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Early patterns of migration morphogenesis and intermediate filament expression of subventricular zone cells in the postnatal rat forebrain

机译:出生后大鼠前脑室下区细胞迁移形态发生和中间丝表达的早期模式

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摘要

Recent studies using retroviral labeling of subventricular zone (SVZ) progenitors in vivo in neonatal rats have directly demonstrated the generation of both astrocytes and oligodendrocytes from these progenitors. In the present study, we used a recombinant retroviral vector encoding beta-galactosidase, and analyzed brains within the first week after retroviral injection to trace the early routes that SVZ cells take as they migrate into white matter and cortex and characterized the early morphological and antigenic changes that accompanied their differentiation. SVZ cells follow specifically definable migratory routes as they colonize the cortex and subcortical white matter. Glial progenitors do not populate the cortex in a systematic, laminar fashion, as do neuroblasts. The abundance of labeled progenitors in radial arrangements and the close apposition of many immature cells to vimentin+ radial glial processes, suggest that glial progenitors migrate along radial glia. Labeled SVZ cells, which displayed a simple, unipolar or bipolar morphology, lacked detectable vimentin and nestin intermediate filaments. Similarly, beta- galactosidase-positive cells in white matter lacked these filaments. In contrast, labeled, multipolar cells in the cortex, and a few of the immature-appearing cortical cells expressed nestin and vimentin. At these early time points, GFAP was not detected in beta-galactosidase- labeled cells. Multipolar cells in cortex frequently displayed processes extending toward and contacting blood vessels. These observations suggest that the expression of nestin and vimentin occurs after progenitors emigrate from the SVZ and that filament expression and contact with blood vessels represent an early stage of astrocyte differentiation.
机译:最近在新生大鼠体内使用逆转录病毒标记的脑室下区域(SVZ)祖细胞的最新研究直接证明了从这些祖细胞产生星形胶质细胞和少突胶质细胞。在本研究中,我们使用了编码β-半乳糖苷酶的重组逆转录病毒载体,并在逆转录病毒注射后的第一周内分析了大脑,以追踪SVZ细胞迁移到白质和皮层中时所采取的早期途径,并表征了早期形态学和抗原性伴随着他们的差异而变化。 SVZ细胞定居在皮质和皮层下白质中时,遵循特定的迁移途径。胶质祖细胞不像神经母细胞那样以系统的,层状的方式填充皮层。放射状排列的标记祖细胞丰富,许多未成熟细胞紧密结合于波形蛋白+放射状神经胶质突,表明神经胶质祖细胞沿放射状胶质迁移。标记的SVZ细胞显示简单,单极或双极形态,缺少可检测的波形蛋白和巢蛋白中间丝。同样,白质中的β-半乳糖苷酶阳性细胞也缺少这些细丝。相比之下,皮质中标记的多极细胞和一些未成熟的皮质细胞表达巢蛋白和波形蛋白。在这些早期时间点,在β-半乳糖苷酶标记的细胞中未检测到GFAP。皮层中的多极细胞经常显示向血管延伸并与血管接触的过程。这些观察结果表明,巢蛋白和波形蛋白的表达在祖细胞从SVZ移出后发生,并且细丝表达和与血管的接触代表星形胶质细胞分化的早期。

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