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Regulation of Wnt signaling in tooth development and regeneration

Regulation of Wnt signaling in tooth development and regeneration
Wnt信号在牙齿发育和再生中的调节
批准号:
8855271
负责人:
Sarah E. Millar
金额:
$40.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-01 至 2016-07-31

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中文摘要
翻译
描述(申请人提供):在美国,因龋齿或意外事故导致的牙齿缺失是一个主要的健康问题,几乎1%的人口会发生遗传性少牙。目前的治疗方法依赖于外科植入物,这些植入物缺乏敏感性,机械故障,在骨丢失的情况下实用性受到限制。牙科生物工程的一个长期目标是使用患者自己的细胞在体外再生牙芽,这些牙芽可以在植入后发育成功能正常的牙齿。这一目标的最新进展包括成功地从分离的胚胎牙细胞或胚胎牙齿上皮细胞与成年间充质干细胞组合再生啮齿动物牙芽,并将这些重建植入以产生神经和血管化的牙齿结构。然而,这些重建结构的大小和形状是不同的,这表明需要确定控制这些特性的内生因素,并将其应用于生物工程策略。人类患者Wnt/β-catenin途径组分的突变与牙齿缺陷有关。特别是,WNT10A突变存在于超过50%的先天性非综合征性牙齿减少病例中,以及外胚层发育不良综合征的子集中。小鼠的遗传功能丧失实验揭示了牙齿发育早期对Wnt/β-catenin信号的需求,以及牙尖和牙根结构的形成。相反,在小鼠胚胎中,口腔上皮β-连环蛋白的强制激活会激活下游牙齿调节因子的级联,刺激牙齿的持续发育,而在成人中,则会导致门牙上皮形成类似胚胎的牙芽。胚胎或成人激活口腔上皮β-连环蛋白的结构分别为单尖瓣或钙化但不喷发。因此,为了正常的牙齿形态发生,必须严格控制Wnt信号。Wnt/β-catenin的活性受分泌的拮抗剂的调节,并受Wnt配体、受体和辅助因子的特定组合激活的交替的β-catenin非依赖通路的竞争所调节。根据已发表的数据和我们的初步研究,我们假设WNT10a及其相关的WNT10b通过激活β-连环素信号促进牙齿发育和磨牙尖的形成,并与分泌的Sostdc1、Wif1和DKK家族抑制物竞争形成牙齿和磨牙尖的发育。我们进一步假设,Wnt受体Fzd2通过Wnt5a介导非典型信号,拮抗β-连环蛋白途径,在牙齿生长和牙尖形成中发挥关键作用。我们将使用遗传功能丧失、挽救实验和体外方法来检验这些假说。我们将进一步利用空间和时间控制的递送系统来确定重组WNT10A和WNT10B蛋白是否可以用于促进,以及SOSTDC1、WIF1和DKK蛋白是否可以在三维培养中抑制胚胎牙胚和牙齿重建中的生长和牙尖的形成。这些实验的结果将为确定大小和形状的生物工程牙齿以及治疗影响牙齿发育的遗传性疾病提供潜在的策略。
英文摘要
DESCRIPTION (provided by applicant): Tooth loss through decay or accident is a major health problem in the USA, and genetic oligodontia occurs in almost 1% of the population. Current therapies rely on surgical implants that suffer from lack of sensitivity, mechanical failur and restricted utility in cases of bone loss. A long term goal of dental bioengineering is to use a patient's own cells for in vitro regeneration of tooth buds that can develop into normally functioning teeth following implantation. Recent progress towards this goal includes successful regeneration of rodent tooth buds from dissociated embryonic dental cells, or embryonic dental epithelia combined with adult mesenchymal stem cells, and implantation of these reconstructs to produce tooth structures that are innervated and vascularized. However, the sizes and shapes of these reconstructed structures are variable, indicating a need to identify endogenous factors that control these properties and could be applied in bioengineering strategies. Mutations of Wnt/beta-catenin pathway components in human patients are associated with dental defects. In particular, mutations in WNT10A are present in more than 50% of congenital non-syndromic hypodontia cases, as well as in a subset of ectodermal dysplasia syndromes. Genetic loss of function experiments in mice reveal requirements for Wnt/beta-catenin signaling at early stages of tooth development, and for formation of both cusp and root structures. Conversely, forced activation of oral epithelial beta-catenin in mouse embryos activates a cascade of downstream dental regulators, stimulating continuous tooth development, and in adults causes formation of embryonic-like tooth buds from incisor epithelia. The structures resulting from embryonic or adult activation of oral epithelial beta-catenin are, respectively, unicuspid, or ca mineralize but do not erupt. Thus, Wnt signaling must be tightly controlled for normal tooth morphogenesis. Wnt/beta-catenin activity is modulated by secreted antagonists, and by competition with alternate, beta-catenin independent pathways that are activated by specific combinations of Wnt ligands, receptors and co-factors. Based on published data and our preliminary studies we hypothesize that Wnt10a and its relative Wnt10b promote tooth development and molar cusp formation by activating beta-catenin signaling, and compete with secreted Sostdc1, Wif1 and Dkk family inhibitors to pattern tooth and cusp development. We further hypothesize that the Wnt receptor Fzd2 mediates non- canonical signaling by Wnt5a, which antagonizes the beta-catenin pathway and plays a critical role in tooth growth and cusp formation. We will test these hypotheses using genetic loss of function and rescue experiments and in vitro approaches. We will further utilize spatially and temporally-controlled delivery systems to determine whether recombinant WNT10A and Wnt10B proteins can be used to promote, and SOSTDC1, WIF1 and DKK proteins to inhibit, growth and cusp formation in embryonic tooth germs and tooth reconstructs in 3-D culture. Results from these experiments will suggest potential strategies for bioengineering teeth of defined size and shape, and for treating inherited conditions that affect tooth development.
期刊论文(4)
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会议论文
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超纳米晶金刚石尖端集成到加热原子力显微镜悬臂上。
DOI: 10.1088/0957-4484/23/49/495302
发表时间: 2012
期刊: Nanotechnology
影响因子: 3.5
作者: [Kim,HoeJoon, Moldovan,Nicolaie, Felts,JonathanR, Somnath,Suhas, Dai,Zhenting, Jacobs,TevisDB, Carpick,RobertW, Carlisle,JohnA, King,WilliamP]
通讯作者: King,WilliamP
Role of surface-bound intermediates in the oxygen-assisted synthesis of amides by metallic silver and gold.
表面结合中间体在金属银和金氧辅助合成酰胺中的作用。
DOI: 10.1021/ja303178z
发表时间: 2012
期刊: Journal of the American Chemical Society
影响因子: 15
作者: [Siler,CassandraGF, Xu,Bingjun, Madix,RobertJ, Friend,CynthiaM]
通讯作者: Friend,CynthiaM
Molecular mechanisms controlling skin heterogeneity
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海外基金