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ptc+/-小鼠视网膜边缘的持续祖细胞

Persistent progenitors at the retinal margin of ptc+/- mice.

作者信息

Moshiri Ala, Reh Thomas A

机构信息

Neurobiology and Behavior Program, Department of Biological Structure, University of Washington, School of Medicine, Seattle, Washington 98195, USA.

出版信息

J Neurosci. 2004 Jan 7;24(1):229-37. doi: 10.1523/JNEUROSCI.2980-03.2004.

Abstract

The hedgehog signaling pathway is a key regulator of neural development, affecting both proliferation and differentiation of neural progenitors. Sonic hedgehog (Shh) is a mitogenic factor for retinal progenitors in vitro. To determine whether this signaling system is important in vivo for regulating retinal progenitor proliferation, we analyzed mice with a single functional allele of the Shh receptor patched (ptc). We found that ptc+/- mice had increased numbers of neural progenitors at every stage of retinal development that we examined. In addition, these mice had persistent progenitors at the retinal margin for up to 3 months of age, reminiscent of the ciliary marginal zone of lower vertebrates. To test whether the progenitors at the retinal margin of ptc+/- mice could be induced to regenerate retinal neurons in response to damage, we bred ptc+/- mice onto a retinal degeneration background (pro23his rhodopsin transgenic) and labeled newly generated cells with combined immunohistochemistry for bromodeoxyuridine and retinal neuron and photoreceptor-specific markers. We found newly generated neurons and photoreceptors at the retinal margin in ptc+/-;pro23his mice. We propose that the Shh pathway may act as a regulator of both prenatal and postnatal retinal growth.

摘要

刺猬信号通路是神经发育的关键调节因子,影响神经祖细胞的增殖和分化。音猬因子(Shh)在体外是视网膜祖细胞的促有丝分裂因子。为了确定该信号系统在体内调节视网膜祖细胞增殖是否重要,我们分析了具有单个功能性音猬因子受体(ptc)等位基因的小鼠。我们发现,在我们检查的视网膜发育的每个阶段,ptc+/-小鼠的神经祖细胞数量都有所增加。此外,这些小鼠在视网膜边缘的祖细胞持续存在至3月龄,这让人联想到低等脊椎动物的睫状边缘区。为了测试ptc+/-小鼠视网膜边缘的祖细胞是否能在损伤后被诱导再生视网膜神经元,我们将ptc+/-小鼠培育到视网膜退化背景(pro23his视紫红质转基因)上,并用溴脱氧尿苷和视网膜神经元及光感受器特异性标记物的联合免疫组织化学方法标记新生成的细胞。我们在ptc+/-;pro23his小鼠的视网膜边缘发现了新生成的神经元和光感受器。我们提出,Shh信号通路可能是产前和产后视网膜生长的调节因子。

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本文引用的文献

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