中脑星形胶质细胞衍生神经营养因子(MANF)通过限制巨噬细胞在糖尿病周围神经病变中DRG和坐骨神经的浸润来限制炎症进展。

IF 3.9 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
ACS Chemical Neuroscience Pub Date : 2025-03-05 Epub Date: 2025-02-19 DOI:10.1021/acschemneuro.5c00021
Peng Dai, Peng Wang, Xin Chen, Shuyun Feng, Fancan Wu, Xueqin Zheng, Zaisheng Qin
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引用次数: 0

摘要

糖尿病周围神经病变(DPN)是一种普遍的并发症,影响超过一半的糖尿病患者。本研究探讨了中脑星形胶质细胞衍生神经营养因子(MANF)在DPN进展中的作用及其作为治疗靶点的潜力。利用链脲佐菌素(STZ)诱导的糖尿病小鼠模型,我们分析了MANF在背根神经节(DRG)和坐骨神经中的表达,并评估了重组人MANF (rhMANF)给药对DPN症状的影响。我们的研究结果显示糖尿病小鼠DRG中MANF蛋白水平显著上调,同时DRG和坐骨神经中表达MANF的巨噬细胞的存在增加。stz注射后第7天至第21天静脉给药rhMANF产生了多种有益结果。值得注意的是,rhMANF治疗减轻了机械性痛觉不足(通过脚爪机械戒断阈值(PMWT)测量),增强了坐骨神经传导,提高了运动神经传导速度(MNCV)。此外,它还增加了皮内神经密度,表明治疗后的糖尿病小鼠足底皮肤中pgp9.5阳性的神经纤维更多。这些改善与DRG和坐骨神经中巨噬细胞浸润减少有关,其特征是CD68和Iba-1阳性细胞减少,炎症信号通路受到抑制。具体来说,rhMANF治疗降低了NF-κB p65磷酸化,抑制了p38 MAPK磷酸化,表明炎症减轻。总之,我们的研究强调了MANF作为DPN的新治疗靶点的潜力,特别是由于其抗炎特性。对MANF的进一步探索可能会导致开发出更有效的治疗糖尿病这一衰弱方面的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mesencephalic Astrocyte-Derived Neurotrophic Factor (MANF) Restricts Inflammatory Progression through Limiting Macrophage Infiltration in DRG and Sciatic Nerve during Diabetic Peripheral Neuropathy.

Diabetic peripheral neuropathy (DPN) is a prevalent complication affecting over half of individuals with diabetes. This study investigates the role of mesencephalic Astrocyte-derived neurotrophic factor (MANF) in DPN progression and its potential as a therapeutic target. Using a streptozotocin (STZ)-induced diabetic mouse model, we analyzed MANF expression in the dorsal root ganglia (DRG) and sciatic nerve and assessed the effects of recombinant human MANF (rhMANF) administration on DPN symptoms. Our findings show significant upregulation of MANF protein levels in the DRG of diabetic mice, along with an increased presence of MANF-expressing macrophages in both the DRG and sciatic nerve. Intravenous administration of rhMANF from Day 7 to Day 21 post-STZ injection yielded multiple beneficial outcomes. Notably, rhMANF treatment alleviated mechanical hypoalgesia, as measured by the paw mechanical withdrawal threshold (PMWT), and enhanced sciatic nerve conduction, improving motor nerve conduction velocity (MNCV). Additionally, it increased intradermal nerve density, indicated by more PGP9.5-positive nerve fibers in the plantar skin of treated diabetic mice. These improvements were associated with reduced macrophage infiltration in the DRG and sciatic nerve, marked by fewer CD68 and Iba-1 positive cells, and inhibition of inflammatory signaling pathways. Specifically, rhMANF treatment decreased NF-κB p65 phosphorylation and suppressed p38 MAPK phosphorylation, indicating reduced inflammation. In summary, our research underscores MANF's potential as a novel therapeutic target for DPN, particularly due to its anti-inflammatory properties. Further exploration of MANF could lead to the development of more effective treatments for this debilitating aspect of diabetes.

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来源期刊
ACS Chemical Neuroscience
ACS Chemical Neuroscience BIOCHEMISTRY & MOLECULAR BIOLOGY-CHEMISTRY, MEDICINAL
CiteScore
9.20
自引率
4.00%
发文量
323
审稿时长
1 months
期刊介绍: ACS Chemical Neuroscience publishes high-quality research articles and reviews that showcase chemical, quantitative biological, biophysical and bioengineering approaches to the understanding of the nervous system and to the development of new treatments for neurological disorders. Research in the journal focuses on aspects of chemical neurobiology and bio-neurochemistry such as the following: Neurotransmitters and receptors Neuropharmaceuticals and therapeutics Neural development—Plasticity, and degeneration Chemical, physical, and computational methods in neuroscience Neuronal diseases—basis, detection, and treatment Mechanism of aging, learning, memory and behavior Pain and sensory processing Neurotoxins Neuroscience-inspired bioengineering Development of methods in chemical neurobiology Neuroimaging agents and technologies Animal models for central nervous system diseases Behavioral research
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