The role of Slug in cutaneous reepithelialization
The role of Slug in cutaneous reepithelialization
批准号:
7658899
负责人:
LAURIE G HUDSON
金额:
$28.47万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-09-11 至 2011-07-31
关键词:
ActinsAdherens JunctionAdhesionsAdultAttentionCell AdhesionCell ProliferationCellsChronicClinicalComplexCutaneousCytoskeletonDataDesmosomesDevelopmentDevelopmental ProcessEmbryoEmbryonic DevelopmentEpidermisEpithelialEpithelial CellsEventGene FamilyGenesGenetic ModelsGoalsHealedHemidesmosomesImmigrationImpaired wound healingIn VitroIndividualIntermediate FilamentsInterventionKnockout MiceLightMalignant NeoplasmsManuscriptsMeasuresMedicalMesenchymalModelingMolecularMorphogenesisMusOrganismPathway interactionsPhenotypePlayProcessProtein FamilyRNARegulationRegulatory PathwayReportingResearch PersonnelRoleSnailsStagingStructureTestingTissuesWorkWound HealingZinc Fingersbasecell motilitycell typehealingimprovedin vivoinsightkeratinocytemembermigrationneoplastic cellprogramsregenerativeresearch studyresponserestorationslugtranscription factorwound
中文摘要
描述(由申请人提供):有效的伤口修复需要不同细胞类型、途径和过程的复杂和综合相互作用。上皮再生和屏障功能的恢复是成功愈合的一个要求,也是在慢性伤口中被破坏的过程。遗传模型对于鉴定影响伤口愈合特定方面的基因至关重要,并且我们已经获得证据表明发育转录因子Slug/Snail 2是体外、离体和体内上皮生长的关键调节因子。Slug和Snail蛋白家族的其他成员与发育和癌症中粘附和迁移的调节有关。创伤修复和胚胎发育过程之间的相似性正在受到越来越多的关注,特别是关于共享调控途径的潜力。基于我们的证据表明,鼻涕虫可能有助于成人表皮再生过程,本项目将调查鼻涕虫对伤口边缘角质形成细胞生长的影响。我们的总体项目目标是了解在再上皮化过程中调节伤口边缘角质形成细胞表型可塑性的机制,并在此过程中阐明在受损伤口愈合条件下可能存在缺陷的过程。在这个提议中,我们的目标是阐明由鼻涕虫控制的伤口边缘的事件。我们假设,鼻涕虫发挥核心作用,在调节部分和可逆的上皮间质转化观察伤口边缘。为了检验这一假设,我们将使用Slug缺陷的遗传模型来1)定义Slug在导致细胞增殖和迁移的角质形成细胞活化程序中的功能作用,2)使用微阵列方法建立Slug在上皮再形成中的作用的分子定义,和3)使用正常和受损伤口愈合的模型建立Slug表达升高是否增强体内伤口修复。这些研究将提供关于鼻涕虫对成功再上皮化所需的功能和表型可塑性的贡献的信息。了解正常伤口修复中的关键调节机制可能会为导致伤口愈合受损的医疗条件的临床干预确定新的途径。
英文摘要
DESCRIPTION (provided by applicant): Effective wound repair requires a complex and integrated interplay of different cell types, pathways, and processes. Reepithelialization and restoration of barrier function is one requirement for successful healing and a process that is disrupted in chronic wounds. Genetic models have been pivotal for identification of genes that impinge on specific aspects wound healing, and we have obtained evidence that the developmental transcription factor Slug/Snail2 is a key regulator of epithelial outgrowth in vitro, ex vivo and in vivo. Slug and other members of the Snail family of proteins have been associated with regulation of adhesion and migration in development and cancer. The similarities between wound repair and developmental processes in the embryo are receiving increased attention, particularly with regard to the potential for shared regulatory pathways. Based on our evidence that Slug may contribute to regenerative processes in adult epidermis, this project will investigate the impact of Slug on keratinocyte outgrowth at wound borders. Our overall project goal is to understand mechanisms regulating the phenotypic plasticity of keratinocytes at wound margins during reepithelialization, and in doing so, shed light on processes that may be defective under conditions of impaired wound healing. In this proposal, our goal is to elucidate the events at the wound margin that are governed by Slug. We hypothesize that Slug plays central roles in regulating the partial and reversible epithelial-mesenchymal transition observed at wound margins. To test this hypothesis we will use a genetic model of Slug deficiency to 1) define the functional role of Slug in the keratinocyte activation program leading to cell proliferation and migration, 2) establish a molecular definition for the role of Slug in reepithelialization using microarray approaches and 3) establish whether elevated Slug expression augments wound repair in vivo using models of normal and impaired wound healing. These studies will provide information on the contributions of Slug to the functional and phenotypic plasticity required for successful reepithelialzation. Understanding key regulatory mechanisms in normal wound repair may identify new avenues for clinical intervention in medical conditions leading to impaired wound healing.
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