V包被的微孔上,我们开发了几种使用荧光报告基因的测定方法,以测量其大小,检测膜抗原并评估蛋白水解活性(纳米酶谱)。特别是,我们证明了这种方法的适用性和特异性,可从转染的细胞系中检测工程化MP表面的抗原和组织型纤溶酶原激活物(tPA),尿激酶和纤溶酶的蛋白水解活性。此外,我们能够使用一群接受了溶栓治疗的缺血性卒中患者的血浆样本,并在小鼠凝血酶诱导的缺血性卒中的实验模型中,鉴定出带有tPA的纤维蛋白溶解性MP的子集。总体而言,该方法有望用于细胞衍生MP的功能表征。

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