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Role of primary cilia in corneal development and repair

Role of primary cilia in corneal development and repair
初级纤毛在角膜发育和修复中的作用
批准号:
8723228
负责人:
Carlo Iomini
金额:
$41.53万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-01 至 2017-07-31

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中文摘要
翻译
描述(由申请人提供):角膜的透明度、结构完整性和屏障功能取决于其复杂的分层组织和填充它的细胞的功能。这种组织是通过在发育过程中发生的许多严格控制的形态发生事件来实现的。由于创伤、疾病或衰老导致的角膜层损伤和异常修复会损害角膜透明度并导致失明。我们以前已经表明,初级纤毛在角膜内皮(CE)的组织中起形态发生作用。我们有初步的数据表明,初级纤毛通过组织微管细胞骨架和角膜内皮细胞(CEC)的细胞内极性参与损伤后Descemet膜覆盖的重建,从而参与CE修复。我们现在已经将这些观察扩展到其他类型的角膜细胞。我们发现睫状体的组装/拆卸与角膜发育的特定形态发生步骤之间存在相关性。我们已经检测到三种角膜细胞类型中初级纤毛的超微结构差异,这表明它们具有不同的功能。我们的角膜上皮修复实验表明,与完整角膜相比,损伤区域新迁移的角膜上皮中有更多的纤毛细胞。我们还在角膜上皮细胞损伤后,在角膜周围的角膜上皮细胞簇中检测到纤毛介导的通路刺猬蛋白(Hh)的激活。这一建议解决了主要假设,即角膜初级纤毛是角膜发育和修复过程中正常模式所需的形态发生细胞器。在目的1中,我们将阐明纤毛蛋白在角膜发育和纤毛病相关ASD中的作用。首先,我们将确定纤毛的组装、大小和定位如何与小鼠角膜发育过程中的特定形态发生过程相关,我们将从遗传学上解剖初级纤毛在胚胎学上不同的角膜细胞群中的作用,最后我们将通过Gprcr48测试纤毛是否控制ASD基因Pitx2的表达。在目标3中,我们将通过诱导体内损伤来阐明CE纤毛在正常和IFT条件突变小鼠的修复过程中的作用。我们将通过慢病毒介导的基因过表达或RNAi敲除来评估特定纤毛介导途径在体内愈合过程中对纤毛组装/拆卸的影响。在目的3中,我们将通过评估条件纤毛敲除小鼠与对照动物的上皮伤口愈合速度来确定初级纤毛在角膜上皮修复中的作用。我们将研究角膜缘附近角膜上皮细胞中损伤激活的Hh信号的性质,我们将使用假定的角膜缘上皮干细胞“标记物”来确定表达纤毛的细胞是否保持干细胞身份。本研究将阐明所需的信号通路
英文摘要
DESCRIPTION (provided by applicant): Transparency, structural integrity and barrier function of the cornea depends on its complex, layered organization and the function of the cells that populate it. This organization is achieved through a number of tightly controlled morphogenetic events occurring during development. Damage and abnormal repair of the corneal layers due to trauma, diseases or aging can compromise corneal transparency and lead to blindness. We have previously shown that the primary cilium plays a morphogenetic role in the organization of the corneal endothelium (CE). We have preliminary data showing that the primary cilium is involved in CE repair by organizing the microtubular cytoskeleton and intracellular polarity of corneal endothelial cells (CEC) involved in re-establishment of Descemet's membrane coverage after injury. We have now extended these observations to the other corneal cell types. We have found a correlation between ciliary assembly/disassembly and specific morphogenetic steps of the corneal developmental. We have detected ultrastructural differences of the primary cilia in the three corneal cell types that suggest distinct functions. Our experiments in corneal epithelium repair show a higher number of ciliated cells in newly migrated corneal epithelium on the injured area compared to that observed in intact corneas. We have also detected an activation of the cilia-mediated pathway hedgehog (Hh) in clusters of corneal epithelial cells at the periphery of the cornea upon epithelial injury. This proposal addresses the main hypothesis that the corneal primary cilia are morphogenetic organelles required for normal patterning of the cornea during development and repair. In aim 1 we will elucidate the role of ciliary proteins in corneal development and ciliopathy-related ASD. First, we will pinpoint how ciliary assembly, size and localization correlate to specific morphogenetic processes during development of the mouse cornea, we will genetically dissect the role of primary cilia in embryologically distinct groups of corneal cells and finally we will test whether cilia control the expression of the ASD gene Pitx2, through Gprcr48. In aim 3 we will elucidate the role of the CE cilium during repair in normal and IFT conditional mutant mice by inducing in vivo injuries. We will assess the effect of specific cilia-mediated pathways on cilia assembly/disassembly during healing in-vivo via lentiviral-mediated gene over expression or RNAi knockdown. In aim 3 we will determine the role of primary cilia in corneal epithelium repair by assessing the speed of epithelial wound closure in conditional ciliary knockout mice compared to that of control animals. We will examine the nature of injury-activated Hh signaling in corneal epithelial cells in proximity of the limbus and we will use putative limbal epithelial stem cell "markers" to determine whether the cells expressing cilia maintain stem cell identity. This study will elucidate signaling pathways required for proper corneal cell differentiation and patterning and will lead to the identification of new therapeutic targets to counteract aging and traumatic corneal cell loss, but may also have wider implications for understanding complex morphogenetic events in other tissues.
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Elucidating signaling networks in Anterior Segment development, repair and diseases
  • 批准号:
    10718122
  • 项目类别:
  • 资助金额:
    $41.07万
  • 财政年份:
    2023
  • 负责人:
    Carlo Iomini
  • 依托单位:
Role of Primary Cilia-mediated Signaling in Development and Regeneration of the Meibomian Glands
  • 批准号:
    10224210
  • 项目类别:
  • 资助金额:
    $19.85万
  • 财政年份:
    2020
  • 负责人:
    Carlo Iomini
  • 依托单位:
Role of Primary Cilia-mediated Signaling in Development and Regeneration of the Meibomian Glands
  • 批准号:
    10057624
  • 项目类别:
  • 资助金额:
    $24.56万
  • 财政年份:
    2020
  • 负责人:
    Carlo Iomini
  • 依托单位:
Role of primary cilia in corneal development and repair
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