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Exploiting the hair-brain connection to treat perinatal brain disease

Exploiting the hair-brain connection to treat perinatal brain disease
利用头发与大脑的联系来治疗围产期脑部疾病
批准号:
8468762
负责人:
SAMUEL JEREMY PLEASURE
金额:
$36.78万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-07-15 至 2015-05-31

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中文摘要
翻译
描述(申请人提供):我们已经开发了大量的初步数据表明,Sonic Hedgehog(Shh),由背部的毛囊产生,从起源的细胞扩散到大脑内,调节海马齿状回的发育,以及在胚胎晚期和出生后早期皮质内少突胶质细胞前体细胞的迁移。利用细胞外Shh的抗体,我们能够证明,在有条件地去除毛囊和皮肤中Shh的小鼠中,到达发育中皮质的Shh的数量减少,并且在转基因信号报告鼠的大脑中存在减少的信号。这表明,在这些小鼠中,到达皮质的配体的功能量减少了。这些研究表明,如果在皮肤和毛囊中产生足够高水平的其他蛋白质配体,可能会进入较晚的胚胎和出生后早期发育的大脑,使我们能够绕过基因治疗或针对皮质的细胞移植所固有的一些障碍。在这项提议中,我将检验这一假设,并开始为确定这种方法在人类身上的可行性奠定基础。有几个难以治疗的疾病在出生前后表现出来,最终可能会服从这种治疗路线。一个特别重要的综合征是围产期缺氧缺血性脑损伤。患有这种综合征的新生儿由于创伤分娩周围的事件导致严重损伤,包括未成熟神经元和神经胶质前体细胞的死亡,导致氧气供应减少。最近的研究已经确定了在进入人体试验的动物身上有希望的非肠道治疗方法,但由于需要静脉注射这些基于蛋白质的药物,这些方法可能会导致更多的非靶点效应和发病率。如果它们能在局部投放并从毛囊扩散,这可能会使治疗更有针对性,并减少发病率。此外,还有许多遗传代谢性疾病,由于酶缺乏或其他遗传损伤,出生后不久就会出现灾难性后果。因此,我提出了这项建议,以测试这种方法的前景。
英文摘要
DESCRIPTION (provided by applicant): We've developed extensive preliminary data showing that Sonic Hedgehog (Shh), produced by the hair follicles dorsal to the cortex, diffuses from the cells of origin to act within the brain to regulate the development of the hippocampal dentate gyrus and the migration of oligodendrocyte progenitors within the cortex at late embryonic and early postnatal stages. Using antibodies to extracellular Shh we are able to show that the amount of Shh reaching the developing cortex is reduced in mice with conditional ablation of Shh in the hair follicles and skin and that there is reduced signaling in transgenic signaling reporter mice in the brain. This indicates that the functional amounts of ligand reaching the cortex are reduced in these mice. These studies suggest the possibility that other protein ligands, if produced in the skin and hair follicles at high enough levels, would have access to the later embryonic and early postnatal developing brain, allowing us to circumvent some of the hurdles inherent in gene therapy or cell transplantation targeted to the cortex. In this proposal I will test this hypothesis and begin to lay the groundwork for determining the viability of this approach in humans. There are several difficult to treat disorders manifesting themselves around birth that may ultimately be amenable to this route of treatment. One particularly important syndrome is perinatal hypoxic-ischemic brain injury. Newborns with this syndrome have decreased oxygen supply due to events surrounding traumatic birth leading to significant injury including death of immature neurons and glial precursors. Recent studies have identified promising parenteral therapies in animals that are moving into human trials, but these face the possibility of causing increased off-target effects and morbidities because of the need to give these protein based agents intravenously. If they could be delivered locally and diffuse from the hair follicles and this might allow more targeted treatment with reduced morbidity. In addition, there are a host of genetic metabolic diseases that present with catastrophic consequences soon after birth due to enzyme deficiencies or other genetic lesions. Thus, I have developed this proposal to test the prospects for this approach.
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