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An Assessment of Gadonanotubes as Magnetic Nanolabels for Improved Stem Cell Detection and Retention in Cardiomyoplasty.

机译:Gadonanotubes作为磁性纳米标签的评估,用于改善心肌成形术中干细胞的检测和保留。

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摘要

In this work, gadolinium-based carbon nanocapsules are developed as a novel nanotechnology that addresses the shortcomings of current diagnostic and therapeutic methods of stem cell-based cardiomyoplasty. With cardiovascular disease (CVD) responsible for approximately 30% of deaths worldwide, the growing need for improved cardiomyoplasty has spurred efforts in nanomedicine to develop innovative techniques to enhance the therapeutic retention and diagnostic tracking of transplanted cells. Having previously been demonstrated as a high-performance T1-weighted magnetic resonance imaging (MRI) contrast agent, Gadonanotubes (GNTs) are shown for the first time to intracellularly label pig bone marrow-derived mesenchymal stem cells (MSCs). Without the use of a transfection agent, micromolar concentrations of GNTs deliver up to 109 Gd3+ ions per cell, allowing for MSCs to be visualized in a 1.5 T clinical MRI scanner. The cellular response to the intracellular incorporation of GNTs is also assessed, revealing that GNTs do not compromise the viability, differentiation potential, or phenotype characteristics of the MSCs. However, it is also found that GNT-labeled MSCs exhibit a decreased response to select cell adhesion proteins and experience a nonapoptotic, non-proliferative cell cycle arrest, from which the cells recover 48 h after GNT internalization. In tandem with developing GNTs as a new stem cell diagnostic agent, this current work also explores for the first time the therapeutic application of the magnetically-active GNTs as a magnetic facilitator to increase the retention of transplanted stem cells during cardiomyoplasty. In vitro flow chamber assays, ex vivo perfusion experiments, and in vivo porcine injection procedures all demonstrate the increased magnetic-assisted retention of GNT-labeled MSCs in the presence of an external magnetic field. These studies prove that GNTs are a powerful 'theranostic' agent that provides a novel platform to simultaneously monitor and improve the therapeutic nature of stem cells for the treatment of CVD. It is expected that this new nanotechnology will further catalyze the development of cellular cardiomyoplasty and other stem cellbased therapies for the prevention, detection, and treatment of human diseases.
机译:在这项工作中,g基碳纳米胶囊被开发为一种新颖的纳米技术,解决了目前基于干细胞的心肌成形术的诊断和治疗方法的缺点。随着心血管疾病(CVD)占全球约30%的死亡的原因,对改进的心肌成形术的日益增长的需求刺激了纳米医学的努力,以开发创新技术来增强对移植细胞的治疗保留和诊断追踪。先前已被证明是高性能的T1加权磁共振成像(MRI)造影剂,Gadonanotubes(GNTs)首次用于细胞内标记猪骨髓源性间充质干细胞(MSCs)。在不使用转染剂的情况下,每摩尔GNT的微摩尔浓度最多可传递109 Gd3 +离子,从而使MSC在1.5 T临床MRI扫描仪中可视化。还评估了细胞对GNT掺入细胞的反应,揭示了GNT不会损害MSC的活力,分化潜能或表型特征。但是,还发现GNT标记的MSC对选择的细胞粘附蛋白的反应降低,并经历了非凋亡,非增殖的细胞周期停滞,GNT内化后48 h,细胞便从中恢复。与将GNTs作为一种新的干细胞诊断剂发展起来的同时,这项当前的工作还首次探索了将磁性GNTs作为一种磁性促进剂的治疗性应用,以增加心肌移植过程中移植的干细胞的保留。体外流动室测定,离体灌注实验和体内猪注射程序均证明在存在外部磁场的情况下,GNT标记的MSC的磁辅助保留增加。这些研究证明,GNT是一种功能强大的“ theranostic”药剂,它提供了一个新颖的平台来同时监测和改善干细胞的治疗性,以治疗CVD。期望这项新的纳米技术将进一步促进细胞心肌成形术和其他基于干细胞的疗法的发展,以预防,检测和治疗人类疾病。

著录项

  • 作者

    Tran, Lesa A.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Chemistry Biochemistry.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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