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可回收的微型插入物,其包含用于使用电子顺磁共振血氧测定法监测组织氧合的氧传感器。

Retrievable micro-inserts containing oxygen sensors for monitoring tissue oxygenation using EPR oximetry.

作者信息

Dinguizli M, Beghein N, Gallez B

机构信息

Louvain Drug Research Institute, Biomedical Magnetic Resonance unit, Université catholique de Louvain, Brussels, Belgium.

出版信息

Physiol Meas. 2008 Nov;29(11):1247-54. doi: 10.1088/0967-3334/29/11/001. Epub 2008 Oct 9.

Abstract

Tissue oxygenation is a crucial parameter in various physiopathological situations and can influence the therapeutic response of tumours. EPR oximetry is a reliable method for assessing and monitoring oxygen levels in vivo over long periods of time. Among the different paramagnetic oxygen sensors available for EPR oximetry, lithium phthalocyanine (LiPc) is a serious candidate for in vivo applications because of its narrow linewidth and its high signal-to-noise ratio. To enhance the biocompatibility of the sensors, fluoropolymer Teflon AF2400 was used to make cylindrical micro-inserts containing LiPc crystals. This new micro-pellet design has several advantages for in vivo studies, including the possibility of being able to choose the implant size, a high sensor content, the facility of in vivo insertion and complete protection with preservation of the oxygen sensor's characteristics. The response to oxygen and the kinetics of this response were tested using in vivo EPR: no differences were observed between micro-inserts and uncoated LiPc crystals. Pellets implanted in vivo in muscles conserved their responsiveness over a long period of time (approximately two months), which is much longer than the few days of stability observed using LiPc crystals without protection by the implant. Finally, evaluation of the biocompatibility of the implants revealed no inflammatory reaction around the implantation area.

摘要

组织氧合是各种生理病理情况下的一个关键参数,并且会影响肿瘤的治疗反应。电子顺磁共振血氧测定法是一种在长时间内评估和监测体内氧水平的可靠方法。在可用于电子顺磁共振血氧测定法的不同顺磁性氧传感器中,酞菁锂(LiPc)因其窄线宽和高信噪比而成为体内应用的有力候选者。为了提高传感器的生物相容性,使用含氟聚合物特氟龙AF2400制作了含有LiPc晶体的圆柱形微插入物。这种新的微丸设计在体内研究中有几个优点,包括能够选择植入物尺寸、传感器含量高、便于体内插入以及在保持氧传感器特性的情况下提供完全保护。使用体内电子顺磁共振测试了对氧的响应及其响应动力学:在微插入物和未涂层的LiPc晶体之间未观察到差异。植入肌肉中的微丸在很长一段时间内(约两个月)保持其响应性,这比未受植入物保护的LiPc晶体观察到的几天稳定性长得多。最后,对植入物生物相容性的评估显示植入区域周围没有炎症反应。

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