Khoja Suhail, Liu Xiao-Bo, Truong Brian, Nitzahn Matthew, Lambert Jenna, Eliav Adam, Nasser Eram, Randolph Emma, Burke Kristine E, White Rebecca, Zhu Xuling, Martini Paolo G V, Nissim Itzhak, Cederbaum Stephen D, Lipshutz Gerald S
Department of Surgery, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095, USA.
Department of Molecular and Medical Pharmacology, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095, USA.
Mol Ther Nucleic Acids. 2022 Apr 27;28:859-874. doi: 10.1016/j.omtn.2022.04.012. eCollection 2022 Jun 14.
Arginase deficiency is associated with prominent neuromotor features, including spastic diplegia, clonus, and hyperreflexia; intellectual disability and progressive neurological decline are other signs. In a constitutive murine model, we recently described leukodystrophy as a significant component of the central nervous system features of arginase deficiency. In the present studies, we sought to examine if the administration of a lipid nanoparticle carrying human mRNA to constitutive knockout mice could prevent abnormalities in myelination associated with arginase deficiency. Imaging of the cingulum, striatum, and cervical segments of the corticospinal tract revealed a drastic reduction of myelinated axons; signs of degenerating axons were also present with thin myelin layers. Lipid nanoparticle/ mRNA administration resulted in both light and electron microscopic evidence of a dramatic recovery of myelin density compared with age-matched controls; oligodendrocytes were seen to be extending processes to wrap many axons. Abnormally thin myelin layers, when myelination was present, were resolved with intermittent mRNA administration, indicative of not only a greater density of myelinated axons but also an increase in the thickness of the myelin sheath. In conclusion, lipid nanoparticle/ mRNA administration in arginase deficiency prevents the associated leukodystrophy and restores normal oligodendrocyte function.
精氨酸酶缺乏症与显著的神经运动特征相关,包括痉挛性双瘫、阵挛和反射亢进;智力障碍和进行性神经功能衰退是其他症状。在一个组成型小鼠模型中,我们最近将脑白质营养不良描述为精氨酸酶缺乏症中枢神经系统特征的一个重要组成部分。在本研究中,我们试图研究向组成型基因敲除小鼠注射携带人mRNA的脂质纳米颗粒是否可以预防与精氨酸酶缺乏症相关的髓鞘形成异常。对扣带、纹状体和皮质脊髓束颈段的成像显示有髓轴突急剧减少;轴突变性的迹象也存在于薄髓鞘层中。与年龄匹配的对照组相比,脂质纳米颗粒/mRNA给药导致光镜和电镜下均有髓磷脂密度显著恢复的证据;可见少突胶质细胞伸出突起包裹许多轴突。当存在髓鞘形成时,异常薄的髓鞘层通过间歇性mRNA给药得以解决,这不仅表明有髓轴突密度增加,而且髓鞘厚度也增加。总之,在精氨酸酶缺乏症中给予脂质纳米颗粒/mRNA可预防相关的脑白质营养不良并恢复正常的少突胶质细胞功能。