在肌强直小鼠模型中对沙芬那胺抗肌强直功效的临床前研究。

IF 5.6 2区 医学 Q1 CLINICAL NEUROLOGY
Neurotherapeutics Pub Date : 2024-10-01 Epub Date: 2024-09-24 DOI:10.1016/j.neurot.2024.e00455
Ileana Canfora, Concetta Altamura, Jean-Francois Desaphy, Brigida Boccanegra, Silvia Vailati, Carla Caccia, Elsa Melloni, Gloria Padoani, Annamaria De Luca, Sabata Pierno
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引用次数: 0

摘要

麦西来汀是治疗非萎缩性肌营养不良症的首选药物。然而,由于耐受性差、禁忌症以及可能基于药物遗传学特征的有限疗效,30% 的患者从美西雷定中获益甚微。萨非那胺可抑制神经元电压门控钠离子和钙离子通道,并具有抗惊厥活性,此外还具有可逆的单胺氧化酶-B抑制作用。我们评估了沙芬那胺在先天性肌张力障碍动物模型--ADR(右侧反应停滞发育)小鼠中的临床前效应。体外研究是在电流钳模式下使用两个细胞内微电极技术进行的。我们分析了雄性和雌性 ADR(adr/adr)小鼠以及野生型(wt/wt)小鼠骨骼肌纤维在施用沙芬酰胺和参比化合物mexiletine前后的肌浆兴奋性。与 WT 小鼠相比,ADR 小鼠在固定电流下激发的最大动作电位数(N-尖峰)更高。肌强直小鼠的动作电位会出现不自主的放电,称为 "后放电"。在减少肌强直肌纤维中的 N-尖峰和后放电方面,已证实沙芬那胺比甲昔洛汀具有更强的活性。在 ADR 小鼠体内评估了服用沙芬那胺和麦西来廷前后的右反射时间(TRR)。与麦司利汀相比,沙芬那胺能在更大程度上缩短 ADR 小鼠的右反射时间。总之,无论是在体外还是在体内,沙芬胺都能抵消肌强直小鼠肌肉的异常过度兴奋,这表明它是治疗先天性肌强直的一种有效药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preclinical study of the antimyotonic efficacy of safinamide in the myotonic mouse model.

Mexiletine is the first choice drug in the treatment of non-dystrophic myotonias. However, 30% of patients experience little benefit from mexiletine due to poor tolerability, contraindications and limited efficacy likely based on pharmacogenetic profile. Safinamide inhibits neuronal voltage-gated sodium and calcium channels and shows anticonvulsant activity, in addition to a reversible monoamine oxidase-B inhibition. We evaluated the preclinical effects of safinamide in an animal model of Myotonia Congenita, the ADR (arrested development of righting response) mouse. In vitro studies were performed using the two intracellular microelectrodes technique in current clamp mode. We analyzed sarcolemma excitability in skeletal muscle fibers isolated from male and female ADR (adr/adr) and from Wild-Type (wt/wt) mice, before and after the application of safinamide and the reference compound mexiletine. In ADR mice, the maximum number of action potentials (N-spikes) elicited by a fixed current is higher with respect to that of WT mice. Myotonic muscles show an involuntary firing of action potential called after-discharges. A more potent activity of safinamide compared to mexiletine has been demonstrated in reducing N-spikes and the after-discharges in myotonic muscle fibers. The time of righting reflex (TRR) before and after administration of safinamide and mexiletine was evaluated in vivo in ADR mice. Safinamide was able to reduce the TRR in ADR mice to a greater extent than mexiletine. In conclusion, safinamide counteracted the abnormal muscle hyperexcitability in myotonic mice both in vitro and in vivo suggesting it as an effective drug to be indicated in Myotonia Congenita.

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来源期刊
Neurotherapeutics
Neurotherapeutics 医学-神经科学
CiteScore
11.00
自引率
3.50%
发文量
154
审稿时长
6-12 weeks
期刊介绍: Neurotherapeutics® is the journal of the American Society for Experimental Neurotherapeutics (ASENT). Each issue provides critical reviews of an important topic relating to the treatment of neurological disorders written by international authorities. The Journal also publishes original research articles in translational neuroscience including descriptions of cutting edge therapies that cross disciplinary lines and represent important contributions to neurotherapeutics for medical practitioners and other researchers in the field. Neurotherapeutics ® delivers a multidisciplinary perspective on the frontiers of translational neuroscience, provides perspectives on current research and practice, and covers social and ethical as well as scientific issues.
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