Zamali Imen, Elbini Ines, Rekik Raja, Neili Nour-Elhouda, Ben Hamouda Wafa, Ben Hmid Ahlem, Doghri Raoudha, Ben Ahmed Mélika
Laboratory of Transmission, Control and Immunobiology of Infection, Institut Pasteur de Tunis, Tunis, Tunisia.
Laboratory of Clinical Immunology, Institut Pasteur de Tunis, Tunis, Tunisia.
Front Neurol. 2024 Jul 8;15:1411143. doi: 10.3389/fneur.2024.1411143. eCollection 2024.
Despite significant advancements in the field, the pathophysiology of multiple sclerosis (MS) remains partially understood, with limited therapeutic options available for this debilitating condition. The precise impact of Interleukin-22 (IL-22) in the context of MS is still incompletely elucidated with some evidence suggesting its protective role. To provide a more comprehensive understanding of the role of IL-22, we investigated its effect on remyelination in a mouse model of demyelination induced by Cuprizone. Mice underwent a 6 week regimen of Cuprizone or vehicle, followed or not by intraperitoneal administration of IL-22. Behavioral assessments including tail suspension and inverted screen tests were conducted, alongside histological, histochemical, and quantitative PCR analyses. In Cuprizone-treated mice, IL-22 significantly improved motor and behavioral performance and robustly promoted remyelination in the . Additionally, IL-22 administration led to a significant elevation in MBP transcription in brain biopsies of treated mice. These findings collectively suggest a crucial role for IL-22 in the pathophysiology of MS, particularly in supporting the process of remyelination. These results offer potential avenues for expanding therapeutic strategies for MS treatment. Ongoing experiments aim to further unravel the underlying mechanisms of IL-22 action.
尽管该领域取得了重大进展,但多发性硬化症(MS)的病理生理学仍部分未明,针对这种使人衰弱的病症的治疗选择有限。白细胞介素-22(IL-22)在MS背景下的确切影响仍未完全阐明,一些证据表明其具有保护作用。为了更全面地了解IL-22的作用,我们在由铜离子螯合剂诱导的脱髓鞘小鼠模型中研究了其对髓鞘再生的影响。小鼠接受为期6周的铜离子螯合剂或赋形剂处理,随后腹腔注射IL-22或不注射。进行了包括尾悬测试和倒屏测试在内的行为评估,同时进行了组织学、组织化学和定量PCR分析。在接受铜离子螯合剂处理的小鼠中,IL-22显著改善了运动和行为表现,并有力地促进了[此处原文缺失相关部位信息]的髓鞘再生。此外,给予IL-22导致处理过的小鼠脑活检中髓鞘碱性蛋白(MBP)转录显著升高。这些发现共同表明IL-22在MS的病理生理学中起着关键作用,特别是在支持髓鞘再生过程中。这些结果为扩展MS治疗的策略提供了潜在途径。正在进行的实验旨在进一步揭示IL-22作用的潜在机制。