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Non-Invasive Monitoring of Oxygen Tension and Oxygen Transport Inside Subcutaneous Devices After H2S Treatment

机译:H2S处理后皮下装置内氧张力和氧气输送的非侵入性监测

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摘要

Medical devices for cell therapy can be improved through prevascularization. In this work we study the vascularization of a porous polymer device, previously used by our group for pancreatic islet transplantation with results indicating improved glycemic control. Oxygen partial pressure within such devices was monitored non-invasively using an optical technique. Oxygen-sensitive tubes were fabricated and placed inside devices prior to subcutaneous implantation in nude mice. We tested the hypothesis that vascularization will be enhanced by administration of the pro-angiogenic factor hydrogen sulfide (H 2 S). We found that oxygen dynamics were unique to each implant and that the administration of H 2 S does not result in significant changes in perfusion of the devices as compared with control. These observations suggest that vascular perfusion and density are not necessarily correlated, and that the rate of vascularization was not enhanced by the pro-angiogenic agent.
机译:用于细胞疗法的医疗设备可以通过prevascularization得到改善。在这项工作中,我们研究了多孔聚合物装置的血管化,先前使用由我们的组为具有指示改进的血糖控制的结果胰岛移植。非侵入性地使用光学方法,例如设备内的氧气分压进行监控。对氧敏感的管制造并放置之前在裸鼠中皮下植入的设备的内部。我们测试的假设血管将由促血管生成因子的硫化氢(H 2 S)的施用来增强。我们发现,氧动力是唯一的每个植入物以及与对照组相比H 2 S的施用不会导致在设备中灌注显著变化。这些观察表明,血管灌注和密度不一定相关,并且血管的速率没有被促血管生成剂增强。

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