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首页> 外文期刊>The Journal of Nuclear Medicine >A PET-Compatible Tissue Bioreactor for Research, Discovery, and Validation of Imaging Biomarkers and Radiopharmaceuticals: System Design and Proof-of-Concept Studies.
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A PET-Compatible Tissue Bioreactor for Research, Discovery, and Validation of Imaging Biomarkers and Radiopharmaceuticals: System Design and Proof-of-Concept Studies.

机译:用于研究,发现和验证成像生物标志物和放射性药物的宠物兼容组织生物反应器:系统设计和概念证明研究。

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摘要

Research and discovery of novel radiopharmaceuticals and targets thereof generally involves initial studies in cell cultures, followed by animal studies, both of which present several inherent limitations. The objective of this work was to develop a tissue bioreactor (TBR) enabling modulation of the microenvironment and to integrate the TBR with a small-animal PET scanner to facilitate imaging biomarker research and discovery and validation of radiopharmaceuticals.The TBR chamber is a custom-blown, water-jacketed, glass vessel enclosed in a circulating perfusion bath powered by a peristaltic pump, which is integrated within the field of view of the PET scanner. The chamber is in series with a gas exchanger and a vessel for degassing the system during filling. Dissolved oxygen/temperature probes and septa for injection or sampling are located at the inlet and outlet of the cell chamber. A pH probe is located at the chamber outlet. Effluent is collected in the fraction collector as mixed-cup samples. In addition, both medium and tissue chamber can be sampled to investigate tissue and secretory products through multiscale analysis. As a proof of concept, we studied the effects of lipids on glucose uptake using HepG2 cells. To that end, we varied the nutrient substrate environment over a period of approximately 27 d, before and after the addition of lipids, and studied the effects of pioglitazone, a peroxisome proliferator-activated receptor γ agonist, on lipid and glucose uptake. In parallel, the TBR was imaged by PET in conjunction with (11)C-palmitate in the presence and absence of lipids to characterize (11)C-palmitate uptake.The O2 consumption, glucose consumption, lactate production, and free fatty acid consumption and production rates were consistent in demonstrating the effects of lipids on glucose uptake. Pioglitazone exhibited improved glucose uptake within 3 d of treatment. Semiquantitative analysis suggested that lipids induced greater (11)C-palmitate uptake.The integrated TBR offers a platform to monitor and modulate the tissue microenvironment, thus facilitating tissue-specific imaging and therapeutic biomarkers of disease, identification of molecular diagnostic markers, and validation of radiopharmaceuticals in both rodent and human cell lines.
机译:研究和发现新的放射性药物和其目标通常涉及细胞培养物中的初步研究,其次是动物研究,这两者都存在几种固有的局限性。这项工作的目的是开发一种组织生物反应器(TBR),从而能够调节微环境并将TBR与小动物PET扫描仪集成,以便于成像生物标志物研究和发现和发现放射性药物的研究和验证。TBR室是一种定制的吹过,覆盖的玻璃容器封闭在由蠕动泵的循环灌注浴中,该泵能够集成在PET扫描仪的视野范围内。腔室与燃气交换器和用于在填充过程中脱气的容器串联串联。用于喷射或取样的溶解氧/温度探针和隔膜位于电池室的入口和出口处。 pH探针位于腔室出口。作为混合杯样品,在馏分收集器中收集流出物。此外,可以通过多尺度分析来对中间和组织室进行抽取以研究组织和分泌产物。作为概念证明,我们研究了使用HepG2细胞对血糖摄取对葡萄糖摄取的影响。为此,我们在加入脂质之前和之后在约27d的时期改变营养底物环境,并研究了吡格列酮,过氧化物体增殖物激活受体γ激动剂的作用,脂质和葡萄糖摄取。并行地,TBR通过PET与(11)C-棕榈酸盐在存在和没有脂质的情况下成像以表征(11)C-棕榈酸酯摄取。O2消耗,葡萄糖消耗,乳酸生产和游离脂肪酸消耗在证明脂质对葡萄糖摄取的影响方面,生产率一致。吡格列酮在治疗3 d内表现出改善的葡萄糖摄取。半定量分析表明,脂质诱导较大(11)C-棕榈酸酯摄取。集成TBR提供了一种监测和调节组织微环境的平台,从而促进组织特异性的成像和治疗生物标志物,鉴定分子诊断标志物,以及验证啮齿动物和人类细胞系的放射性药物。

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