CFTR inhibitors for therapy of polycystic kidney disease
CFTR inhibitors for therapy of polycystic kidney disease
批准号:
7812584
负责人:
ALAN S VERKMAN
金额:
$49.05万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-25 至 2011-07-31
关键词:
AddressAffectAnimal ModelAnimal TestingAreaAutosomal Dominant Polycystic KidneyBioavailableCell Culture TechniquesCell LineCellsChloride ChannelsChloride IonChloridesChronic Kidney InsufficiencyClinicalClinical Drug DevelopmentCoupledCyclic AMPCystCyst FluidCystic FibrosisCystic Fibrosis Transmembrane Conductance RegulatorDataDevelopmentDevelopment PlansDiagnosticDialysis procedureDiseaseDisease modelDrug KineticsEpithelial CellsExcretory functionFDA approvedFamilyFluids and SecretionsGoalsGrowthHereditary DiseaseHuman GeneticsHyperplasiaIndividualJointsKidneyKidney DiseasesKidney FailureKidney TransplantationKnockout MiceLaboratoriesLicensingLifeLiquid substanceMedicalMetabolismModelingMorphologyMusMutateNational Institute of Diabetes and Digestive and Kidney DiseasesOrgan Culture TechniquesOutcomePathogenesisPathway interactionsPharmaceutical PreparationsPharmacologic SubstancePharmacologyPolycystic Kidney DiseasesPropertyProteinsPublishingQuinoxalinesRenal functionResearchResistanceTechnologyTestingToxic effectTranslatingTranslational ResearchTranslationsUrineWorkabsorptionbasedrug candidatedrug testingexperienceglycine hydrazidehigh throughput screeningin vivo Modelinhibitor/antagonistmouse modelpre-clinicalpreventpublic health relevancesmall moleculetool
中文摘要
描述(由申请人提供):该申请涉及广泛的挑战领域(15):转化科学和特定的挑战主题,15- DK-103:将NIDDK疾病发病机制中的新分子和途径的发现转化为潜在的治疗,诊断或研究工具。多囊肾病是人类最常见的遗传性疾病之一,也是慢性肾功能不全的主要原因,需要透析或肾移植。有令人信服的证据表明,在常染色体显性多囊肾病(ADPKD)中,进行性液体积聚进入囊肿需要由囊性纤维化跨膜传导调节蛋白(CFTR)分泌氯化物,CFTR是camp调节的氯离子通道,当发生突变时,导致遗传性疾病囊性纤维化。ADPKD的囊肿生长需要分泌液进入囊肿腔并伴有上皮细胞增生。CFTR抑制剂“抗分泌疗法”可能为延长ADPKD患者肾脏生存提供终身治疗。目前还没有fda批准的药物可以延长ADPKD患者的肾脏生存期。我们的实验室通过高通量筛选确定了两类小分子CFTR抑制剂,噻唑烷酮类和甘氨酸肼类,在已发表的概念验证研究中,它们对预防ADPKD模型中的囊肿液体积聚有效。大屏幕最近发现了第三类嘧啶-吡咯-喹诺啉(PPQ) CFTR抑制剂,它具有独特的性质,在防止肾脏器官培养模型中的囊肿扩张方面非常有效。本应用程序的第一个目的是通过肾脏器官培养和pkd1敲除小鼠模型,选择最佳的小分子CFTR抑制剂来防止ADPKD中囊肿的生长。将评价噻唑烷酮类、甘氨酸肼类和PPQ类CFTR抑制剂。这一目的的目标将是选择最佳抑制剂(s)的每一类有效防止囊肿生长,无毒,口服生物可利用。第二个目标是根据药代动力学、ADME(吸收、分布、代谢、排泄)、毒性和致突变潜力的分析,优先考虑第一个目标中选择的最佳CFTR抑制剂。目标是选择最好的一种或两种化合物进行进一步的临床前开发。
英文摘要
DESCRIPTION (provided by applicant): This application addresses broad Challenge Area (15): Translational Science and specific Challenge Topic, 15- DK-103: Translate discovery of new molecules and pathways in pathogenesis of NIDDK diseases into potential therapies, diagnostics, or research tools. Polycystic kidney disease is one of the most common human genetic diseases and a major cause of chronic renal insufficiency requiring dialysis or kidney transplantation. There is compelling evidence that in autosomal dominant polycystic kidney disease (ADPKD) progressive fluid accumulation into cysts requires chloride secretion by the cystic fibrosis transmembrane conductance regulator protein (CFTR), a cAMP-regulated chloride channel, which, when mutated, causes the genetic disease cystic fibrosis. Cyst growth in ADPKD requires fluid secretion into the cyst lumen coupled with epithelial cell hyperplasia. CFTR inhibitor 'antisecretory therapy' may offer life-long therapy to prolong kidney survival in ADPKD. At present there is no FDA-approved drug to prolong kidney survival in ADPKD. Our laboratory has identified, by high-throughput screening, two classes of small-molecule CFTR inhibitors, thiazolidinones and glycine hydrazides, which, in published proof-of-concept studies, are effective in preventing cyst fluid accumulation in ADPKD models. A large screen recently yielded a third class of pyrimido-pyrrolo-quinoxaline (PPQ) CFTR inhibitors that have unique properties and are very potent and effective in preventing cyst expansion in kidney organ culture models. The first aim of this application is to select, using kidney organ culture and pkd1 knockout mouse models, the best small-molecule CFTR inhibitors for preventing cyst growth in ADPKD. CFTR inhibitors of the thiazolidinone, glycine hydrazide and PPQ classes will be evaluated. The goal of this aim will be to select the best inhibitor(s) of each class that are effective in preventing cyst growth, non-toxic, and orally bioavailable. The second aim will be to prioritize the best CFTR inhibitors selected in the first aim, based on analyses of pharmacokinetics, ADME (absorption, distribution, metabolism, excretion), toxicity and mutagenic potential. The goal is to select the best one or two compounds for further pre-clinical development.
PUBLIC HEALTH RELEVANCE: Polycystic kidney disease is one of the most common genetic diseases and a major cause of kidney failure leading to dialysis or kidney transplantation. New drug candidates, called CFTR inhibitors, discovered by our laboratory will be tested for their potential in treating polycystic kidney disease using culture and animal models. This new form of therapy might ultimately prolong kidney function in polycystic kidney disease.
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