Maeda K, Hata R, Hossmann K A
Department of Experimental Neurology, Max-Planck-Institute for Neurological Research, Cologne, Germany.
Neurobiol Dis. 1999 Apr;6(2):101-8. doi: 10.1006/nbdi.1998.0235.
C57Black/6 and SV129 mice are widely used for the production of transgenic mutants in molecular stroke research but the ischemic susceptibility of these strains is influenced by differences in vascular anatomy and the responsiveness to excitotoxins and vasodilatory stimuli. To differentiate between these opposing effects on infarct size, the vascular territory of the two strains was correlated with the hemodynamic, metabolic, and morphological consequences of permanent middle cerebral artery (MCA) occlusion. The vascular anatomy was studied by latex infusion, brain infarction by vital staining, the size of the ischemic penumbra by imaging of ATP and protein synthesis, and blood flow by laser-Doppler flowmetry. In C57Black/6 mice the MCA-supplied vascular territory and the size of brain infarcts were significantly larger than in SV129 mice but the size of the penumbra and the residual blood flow in the center of the MCA-supplying territory were similar in both strains. These findings suggest that differences in infarct size in C57Black/6 and SV129 mice are determined mainly by the vascular anatomy and not by differences in collateral vascular responsiveness or excitotoxicity.
C57黑/6小鼠和SV129小鼠在分子中风研究中被广泛用于生产转基因突变体,但这些品系的缺血易感性受血管解剖结构差异以及对兴奋性毒素和血管舒张刺激的反应性影响。为了区分这些对梗死灶大小的相反影响,将这两个品系的血管区域与大脑中动脉(MCA)永久性闭塞的血流动力学、代谢和形态学后果进行关联。通过乳胶灌注研究血管解剖结构,通过活体染色研究脑梗死,通过ATP和蛋白质合成成像研究缺血半暗带大小,通过激光多普勒血流仪研究血流。在C57黑/6小鼠中,MCA供血的血管区域和脑梗死灶大小明显大于SV129小鼠,但半暗带大小以及MCA供血区域中心的残余血流在两个品系中相似。这些发现表明,C57黑/6小鼠和SV129小鼠梗死灶大小的差异主要由血管解剖结构决定,而非由侧支血管反应性或兴奋性毒性差异决定。