为CTNNB1综合征的治疗方案铺平道路:从患者组织的角度

Therapeutic advances in rare disease Pub Date : 2025-02-12 eCollection Date: 2025-01-01 DOI:10.1177/26330040251318355
Špela Miroševič, Shivang Khandelwal, Emily Amerson, Effie Parks, Mariana Parks, Lauren Cochran, Ana González Hernández, Mirela Ferraro, Leszek Lisowski, Andrea Perez-Iturralde, Wendy Chung, Michele H Jacob, Nina Žakelj, Duško Lainšček, Vida Forstnerič, Petra Sušjan, Matea Maruna, Roman Jerala, Damjan Osredkar
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引用次数: 0

摘要

CTNNB1连接与治疗和CTNNB1基金会、Asociación CTNNB1、CTNNB1意大利、CTNNB1法国协会以及全球的研究人员和临床医生致力于寻找CTNNB1综合征的有效治疗和治愈方法。该综合征还以进行性痉挛为特征,在某些情况下可导致已经达到的运动里程碑的丧失。自2019年以来,他们汇集了来自不同领域的研究人员,并投资于各种研究工作,以推进寻找CTNNB1综合征患者的治疗方案。西蒙斯探照灯作为一个重要的平台,远程收集疾病自然历史的高质量、标准化数据,并将其提供给世界各地的研究人员。进行基因型-表型相关性研究和生物化学表征突变是了解患者突变及其相关分子功能对症状的影响的关键。从患者细胞中产生了几种诱导多能干细胞,临床前小鼠模型为CTNNB1单倍性不足的分子下游效应提供了新的见解。小分子治疗、RNA和dna治疗、AAV9基因替代治疗等多种治疗方法正在开发中,AAV9基因替代治疗已于2023年11月进入制造阶段。在本文中,我们总结了CTNNB1社区及其组织的历程,重点介绍了正在进行和未来的研究项目,并概述了可用的研究资源。CTNNB1社区的愿景是,未来将有几种治疗选择,可以根据每个CTNNB1患者的需求进行定制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Paving the way toward treatment solutions for CTNNB1 syndrome: a patient organization perspective.

The CTNNB1 Connect & Cure and CTNNB1 Foundation, alongside Asociación CTNNB1, CTNNB1 Italia, Association CTNNB1 France, and researchers and clinicians globally are dedicated to finding effective treatments and cures for CTNNB1 syndrome. The syndrome is also characterized by progressive spasticity, which can in some cases cause loss of already achieved motor milestones. Since 2019, they have brought together researchers from different fields and invested in various research efforts to advance the search for treatment solutions for patients with CTNNB1 syndrome. Simons Searchlight serves as an important platform by remotely collecting high-quality, standardized data on the natural history of the disease and making it available to researchers around the world. Conducting genotype-phenotype correlation study and biochemically characterizing the mutations were critical to understand the effects of the patients' mutations and related molecular function to symptoms. Several induced pluripotent stem cells were generated from patient cells, and preclinical mouse models have provided new insights into the molecular downstream effects of CTNNB1 haploinsufficiency. Multiple therapeutic approaches are in the developing, including small molecule treatments, RNA- and DNA-based therapies, AAV9 gene replacement therapy, which entered the manufacturing phase in November 2023. In this article, we summarize the journey of the CTNNB1 community and its organizations, highlight ongoing and future research projects, and outline the available research resources. The vision for the CTNNB1 community is that in the future several therapeutic options will be available that can be customized to every CTNNB1 patient's needs.

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