首页> 外文学位 >Quadrupole magnetic sorting (QMS) of porcine islets of Langerhans.
【24h】

Quadrupole magnetic sorting (QMS) of porcine islets of Langerhans.

机译:朗格汉斯猪胰岛的四极磁选(QMS)。

获取原文
获取原文并翻译 | 示例

摘要

This thesis is a summary of doctoral work in the area of magnetic cell sorting. Four main topics have been addressed: (1) Proof of concept of the magnetic sorting of porcine islets of Langerhans in a clinical setting; (2) optimization of islet sorting by mathematical models and custom reagents; (3) determination of the sensitivity of porcine islets to physical stress; and (4) model predictions for the potential of nano-scale magnetic separations of biological materials.;The author and his collaborators at the Diabetes Institute have investigated the use of magnetic DynalRTM DynabeadsRTM to preferentially enrich pancreatic islets from enzymatic organ digests. This technique offers the possibility immediately separate labeled islets with a quadrupole magnetic sorter (QMS). Magnetic sorting could replace density gradients as the primary means of purifying islet grafts for type 1 diabetics by increasing yield and minimizing cellular exposure to chemical and physical stress.;Force-balance models were used to ascertain how much labeling would be required to isolate islets from pancreatic tissues via magnetic sorting. A fast and simple technique was developed to synthesized magnetic particles that satisfy the optimal label properties described by the separation models.;A contractional flow device, which subjects cells to well-defined hydrodynamic forces, has been used to assess the vulnerability of porcine Islets of Langerhans to shear stresses that occur in any physical sorting device. This thesis reports on the author's collaborative work, with the Diabetes Institute, to quantify the upper limit of physical stress endurable by porcine islets. This knowledge is crucial for the optimization of the QMS channels and run conditions.;Magnetic separations are limited by the magnitude of the magnetic field gradient. This may be increased, ceteris paribus, by reducing the length scale of the device. In collaboration with the Cleveland Clinic, miniaturized QMS designs have been modeled to maximize the gradient and uniformity of the magnetic field. This modeling resulted in inexpensive demonstration devices with significantly higher field gradients, useful for probing the versatility of magnetic separation of proteins.
机译:本文是对磁性细胞分选领域的博士论文的总结。已经解决了四个主要问题:(1)在临床环境中对Langerhans的猪胰岛进行磁性分选的概念证明; (2)通过数学模型和定制试剂优化胰岛分选; (3)测定猪胰岛对身体压力的敏感性; (4)对生物材料进行纳米级磁性分离的潜力的模型预测。;作者和他在糖尿病研究所的合作者研究了利用磁性DynalRTM DynabeadsRTM优先从酶促器官消化物中富集胰岛的方法。该技术提供了使用四极磁选机(QMS)立即分离标记的胰岛的可能性。磁性分选可以代替密度梯度,作为提高1型糖尿病患者胰岛移植物的主要方法,可提高产量并最大程度地减少细胞对化学和物理应力的暴露。力平衡模型用于确定从胰岛分离胰岛所需的标记量通过磁性分选的胰腺组织。开发了一种快速简单的技术来合成满足分离模型描述的最佳标记物性能的磁性粒子。收缩流装置使细胞受到明确的流体动力作用,已用于评估猪胰岛的脆弱性朗格汉斯可剪切任何物理分类设备中出现的应力。本文报道了作者与糖尿病研究所的合作工作,以量化猪胰岛可承受的身体压力上限。这些知识对于优化QMS通道和运行条件至关重要。电磁分离受磁场梯度的大小限制。通过减少设备的长度比例,可以增加这种情况。与克利夫兰诊所合作,对小型化QMS设计进行了建模,以最大程度地提高磁场的梯度和均匀性。这种模型导致廉价的演示设备具有明显更高的场梯度,可用于探测蛋白质磁性分离的多功能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号