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在小鼠中,MMP-9 水平的升高与应变依赖性应激弹性和隧道处理有关。

Increased MMP-9 levels with strain-dependent stress resilience and tunnel handling in mice.

机构信息

Georgetown University, Washington D.C., United States.

Georgetown University Medical Center, Department of Neuroscience, Washington D.C., United States.

出版信息

Behav Brain Res. 2021 Jun 25;408:113288. doi: 10.1016/j.bbr.2021.113288. Epub 2021 Apr 6.

Abstract

Increased perineuronal net (PNN) deposition has been observed in association with corticosteroid administration and stress in rodent models of depression. PNNs are a specialized form of extracellular matrix (ECM) that may enhance GABA-mediated inhibitory neurotransmission to potentially restrict the excitation and plasticity of pyramidal glutamatergic neurons. In contrast, antidepressant administration increases levels of the PNN-degrading enzyme matrix metalloproteinase-9 (MMP-9), which enhances glutamatergic plasticity and neurotransmission. In the present study, we compare pro-MMP-9 levels and measures of stress in females from two mouse strains, C57BL/6 J and BALB/cJ, in the presence or absence of tail grasping versus tunnel-associated cage transfers. Prior work suggests that C57BL/6 J mice show relatively enhanced neuroplasticity and stress resilience, while BALB/c mice demonstrate enhanced susceptibility to adverse effects of stress. Herein we observe that as compared to the C57BL/6 J strain, BALB/c mice demonstrate a higher level of baseline anxiety as determined by elevated plus maze (EPM) testing. Moreover, as determined by open field testing, anxiety is differentially reduced in BALB/c mice by a choice-driven tunnel-entry cage transfer technique. Additionally, as compared to tail-handled C57BL/6 J mice, tail-handled BALB/c mice have reduced brain levels of pro-MMP-9 and increased levels of its endogenous inhibitor, tissue inhibitor of metalloproteinase-1 (TIMP-1); however, tunnel-associated cage transfer increases pro-MMP-9 levels in BALB/c mice. BALB/c mice also show increases in Western blot immunoreactive bands for brevican, a constituent of PNNs. Together, these data support the possibility that MMP-9, an effector of PNN remodeling, contributes to the phenotype of strain and handling-associated differences in behavior.

摘要

在抑郁的啮齿动物模型中,观察到糖皮质激素给药和应激与神经周细胞外基质(PNN)沉积增加有关。PNN 是一种特殊形式的细胞外基质(ECM),可能增强 GABA 介导的抑制性神经传递,从而潜在限制锥体谷氨酸能神经元的兴奋和可塑性。相比之下,抗抑郁药给药增加了 PNN 降解酶基质金属蛋白酶-9(MMP-9)的水平,从而增强了谷氨酸能可塑性和神经传递。在本研究中,我们比较了两种小鼠品系(C57BL/6 J 和 BALB/cJ)的雌性个体在存在或不存在尾巴抓取与隧道相关的笼转移时的前 MMP-9 水平和应激测量值。先前的工作表明,C57BL/6 J 小鼠表现出相对增强的神经可塑性和应激弹性,而 BALB/c 小鼠则表现出对应激不利影响的易感性增加。在此,我们观察到与 C57BL/6 J 品系相比,BALB/c 小鼠通过高架十字迷宫(EPM)测试表现出更高的基线焦虑水平。此外,通过旷场测试,BALB/c 小鼠通过选择驱动的隧道进入笼转移技术,焦虑程度得到不同程度的降低。此外,与尾巴处理的 C57BL/6 J 小鼠相比,尾巴处理的 BALB/c 小鼠的大脑前 MMP-9 水平降低,其内源性抑制剂组织金属蛋白酶抑制剂-1(TIMP-1)水平升高;然而,隧道相关的笼转移增加了 BALB/c 小鼠的 pro-MMP-9 水平。BALB/c 小鼠还表现出 PNN 成分 brevican 的 Western blot 免疫反应性条带增加。这些数据共同支持 MMP-9(PNN 重塑的效应物)可能有助于行为的品系和处理相关差异的表型的可能性。

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