Synovial Biomarkers in Olgoarticular Juvenile Idiopathic Arthritis
多关节幼年特发性关节炎的滑膜生物标志物
基本信息
- 批准号:8764777
- 负责人:
- 金额:$ 10.8万
- 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
- 起止时间:2014-09-09 至 2019-07-31
- 项目状态:已结题
- 来源:
- 关键词:AddressAdultAdvisory CommitteesAffectArthritisBMP4BenignBioethicsBioinformaticsBiologicalBiological MarkersBiological ModelsBiomedical ResearchBiometryCertificationChairpersonChildChildhoodChondrocytesChronic Childhood ArthritisClinicalClinical ResearchCoculture TechniquesCollaborationsCollagenDataDeformityDelawareDetectionDevelopmentDiseaseDisease ProgressionDisease remissionERBB2 geneEducationEducational ActivitiesEnvironmentEpiphysial cartilageEthicsFamilyFibroblastsFundingFutureGene ExpressionGenesGoalsGrowthHealthHealth Insurance Portability and Accountability ActHealth SciencesHypersensitivityHypertrophyImmunologyInstitutional Review BoardsInstructionIntervention StudiesJointsJournalsK-Series Research Career ProgramsKnowledgeLaboratoriesLeadLifeMeasuresMentorsMentorshipMolecular Biology TechniquesMolecular ProfilingNational Institute of Arthritis and Musculoskeletal and Skin DiseasesOnline SystemsOsteogenesisPatientsPediatric HospitalsPennsylvaniaPhenotypePhiladelphiaPlayPostdoctoral FellowPreceptorshipPredictive ValuePrivacyProcessProspective StudiesProteinsRNAResearchResearch PersonnelResourcesRheumatismRheumatologyRiskRoleRosaSamplingScientistSelf CareShapesSignal TransductionSourceStatistical MethodsStratificationSynovial CellSynovial FluidTimeTrainingTraining ProgramsTranslatingTranslational ResearchUnited States National Institutes of HealthUniversitiesWorkWritingaggrecanautocrinebone cellcareercartilage cellcohortdisabilityfunctional outcomeshuman subject protectionimprovedinhibitor/antagonistinsightjoint injurymeetingsoutcome forecastparacrinepatient oriented researchpreventprogramsprospectiveresponsible research conductrheumatologistskillstherapeutic targettooltreatment strategy
项目摘要
DESCRIPTION (provided by applicant): This is an application for a K23 Career Development Award (CDA) for Dr. AnneMarie Brescia, a pediatric rheumatologist at the Nemours/ AI duPont Hospital for Children (Nemours). Although she has had training in molecular biology techniques during her 2 years as a post-doctoral fellow at NIAMS/NIH, she needs specific training in statistical methods, bioinformatics and the process of biomarker development, in addition to guidance on grantsmanship and scientific writing. Her short-term career goals are to focus on training in translational research and acquire the tools needed to achieve her long-term career goals of being an independent clinical translational researcher able to help shape future treatment for children with arthritis. This CDA will allow her to evolve from primarily a clinician conducting some research into a clinician scientist, poised to answer essential questions which will translate into better, more personal, care for patients. She has laid out a plan to allow her o acquire these skill sets through (1) formal didactic instruction; (2) research preceptorships; (3) educational activities at The University of Pennsylvania (Penn) and Nemours; and (4) collaboration with experts in the field. Her mentors will be Dr. Kathleen Sullivan (primary mentor), a pediatric rheumatologist who is Chief of Allergy and Immunology at The Children's Hospital of Philadelphia (CHOP) and Dr. Carlos Rose (co-mentor), a pediatric rheumatologist who is Chief of Rheumatology at Nemours and chairman of the Nemours IRB. She has assembled an advisory committee that also includes Dr. Edward Behrens, a currently R01 funded researcher who brings content expertise in pediatric rheumatology, and Dr. Birgit Kovacs, an adult rheumatologist who brings extensive knowledge of translational research and biomarker development. Dr. Brescia's project focuses on causes of disability in Oligoarticular Juvenile Idiopathic Arthritis (JIA), the most common subtype of the most common rheumatic disease of childhood. Disability results from two sources, namely extension to a polyarticular course, termed extended oligoarticular disease, and local deformities associated with altered growth. Persistent oligoarthritis affects up to 4 joints throughout the disease course while extended oligoarthritis affects a cumulative total of 5 joints or more after the first 6 months of disease. Since disease progression increases the risk for disability, early prediction of this course is essential; unfortunately, no reliable clinical or laboratory predictors have been established. Within this proposal, Dr. Brescia will develop synovial biomarker panels that predict disease progression from persistent to extended oligoarticular JIA (Aim 1). The project will also focus on the role of the JIA fibroblast-like synoviocytes in the localized altered growth seen in oligoarticular JIA (Aim 2). Synovial biomarkers will lead to better risk stratification and more effective targeting of therapeutics. Completion of these aims will lead to a larger, prospective study in which the rapid assessment of synovial fluid samples early in the course of disease will be used to predict disease course and patients will be followed over time to validate the positive and negative predictive values of the panel. In addition, the insight gained into the role of the dysregulated TGFβ/BMP4 signaling in the localized altered growth will allow Dr. Brescia to study interventions that address this phenotype, either enhancing it if it is reparative or blockin it if it is detrimental. There is a rich academic environment available for Dr. Brescia to achieve her goals. From the inception of this project, she has worked closely with Dr. Suzanne McCahan, a biostatistician within Nemours Bioinformatics Core, and will continue to do so. She has access to tremendous resources at Nemours including translational science seminars, journal clubs, and division of rheumatology clinical meetings, in addition to research and education courses. The mentorship at CHOP opens up avenues for collaborations and experts in translational research. Dr. Brescia will complete the Clinical Research Certificate Program offered by Penn, which includes courses in Biostatistics, Proposal Development, Scientific and Ethical Conduct, and Intro to Bioinformatics, in addition to three web-based courses: Bioethics Training Program, Patient-Oriented Research Certification Program and HIPAA Privacy Education Program, in addition to Collaborative Institutional Training Initiative (CITI) programs: 1) Responsible Conduct of Research and 2) Protection of Human Subjects. She will benefit from Nemours participation in several large research partnerships, Delaware Health Sciences Alliance (DHSA), Delaware Clinical and Translational Research Program (DE-CTR), and Delaware IDeA Network of Biomedical Research Excellence (DE-INBRE) that significantly broaden the available intellectual resources available to her. Finally, this proposed project is superbly suited to serve as a training vehicle for Dr. Brescia's maturation as a translational researcher in the field of pediatric rheumatology. This training will allow Dr. Brescia to successfully compete for R01 funding for a prospective trial of using synovial fluid biomarkers to predict course in new onset juvenile idiopathic arthritis.
描述(由申请人提供):这是一份K23职业发展奖(CDA)的申请,申请人是Nemours/ AI杜邦儿童医院(Nemours)的儿科风湿病学家AnneMarie Brescia博士。虽然她在NIAMS/NIH担任博士后研究员的2年期间接受了分子生物学技术的培训,但她需要在统计方法,生物信息学和生物标志物开发过程中进行具体培训,此外还需要对granectin和科学写作进行指导。她的短期职业目标是专注于转化研究的培训,并获得实现其长期职业目标所需的工具,即成为一名独立的临床转化研究人员,能够帮助塑造关节炎儿童的未来治疗。该CDA将使她能够从主要从事一些研究的临床医生发展成为临床科学家,准备回答基本问题,这些问题将转化为更好,更个性化的患者护理。她制定了一个计划,让她通过(1)正式的教学指导获得这些技能;(2)研究指导;(3)在宾夕法尼亚大学(Penn)和Nemours的教育活动;(4)与该领域的专家合作。她的导师将是Kathleen Sullivan博士(主要导师),他是费城儿童医院(CHOP)过敏和免疫学主任,以及卡洛斯罗斯博士(共同导师),他是Nemours流变学主任和Nemours IRB主席。她组建了一个咨询委员会,其中还包括目前由R 01资助的研究人员Edward Behrens博士,他带来了儿科风湿病学的内容专业知识,以及成人风湿病学家Birgit Kovacs博士,他带来了广泛的转化研究和生物标志物开发知识。布雷西亚博士的项目重点是少关节青少年特发性关节炎(JIA)残疾的原因,这是儿童最常见的风湿性疾病的最常见亚型。残疾的结果有两个来源,即扩展到多关节过程,称为扩展性少关节病,和局部畸形与改变生长。持续性少关节炎在整个病程中影响多达4个关节,而扩展性少关节炎在疾病的前6个月后累计影响5个关节或更多。由于疾病进展会增加残疾的风险,因此对该过程的早期预测至关重要;不幸的是,尚未建立可靠的临床或实验室预测因子。在这项提案中,Brescia博士将开发滑膜生物标志物面板,预测从持续性到扩展性少关节JIA的疾病进展(目标1)。该项目还将关注JIA成纤维细胞样滑膜细胞在少关节JIA中观察到的局部改变生长中的作用(目标2)。滑膜生物标志物将导致更好的风险分层和更有效的治疗靶向。这些目标的完成将导致一项更大规模的前瞻性研究,在该研究中,将使用病程早期滑液样本的快速评估来预测病程,并将随时间对患者进行随访,以验证面板的阳性和阴性预测值。此外,对TGFβ/BMP 4信号转导失调在局部改变生长中的作用的深入了解将使Brescia博士能够研究解决这种表型的干预措施,如果它是修复性的,则增强它,如果它是有害的,则阻断它。有一个丰富的学术环境可供布雷西亚博士实现她的目标。从该项目开始,她就与Nemours Bioinformatics Core的生物统计学家Suzanne McCahan博士密切合作,并将继续这样做。她有机会获得Nemours的大量资源,包括转化科学研讨会,期刊俱乐部和风湿病学临床会议部门,以及研究和教育课程。CHOP的导师制为翻译研究的合作和专家开辟了途径。Brescia博士将完成宾夕法尼亚大学提供的临床研究证书课程,其中包括生物统计学,提案制定,科学和道德行为以及生物信息学介绍课程,以及三个基于网络的课程:生物伦理培训计划,以患者为导向的研究认证计划和HIPAA隐私教育计划,以及合作机构培训计划(CITI)计划:1)负责任的研究行为和2)保护人类受试者。她将受益于Nemours参与的几个大型研究合作伙伴关系,特拉华州健康科学联盟(DHSA),特拉华州临床和转化研究计划(DE-CTR)和特拉华州IDEA生物医学研究卓越网络(DE-INBRE),这大大拓宽了她可用的智力资源。最后,这个项目非常适合作为Brescia博士在儿科风湿病学领域的成熟的转化研究人员的培训工具。这次培训将使Brescia博士能够成功地竞争R 01资金,用于使用滑液生物标志物预测新发青少年特发性关节炎病程的前瞻性试验。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
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AnneMarie C Brescia其他文献
Real-World Data Shows Increased Incidence of Autoimmune Disease in Survivors of Childhood Lymphoid Malignancies
- DOI:
10.1182/blood-2024-194128 - 发表时间:
2024-11-05 - 期刊:
- 影响因子:
- 作者:
Kimberly Ann Davidow;Thomas Z Rohan;Cooper R Roslund;Pierluigi Porcu;Alan S Khoo;Christopher McNair;AnneMarie C Brescia;Jonathan Powell - 通讯作者:
Jonathan Powell
AnneMarie C Brescia的其他文献
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{{ truncateString('AnneMarie C Brescia', 18)}}的其他基金
PATHOGENESIS OF A-R LYME ARTHRITIS THROUGH GEP/SYNOVIAL MARKERS IN JIA
通过 GEP/滑液标记物了解贾氏病中 A-R 莱姆关节炎的发病机制
- 批准号:
8360765 - 财政年份:2011
- 资助金额:
$ 10.8万 - 项目类别:
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