1)湖北科技学院药学院,咸宁 437100;2)湖北科技学院环境风险与相关疾病精准防控湖北省重点实验室,咸宁 437100;3.4)北京老年医院,北京 100095;4.6)咸宁市疾病预防控制中心,咸宁 437100;5.3)湖北智慧康养产业技术研究院,咸宁 437100;6.5)山西医科大学生理学系,太原 030001
国家自然科学基金(42177416,42477452)湖北省卫生健康科技项目重点项目(WJ2025Z017)和湖北省科技创新基地(平台)计划项目(2025CDB024)资助。
1)College of Pharmacy, Hubei University of Science and Technology, Xianning 437100, China;2)Hubei Key Laboratory of Environmental Risk and Related Diseases Precision Prevention and Control, Hubei University of Science and Technology, Xianning 437100, China;3.4)Beijing Geriatric Hospital, Beijing 100095, China;4.6)Xianning Center for Disease Control and Prevention, Xianning 437100, China;5.3)Hubei Smart Health Industry Technology Research Institute, Xianning 437100, China;6.5)Department of Science, Shanxi Medical University, Taiyuan 030001, China
This work was supported by grants from The National Natural Science Foundation of China (42177416, 42477452), the Key Project of Health Science and Technology of Hubei Province (WJ2025Z017) and Hubei Provincial Projects of the Science and Technology Innovation Base (Platform)(Grant No. 2025CDB024).
目的 探讨清除内源性甲醛(formaldehyde,FA)对双环己酮草酰二腙(cuprizone,CPZ)诱导的多发性硬化(multiple sclerosis,MS)模型小鼠的脱髓鞘的改善效应及其机制。方法 采用0.2% CPZ建立MS慢性脱髓鞘模型,将80只C57BL/6J雌性小鼠随机分为4组:生理盐水(normal saline,NS)对照组、MS模型(CPZ+NS)组、甲醛消除剂治疗组(CPZ+NaHSO3)(NaHSO3,一种FA消除剂)、纳米虾青素(astaxanthin,ATX,一种高效FA消除剂)治疗组(CPZ+聚乙二醇包装的纳米ATX(PEG-ATX)@NPs)。通过旷场、Y迷宫及爬杆实验评估运动能力及认知功能;采用免疫荧光组化法检测脑组织离子化钙结合适配分子1(Iba1)表达;劳克坚牢蓝染色法检测脱髓鞘变化;通过酶联免疫吸附分析(enzyme-linked immunosorbent assay,ELISA)试剂盒检测血液、胼胝体与脊髓中肿瘤坏死因子α(tumor necrosis factor-α,TNF-α)、白介素(interleukin,IL)-1β和IL-6含量;采用甲醛探针(Na-FA)测定脑及脊髓内源性甲醛水平及荧光成像定量组织活性氧类(reactive oxygen species,ROS)强度。结果 与NS组相比,CPZ+NS组小鼠体重下降,运动协调及记忆能力减退,髓鞘再生受阻(P<0.05),血液、脊髓和胼胝体中促炎症因子及FA含量显著升高(P<0.05),脑和脊髓组织FA及ROS荧光强度均显著增强(P<0.05),Iba1阳性小胶质细胞数量明显增多(P<0.05),胼胝体脱髓鞘严重(P<0.01)。但是,FA消除剂NaHSO3和PEG-ATX@NPs干预显著降低脑与脊髓FA含量,减轻髓鞘损伤,抑制小胶质细胞活化,下调促炎症因子,并改善模型小鼠的运动能力及认知行为。结论 纳米包装ATX可减少CPZ产生的FA,从而减缓MS模型小鼠的脱髓鞘及改善认知能力。
Objective Multiple sclerosis (MS) is a chronic inflammatory demyelinating disease of the central nervous system (CNS); however, its underlying neurological pathogenic mechanisms remain incompletely understood. Endogenous formaldehyde (FA), a metabolic byproduct of methylation-demethylation cycles, has recently been implicated in neurotoxicity, oxidative damage, and cognitive impairment. This study aimed to investigate whether excessive FA contributes to myelin sheath demyelination in mice and to evaluate the protective effects and mechanisms of two FA-elimination strategies: sodium bisulfite (NaHSO3), a classical FA scavenger, and polyethylene glycol-modified astaxanthin nanoparticles (PEG-ATX@NPs), a brain-targeted nano-antioxidant formulation.Methods A chronic demyelination model was established by feeding female C57BL/6J mice a diet containing 0.2% cuprizone (CPZ) for four weeks, followed by a two-week intervention period. Eighty mice were randomly assigned to four groups: NS (normal saline), CPZ+NS, CPZ+NaHSO3, and CPZ+PEG-ATX@NPs. Behavioral tests, including open-field, Y-maze, and pole-climbing assays, were conducted to assess locomotor activity, motor coordination, and working memory. FA levels in serum, corpus callosum, and spinal cord were measured using an Na-FA fluorescent probe and quantified via in vivo and ex vivo fluorescence imaging. Neuroinflammatory responses were evaluated by measuring TNF-α, IL-1β, and IL-6 levels using ELISA, while oxidative stress was assessed by reactive oxygen species (ROS) fluorescence intensity. Demyelination was examined via Luxol fast blue staining, and microglial activation was analyzed by Iba1 immunofluorescence. Correlation analyses were performed to explore relationships among FA levels, inflammatory cytokines, ROS intensity, and behavioral parameters.Results Compared with the NS group, mice in the CPZ+NS group exhibited significant weight loss, impaired motor coordination and memory, and markedly reduced myelin regeneration (P<0.05). FA levels and pro-inflammatory cytokines were significantly elevated in serum, corpus callosum, and spinal cord (P<0.05). FA-associated fluorescence in brain and spinal tissues, as well as ROS intensity across all tissues examined, also increased substantially (P<0.05). CPZ treatment induced pronounced microglial activation and severe demyelination in the corpus callosum (P<0.01). Both NaHSO3 and PEG-ATX@NPs effectively reduced FA accumulation in the brain and spinal cord, attenuated demyelination, suppressed microglial activation, decreased inflammatory cytokine levels, and improved motor and cognitive performance. These results confirm that CPZ induced severe demyelination accompanied by oxidative stress, neuroinflammation, and abnormal FA accumulation. Following intervention with either NaHSO3 or PEG-ATX@NPs, endogenous FA levels in the CNS were substantially reduced. Both treatments alleviated demyelination and significantly decreased the number of activated microglia. Levels of TNF-α, IL-1β, and IL-6 in serum, corpus callosum, and spinal cord were downregulated. Behavioral performance improved significantly, as evidenced by enhanced locomotor activity, better coordination, and improved memory function. These findings indicate that both FA-scavenging agents mitigate CPZ-induced biochemical and behavioral abnormalities.Conclusion This study demonstrates that excessive endogenous FA is closely associated with cognitive impairment, inflammatory dysregulation, and demyelination in a CPZ-induced chronic demyelination mouse model. Clearing abnormally elevated FA effectively reduces neuroinflammation, suppresses microglial overactivation, decreases oxidative stress, and alleviates demyelination, ultimately improving motor and cognitive outcomes in mice. These results suggest that targeting endogenous FA represents a promising therapeutic strategy for MS and other demyelinating disorders. Further investigations are warranted to explore the long-term safety, dosage optimization, and molecular pathways involved in FA-mediated neurotoxicity.
吕万佳,曾鑫,童志前,邢杨,杨旭,武美娜,马萍.纳米包装的虾青素通过消除过多内源性甲醛改善多发性硬化模型小鼠脱髓鞘[J].生物化学与生物物理进展,2026,53(2):442-457 Lü Wan-Jia, ZENG Xin, TONG Zhi-Qian, XING Yang, YANG Xu, WU Mei-Na, MA Ping. Nanopackaged Astaxanthin Improves Demyelination in Multiple Sclerosis Model Mice by Scavenging Excessive Endogenous Formaldehyde[J]. Progress in Biochemistry and Biophysics,2026,53(2):442-457
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