Addressing myelination disorders: Novel strategies using human 3D peripheral nerve model

IF 3.7 3区 医学 Q2 NEUROSCIENCES Brain Research Bulletin Pub Date : 2025-02-10 DOI:10.1016/j.brainresbull.2025.111252
Camille Loret , Camille Scherrer , Amandine Rovini , Esther Lesage , Laurence Richard , Aurore Danigo , Franck Sturtz , Frédéric Favreau , Pierre-Antoine Faye , Anne-Sophie Lia
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Abstract

Peripheral myelination disorders encompass a variety of disorders that affect myelin sheaths in the peripheral nervous system. The Charcot-Marie-Tooth disease (CMT), the most common inherited peripheral neuropathy, is one of the most prevalent among them. CMT stems from a wide range of genetic causes that disrupt the nerve conduction, leading to progressive muscle weakness and atrophy, sensory loss, and motor function impairment. Historically, the study of these disorders has relied heavily on animal studies, owing to the challenges in accessing human cells. However, the advent of human induced pluripotent stem cell (hiPSC)-derived neuronal cells has addressed these limitations in the realm of peripheral myelination disorders. Despite this, obtaining myelin in these models remains an expensive, time-consuming, and material-intensive process. This study presents a novel, cost-effective method utilizing hiPSC-derived Schwann cells and motor neurons in a three-dimensional culture system. Our method successfully enabled the acquisition of myelin in a control clone within just four weeks, as confirmed by electron microscopy. Furthermore, the utility of these approaches was validated by studying CMT4C, also named AR-CMTde-SH3TC2, the most common recessive demyelinating form of CMT. This revealed defects in Schwann cell support to motor neuron neurite outgrowth and impaired myelination in disease-specific hiPSC-derived lines. This approach offers valuable insights into the pathogenesis of peripheral myelination disorders and provides a platform for testing potential therapeutic strategies.
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解决髓鞘疾病:使用人类3D周围神经模型的新策略
外周髓鞘疾病包括影响外周神经系统髓鞘的各种疾病。Charcot-Marie-Tooth病(CMT)是其中最常见的遗传性周围神经病变之一。CMT源于广泛的遗传原因,破坏神经传导,导致进行性肌肉无力和萎缩,感觉丧失和运动功能障碍。从历史上看,由于难以获取人类细胞,对这些疾病的研究在很大程度上依赖于动物研究。然而,人类诱导多能干细胞(hiPSC)衍生的神经细胞的出现解决了周围髓鞘疾病领域的这些局限性。尽管如此,在这些模型中获得髓磷脂仍然是一个昂贵、耗时和材料密集的过程。本研究提出了一种新颖、经济的方法,利用hipsc衍生的雪旺细胞和运动神经元在三维培养系统中。我们的方法通过电子显微镜证实,在短短四周内成功地在对照克隆中获得髓磷脂。此外,通过研究CMT4C,也称为AR-CMTde-SH3TC2, CMT最常见的隐性脱髓鞘形式,验证了这些方法的实用性。这揭示了雪旺细胞对运动神经元突起生长的支持缺陷和疾病特异性hipsc衍生系中受损的髓鞘形成。这种方法为外周髓鞘疾病的发病机制提供了有价值的见解,并为测试潜在的治疗策略提供了一个平台。
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来源期刊
Brain Research Bulletin
Brain Research Bulletin 医学-神经科学
CiteScore
6.90
自引率
2.60%
发文量
253
审稿时长
67 days
期刊介绍: The Brain Research Bulletin (BRB) aims to publish novel work that advances our knowledge of molecular and cellular mechanisms that underlie neural network properties associated with behavior, cognition and other brain functions during neurodevelopment and in the adult. Although clinical research is out of the Journal''s scope, the BRB also aims to publish translation research that provides insight into biological mechanisms and processes associated with neurodegeneration mechanisms, neurological diseases and neuropsychiatric disorders. The Journal is especially interested in research using novel methodologies, such as optogenetics, multielectrode array recordings and life imaging in wild-type and genetically-modified animal models, with the goal to advance our understanding of how neurons, glia and networks function in vivo.
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