大鼠全身给药 AAV9 载体后,尽管有中等程度的周围神经和背根神经节发现,但仍无功能障碍:一种临床上沉默的周围神经病。

IF 3.4 3区 医学 Q2 NEUROSCIENCES Neurotoxicology Pub Date : 2024-02-03 DOI:10.1016/j.neuro.2024.02.001
Cheryl Tyszkiewicz , Seo-Kyoung Hwang , Jamie K. DaSilva , Ramesh C. Kovi , Kelly A. Fader , Madhu P. Sirivelu , June Liu , Chris Somps , Jon Cook , Chang-Ning Liu , Helen Wang
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引用次数: 0

摘要

基于腺相关病毒(AAV)的载体常用于基因治疗研究中传递转基因,但已知它们也会导致动物背根神经节(DRG)和周围神经中毒。然而,这些病理结果的功能影响及其时间过程仍不清楚。在大鼠单剂量使用携带人类 frataxin 转基因的 AAV9 载体后的 2、4、6 和 8 周,分别进行了非标准功能评估,包括 von Frey 灯丝、电生理学和旋转木马测试,以测量异动症、神经传导速度和协调性。此外,还分别在 1、2、4 和 8 周时对 DRGs、外周神经、大脑和脊髓进行组织学评估,并对循环神经丝轻链(NfL)进行量化。给药后2周和4周,在一些服用AAV9载体的动物的DRGs中观察到轻微至中度的神经纤维变性和神经元变性。8周后,在所有服用AAV9载体的动物的DRG中观察到神经纤维变性,并伴有或不伴有神经元变性,在坐骨神经中也观察到神经纤维变性。与对照组相比,AAV9载体处理的动物在第4周和第8周的NfL值更高。然而,在AAV9载体和药物剂量动物之间评估的三个功能终点中,或在AAV9载体剂量动物的基线(剂量前)、4周和8周值的纵向比较中,均无明显差异。这些研究结果表明,我们的AAV9载体疗法在大鼠身上观察到的轻度至中度神经变性没有可检测到的功能性后果,这表明在全身给药AAV9载体后,DRG神经元的损失具有功能耐受性或储备性。
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Absence of functional deficits in rats following systemic administration of an AAV9 vector despite moderate peripheral nerve and dorsal root ganglia findings: A clinically silent peripheral neuropathy

Adeno-associated virus (AAV)-based vectors are commonly used for delivering transgenes in gene therapy studies, but they are also known to cause dorsal root ganglia (DRG) and peripheral nerve toxicities in animals. However, the functional implications of these pathologic findings and their time course remain unclear. At 2, 4, 6, and 8 weeks following a single dose of an AAV9 vector carrying human frataxin transgene in rats, non-standard functional assessments, including von Frey filament, electrophysiology, and Rotarod tests, were conducted longitudinally to measure allodynia, nerve conduction velocity, and coordination, respectively. Additionally, DRGs, peripheral nerves, brain and spinal cord were evaluated histologically and circulating neurofilament light chain (NfL) was quantified at 1, 2, 4, and 8 weeks, respectively. At 2 and 4 weeks after dosing, minimal-to-moderate nerve fiber degeneration and neuronal degeneration were observed in the DRGs in some of the AAV9 vector-dosed animals. At 8 weeks, nerve fiber degeneration was observed in DRGs, with or without neuronal degeneration, and in sciatic nerves of all AAV9 vector-dosed animals. NfL values were higher in AAV9 vector-treated animals at weeks 4 and 8 compared with controls. However, there were no significant differences in the three functional endpoints evaluated between the AAV9 vector- and vehicle-dosed animals, or in a longitudinal comparison between baseline (predose), 4, and 8 week values in the AAV9 vector-dose animals. These findings demonstrate that there is no detectable functional consequence to the minimal-to-moderate neurodegeneration observed with our AAV9 vector treatment in rats, suggesting a functional tolerance or reserve for loss of DRG neurons after systemic administration of AAV9 vector.

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来源期刊
Neurotoxicology
Neurotoxicology 医学-毒理学
CiteScore
6.80
自引率
5.90%
发文量
161
审稿时长
70 days
期刊介绍: NeuroToxicology specializes in publishing the best peer-reviewed original research papers dealing with the effects of toxic substances on the nervous system of humans and experimental animals of all ages. The Journal emphasizes papers dealing with the neurotoxic effects of environmentally significant chemical hazards, manufactured drugs and naturally occurring compounds.
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