Investigating Phenotypic, Epigenetic, and NeuroGenetic Traits in Rare and Ultra-rare Neurodevelopmental Disorders
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 100
- 试验地点
- 1
- 主要终点
- Disease onset patterns, symptom evolution, and progression severity in rare neurodevelopmental disorders
研究概览
简要总结
Rare genetic neurodevelopmental disorders, such as Syt-1 or Baker Gordon Syndrome (BAGOS) arise from mutations in genes essential for brain development and function, often disrupting neurotransmission and neuronal connectivity. These conditions present with a wide range of symptoms including developmental delays, seizures, motor and behavioral challenges, and vary widely in severity. These disorders are complex, and they remain poorly understood and lack effective treatments.
Natural history and clinical genetic studies are crucial for mapping how these disorders progress, improving diagnostic accuracy, and guiding therapy development. A major focus is identifying reliable biomarkers (genetic, imaging, and physiological) to track disease severity and support clinical trials. This study will securely collect and analyze data to better understand disease impact, develop patient-derived model systems, and build resources to support future treatments.
详细描述
Rare genetic neurodevelopmental disorders are a diverse group of conditions caused by mutations in genes critical to brain development and function. These disorders often involve disruptions in key proteins responsible for processes like neurotransmitter release, synaptic signaling, and neuronal connectivity. For example, mutations in genes such as SYT1 (which encodes synaptotagmin-1, a calcium-sensing protein essential for regulated neurotransmission) can lead to severe conditions like SYT1-associated neurodevelopmental disorder, also known as Baker-Gordon Syndrome (BAGOS). Similar mutations in other genes may result in distinct but overlapping clinical syndromes.
These rare disorders typically present with a wide range of symptoms, including developmental delays, intellectual disability, seizures, abnormal motor function, behavioral changes, visual impairments, and in some cases, self-injurious behaviors. The severity and progression of symptoms can vary significantly between individuals, even among those with the same genetic diagnosis.
Due to their rarity and complexity, many of these conditions are poorly understood, and treatment options remain limited. Therefore, natural history studies and clinical genetic studies play a crucial role in advancing research. These studies systematically collect data over time to understand how symptoms evolve, how quickly the disease progresses, and what measurable changes occur in affected individuals.
A key component of studies in rare genetic diseases is the identification and validation of biomarker quantifiable indicators such as genetic signatures, brain imaging findings, or physiological measurements-that can serve as reliable endpoints in clinical trials. By tracking these markers, researchers can better evaluate the efficacy of potential therapies and design more targeted treatments.
In addition to guiding drug development, these studies help researchers recognize broader patterns across neurodevelopmental disorders. This can lead to the discovery of undiagnosed cases, improve diagnostic accuracy, and foster earlier intervention. Ultimately, building a comprehensive understanding of these rare genetic conditions is essential for improving quality of life for affected individuals and their families. The investigators will analyze this information to explore how rare neurodevelopmental disorders affect ongoing neurodevelopment and quality of life. This study aims to lay groundwork for future therapies and will improve our understanding of rare neurogenetic disorders.
研究设计
- 研究类型
- Observational
- 观察模型
- Other
- 时间视角
- Prospective
入排标准
- 年龄范围
- — 至 99 Years(Child, Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •For those with a rare condition:
- •Inclusion Criteria:
- •Diagnosed or suspected neurogenetic disorder
- •Individuals 0-99
排除标准
- •Individuals unwilling or unable to complete visits with the study team.
- •For control parents/caregivers of those with a rare condition:
- •Inclusion Criteria:
- •No history of a neurological disorder.
- •>18 years.
- •Legal caregiver of the patient diagnosed with a rare neurodevelopmental disorder.
- •Exclusion Criteria:
- •Individuals unwilling or unable to complete the visit with the study team.
- •Individuals who have a history of neurological disorders.
- •< 18 years old
- •For all individuals who participate in the skin biopsy:
- •Individuals with disease that is known to be associated with poor wound healing.
- •Individuals with a history of allergic reaction to lidocaine.
- •Medical History of cellulitis, diabetes mellitus, poor extremity circulation, deep vein thrombosis, or a history of non-traumatic amputation.
- •Currently taking anticoagulation or have taken with last 6 months
结局指标
主要结局
Disease onset patterns, symptom evolution, and progression severity in rare neurodevelopmental disorders
时间窗: 3 years
Identify and validate biomarkers (genetic, imaging, and physiological) that correlate with disease severity and progression
时间窗: 3 years
Establish patient-derived and control cell lines (e.g., fibroblasts, induced pluripotent stem cells) to generate model systems for mechanistic studies and pre-clinical evaluation of potential therapies
时间窗: 3 years
次要结局
- Distribution of clinical presentation features, including age at onset, core symptoms, severity scores, and disease progression measures, within and across genetic subtypes(3 years)
- Build a repository to support future interventional clinical trials(3 years)
- Develop a deep phenotypic profile (cognitive, motor, behavioral, and neurological)(3 years)
研究者
William David Arnold
Executive Director, UM System NextGen Precision Health Initiative. Professor, Physical Medicine and Rehabilitation
University of Missouri-Columbia
