...
首页> 外文期刊>Investigative radiology >Effect of Long-Term Retention of Gadolinium on Metabolism of Deep Cerebellar Nuclei After Repeated Injections of Gadodiamide in Rats
【24h】

Effect of Long-Term Retention of Gadolinium on Metabolism of Deep Cerebellar Nuclei After Repeated Injections of Gadodiamide in Rats

机译:钆长期保留对大鼠钆胺重复注射后深层小核代谢的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Objectives The aim of this study was to determine potential metabolism and histological modifications due to gadolinium retention within deep cerebellar nuclei (DCN) after linear gadolinium-based contrast agent injection (gadodiamide) in rats at 1 year after the last injection. Materials and Methods Twenty female rats received 20 doses of gadodiamide (0.6 mmol of gadolinium per kilogram each) over 5 weeks. They were followed at 1 week (M0), 6 weeks (M1), and 54 to 55 weeks (M13) postinjections to evaluate hypersignal on unenhanced T1-weighted magnetic resonance imaging and metabolic alterations by H-1 magnetic resonance spectroscopy (H-1-MRS). At 1 year postinjections, brains were sampled to determine the localization of gadolinium within cerebellum by laser ablation inductively coupled mass spectroscopy and to evaluate morphological changes by semiquantitative immunofluorescence analysis. Results There is a significant increase of the ratio DCN/brainstem for the gadodiamide group at M0 (+7.2% vs control group = 0.989 +/- 0.01), M1 (+7.6% vs control group = 1.002 +/- 0.018), and it lasted up to M13 (+4.7% vs control group = 0.9862 +/- 0.008). No variation among metabolic markers (cellular homeostasis [creatine, choline, taurine], excitatory neurotransmitter [glutamate], and metabolites specific to a cellular compartment [N-acetyl aspartate for neurons and myo-inositol for glial cells]) were detected by H-1-MRS between gadodiamide and saline groups at M0, M1, and M13. At M13, laser ablation inductively coupled mass spectroscopy demonstrated that long-term gadolinium retention occurred preferentially in DCN. No histological abnormalities (including analysis of astrocytes, neurons, and microglial cells) were found in the rostral part of DCN. Conclusions Repeated administration of gadodiamide lead to a retention of gadolinium preferentially within DCN at 1 year postinjections. This retention did not lead to any detectable changes of the measured metabolic biomarkers nor histological alterations.
机译:目的本研究的目的是确定在最后一次注射后1年内的直链钆核核(DCN)内的钆核(DCN)内的钆潴留潜在的代谢和组织学改性。 20雌性大鼠的材料和方法接受了20剂的钆(每公斤钆钆)超过5周。它们在1周(M0),6周(M1)和54至55周(M13)发出后的3周(M0)和55周(M13),以评估H-1磁共振光谱法(H-1 -太太)。在1年的发布射击中,通过激光烧蚀电感耦合的质谱进行取样以确定小脑内钆内钆的定位,并通过半定量免疫荧光分析评估形态学变化。结果M0(+ 7.2%VS对照组= 0.989 +/- 0.01),M1(+ 7.6%VS对照组= 1.002 +/- 0.018)显着增加了Gadodiamide组的比率DCN /脑干它持续高达M13(+ 4.7%VS控制组= 0.9862 +/- 0.008)。通过H-检测到代谢标志物(细胞稳态[肌酸胆碱,牛磺酸),兴奋性神经递质[谷氨酸特异性的代谢物],H-在M0,M1和M13的钆胺和盐碱之间的1-MRS。在M13,激光烧蚀电感耦合的质谱证明,在DCN中优先发生长期钆潴留。没有组织学异常(包括星形胶质细胞,神经元和小细胞的分析)在DCN的升杆部分中发现。结论重复施用钆胺导致1年患病的DCN中优先保留钆。这种保留不会导致测量的代谢生物标志物的任何可检测变化也是组织学改变。

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