Presset Antoine, Bodard Sylvie, Lefèvre Antoine, Millet Anaïs, Oujagir Edward, Dupuy Camille, Iazourène Tarik, Bouakaz Ayache, Emond Patrick, Escoffre Jean-Michel, Nadal-Desbarats Lydie
UMR 1253, iBrain, Inserm, Université de Tours, Tours, France.
Département Analyses Chimique et Métabolomique, PST Analyses des Systèmes Biologiques, Université de Tours, Tours, France.
Front Mol Neurosci. 2024 Nov 20;17:1383963. doi: 10.3389/fnmol.2024.1383963. eCollection 2024.
Microbubble (MB)-assisted ultrasound (US) is an innovative modality for the non-invasive, targeted, and efficient delivery of therapeutic molecules into the brain. Previously, we reported the first metabolomic signature of blood-brain barrier opening (BBBO) induced by MB-assisted US. In the present study, the neurometabolic consequences of acoustically-mediated BBBO on cerebral tissue were investigated using multimodal metabolomics approaches. Sinusoid US waves (1 MHz, peak negative pressure 0.6 MPa, burst length 10 ms, total treatment time 30 s, MB bolus dose 0.7 × 10 MBs/g) were applied on the rats' right striatum (ipsilateral side). Brain was collected and both striata were then dissected 3 h, 2 days, and 1 week after BBBO. After tissue preparation, the samples were analyzed using nuclear magnetic resonance spectrometry (NMRS) and high-performance liquid chromatography coupled to mass spectrometry (HPLC-MS). Our findings showed a slight disruption of metabolic pathways in contralateral striata of animals. Analyses of metabolic pathways indicated changes in amino acid metabolisms. In addition, tryptophan derivate dosages revealed the perturbation of a central metabolite of the kynurenine pathway (i.e., 3-hydroxy-kynurenine). In conclusion, the acoustically-mediated BBBO of the ipsilateral cerebral hemisphere induced significant change in metabolism of contralateral one.
微泡(MB)辅助超声(US)是一种将治疗性分子无创、靶向且高效地递送至大脑的创新方式。此前,我们报道了由MB辅助US诱导的血脑屏障开放(BBBO)的首个代谢组学特征。在本研究中,我们使用多模态代谢组学方法研究了声学介导的BBBO对脑组织的神经代谢影响。将正弦US波(1兆赫,峰值负压0.6兆帕,脉冲长度10毫秒,总治疗时间30秒,MB推注剂量0.7×10个微泡/克)施加于大鼠右侧纹状体(同侧)。在BBBO后3小时、2天和1周收集大脑并解剖双侧纹状体。组织制备后,使用核磁共振光谱法(NMRS)和高效液相色谱-质谱联用(HPLC-MS)对样品进行分析。我们的研究结果显示,动物对侧纹状体的代谢途径略有破坏。代谢途径分析表明氨基酸代谢发生了变化。此外,色氨酸衍生物剂量显示犬尿氨酸途径的一种中心代谢物(即3-羟基犬尿氨酸)受到了干扰。总之,同侧脑半球的声学介导BBBO导致对侧脑半球的代谢发生了显著变化。