首页> 外文期刊>Nuclear Medicine Communications >Demonstration of the retention of 64Cu-ATSM in cardiac myocytes using a novel incubation chamber for screening hypoxia-dependent radiotracers
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Demonstration of the retention of 64Cu-ATSM in cardiac myocytes using a novel incubation chamber for screening hypoxia-dependent radiotracers

机译:使用新型孵育室筛选缺氧依赖性放射性示踪剂,证明了心肌细胞中64Cu-ATSM的保留

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OBJECTIVE: We have designed a low-cost, reusable incubation system that allows cells to be cultured in either plated or suspension culture under complete atmospheric control for radiotracer characterization. We demonstrate its utility here in the first quantification of the hypoxia-dependent accumulation of Cu-diacetyl bis(N4-methylthiosemicarbazone) (Cu-ATSM) in adult rat ventricular myocytes (ARVMs). MATERIALS AND METHODS: ARVMs were allowed to adhere overnight in 9 cm culture plates (2×10 cells/dish) or were used in suspension culture, placed inside the chamber and equilibrated with either oxic (95 or 21% O2/5% CO2) or anoxic gas (95% N2/5% CO2). Cu-ATSM of 100 kBq was administered, and the cells were incubated for 30 or 60 min. Cells were then harvested, counted and fractionated to determine intracellular Cu biodistribution. RESULTS: After 1 h, the average cellular Cu retention in plated ARVMs under oxygenated conditions was 23.9±2.5 mBq/cell (95% O2), increasing to 27.3±5.1 under 21% O2 (P<0.05) and to 36.1±3.1 under 0% O2 (P<0.05). When ARVMs were cultured in suspension, normoxic-hypoxic contrast was less marked but still significant [63.2±14.1 vs. 53.4±10.9% mBq/cell after 30 min (P<0.05)]. Sixty percent of tracer accumulated in the cytosol, and, although total cellular retention increased during hypoxia, there was no enrichment in any particular cellular compartment. CONCLUSION: This apparatus allows the conduction of radiotracer uptake studies in cells under complete atmospheric control, as evidenced by our first demonstration of the hypoxia-dependent uptake of Cu-ATSM in ventricular myocytes. It is ideally suited for screening, validating and characterizing novel hypoxia-selective radiotracers.
机译:目的:我们设计了一种低成本,可重复使用的孵育系统,该系统可以在完全大气控制下以平板培养或悬浮培养的形式培养细胞,以表征放射性示踪剂。我们在成年大鼠心室肌细胞(ARVMs)中的Cu-二乙酰基双(N4-甲基硫代半碳酮)(Cu-ATSM)的低氧依赖性积累的首次量化中证明了其实用性。材料与方法:使ARVM在9 cm培养板(2×10细胞/皿)中粘附过夜,或用于悬浮培养,放置在室内并用有氧(95或21%O2 / 5%CO2)平衡或缺氧气体(95%N2 / 5%CO2)。施用100 kBq的Cu-ATSM,并将细胞孵育30或60分钟。然后收获细胞,计数并分级以确定细胞内铜的生物分布。结果:1小时后,在充氧条件下,平板ARVM中的平均细胞铜保留率为23.9±2.5 mBq / cell(95%O2),在21%O2下增加至27.3±5.1(P <0.05),在21%O2下增加至36.1±3.1 0%O2(P <0.05)。在悬浮状态下培养ARVM时,常氧-低氧对比不太明显,但仍然很显着[30分钟后分别为63.2±14.1和53.4±10.9%mBq /细胞(P <0.05)]。示踪剂的百分之六十堆积在细胞质中,尽管缺氧时总细胞保留增加,但在任何特定的细胞区室中都没有富集。结论:该仪器允许在完全大气控制的细胞中进行放射性示踪剂吸收研究,这一点已通过我们对心室肌细胞中Cu-ATSM的低氧依赖性吸收的首次证明得到了证明。它非常适合筛选,验证和表征新型的缺氧选择性放射性示踪剂。

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