Alopecia and Ulcerative Dermatitis in B6 Mice
Alopecia and Ulcerative Dermatitis in B6 Mice
批准号:
7230185
负责人:
JOHN Paul SUNDBERG
金额:
$22.63万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-04-20 至 2008-01-31
关键词:
AddressAffectAfrican AmericanAlcohol dehydrogenaseAlopeciaBackcrossingsBinding ProteinsBinding SitesBiochemical GeneticsBiomedical ResearchBreedingChronicCicatrixClinicalComb animal structureCommunitiesComplexDataDermatitisDiagnosisDietDiseaseDisease susceptibilityDrug Metabolic DetoxicationEnzymesFamily memberFemaleFigs - dietaryFrequenciesFutureGenesGeneticGenomeGoalsGrantGroomingHereditary DiseaseHistologicHistopathologyHousingHumanIn VitroInbred StrainLaboratoriesLaboratory AnimalsLesionLife StyleMapsMetabolismMolecular ProfilingMonitorMusOxidoreductasePathogenesisPathway interactionsPatientsPatternPhenotypePolymerase Chain ReactionProteinsQuantitative Trait LociResearchResistanceResourcesRetinalRetinal dehydrogenaseRetinoic Acid BindingRetinoidsRodentRoleSeriesServicesSeveritiesSkinSusceptibility GeneSyndromeSynthetic DietTestingThinkingTimeToxic effectTretinoinVitamin AWomanWorkbasecomparativehuman diseasein vivoinsightmouse modeloutcome forecastoxidationsimple sequence length polymorphismskin disordertrait
中文摘要
描述(申请人提供):人类中心性离心性瘢痕性脱发(CCCA)曾被认为是一种主要影响黑人女性的美容障碍,称为热梳型脱发。最近,CCCA被认为是一种原发病,以前被称为毛囊变性综合征,现在被称为CCCA。人们对这种毁容的人类疾病的发病机制知之甚少。存在许多人类皮肤病的小鼠模型。一种称为B6脱发、B6皮炎或慢性溃疡性皮炎的菌株特异性疾病是一个主要的生物医学研究资源问题,在临床和组织学上与CCCA基本相同,主要影响黑色雌性小鼠,特别是C57BL/6J(B6)。我们将完善比较观察,启动研究以确定这种小鼠疾病是否有遗传基础,并测试维生素A代谢异常可能是潜在机制之一的假设。许多基因都有维甲酸结合部位,这些部位构成了调控复合体的一部分。视网膜氧化为视黄酸是通过几种视网膜脱氢酶的作用发生的,其中两种(Aldh1a2和ALDH1A3)在B6小鼠中与其他常见的近交系相比表达不同。B6小鼠天生具有酒精脱氢酶4(ADH4)的亚型,ADH4可能参与解毒维生素A代谢物,导致CCCA病变开始处的这些酶表达模式发生变化。脱氢酶/还原酶SDR家族成员9(Dhrs9)蛋白水平在脱发频率较高的B6亚株中上调,进一步产生维甲酸。Dhrs9在脱发频率较低的患者中表达下调。啮齿类动物的高维生素A饮食可能会使这种情况变得复杂。我们将通过评估这些基因和其他基因在B6和密切相关的亚株中的表达来验证这一假设,这些研究的结果将有助于改进B6小鼠的繁殖和群体管理,以消除或最大限度地减少B6皮炎对研究的任何影响。未来的工作将把研究结果应用于人类患者,以改变生活方式或更合适地治疗CCCA,以减少痛苦和毁容。
英文摘要
DESCRIPTION (provided by applicant): Central centrifugal cicatricial alopecia (CCCA) in humans was once thought to be a grooming disorder primarily affecting black women called "hot comb alopecia". More recently, CCCA is considered to be a primary disease, formerly called "follicular degeneration syndrome" and currently CCCA. Little is known about the pathogenesis of this disfiguring human disease. Mouse models of many human skin diseases exist. A strain specific disease called B6 alopecia, B6 dermatitis, or chronic ulcerative dermatitis is a major biomedical research resource problem that is clinically and histologically essentially identical to CCCA and affects primarily black female mice, particularly C57BL/6J (B6). We will refine the comparative observations, initiate studies to determine if this mouse disease has a genetic basis, and test the hypothesis that abnormal metabolism of vitamin A may be 1 of the underlying mechanisms. Many genes have retinoic acid binding sites that form part of a regulatory complex. Oxidation of retinal to retinoic acid occurs through the action of several retinal dehydrogenases, 2 of which (Aldh1a2 and Aldh1a3) are differentially expressed in B6 mice compared to other common inbred strains. B6 mice are naturally hypomorphic for alcohol dehydrogenase 4 (Adh4), which may be involved in detoxifying vitamin A metabolites resulting in these enzyme expression pattern changes where CCCA lesions begin. Dehydrogenase/reductase SDR family member 9 (Dhrs9) protein levels are upregulated in B6 substrains with high alopecia frequency further producting retinoic acid. Dhrs9 is downregulated in those with low alopecia frequency. Rodent diets high in vitamin A may complicate this situation. We will test this hypothesis by evaluating expression of these and other genes in B6 and closely related substrains given synthetic diets with defined levels of vitamin A. Results of these studies will help modify breeding and colony management of B6 mice to eliminate or minimize any impact of B6 dermatitis on research. Future work will apply findings to human patients to either modify lifestyle or more appropriately treat CCCA to reduce suffering and disfiguration.
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