Sex Affects Cognitive Outcomes in HIV-1 Tat Transgenic Mice: Role of CCR5.

IF 3.9 4区 医学 Q2 NEUROSCIENCES ASN NEURO Pub Date : 2025-01-01 Epub Date: 2025-01-13 DOI:10.1080/17590914.2024.2447338
Chloe A Simons, Sarah Kim, Yun K Hahn, Ama Boake-Agyei, Sara R Nass, Phu Vo, Kurt F Hauser, Pamela E Knapp
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Abstract

People living with HIV (PLWH) experience HIV-associated neurocognitive disorders (HAND), even though combination antiretroviral therapy (cART) suppresses HIV replication. HIV-1 transactivator of transcription (HIV-1 Tat) contributes to the development of HAND through neuroinflammatory and neurotoxic mechanisms. C-C chemokine 5 receptor (CCR5) is important in immune cell targeting and is a co-receptor for HIV viral entry into CD4+ cells. Notably, CCR5 has been implicated in cognition unrelated to HIV infection. Inhibition of CCR5 has been shown to improve learning and memory. To test whether CCR5 is involved in cognitive changes in HAND, we used a non-infectious, transgenic model in which HIV-1 Tat is inducibly expressed. Well-powered cohorts of male and female mice were placed on a diet containing doxycycline to induce Tat expression for 8-wks. Males showed Tat-mediated deficits in the Barnes maze test of spatial learning and memory; females showed no impairments. Deficits in the males were fully reversed by the CCR5 antagonist, maraviroc (MVC). Tat-mediated deficits were not found in novel object recognition or contextual fear conditioning in either sex. Based on earlier work, we hypothesized that MVC might increase brain-derived neurotrophic factor (BDNF), which is essential in maintaining synaptodendritic function. MVC did increase the mBDNF to proBDNF ratio in males, perhaps contributing to improved cognition.

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性别影响HIV-1 Tat转基因小鼠的认知结果:CCR5的作用
艾滋病毒感染者(PLWH)经历艾滋病毒相关神经认知障碍(HAND),即使联合抗逆转录病毒治疗(cART)抑制艾滋病毒复制。HIV-1转录反激活因子(HIV-1 Tat)通过神经炎症和神经毒性机制参与HAND的发展。C-C趋化因子5受体(CCR5)在免疫细胞靶向中很重要,是HIV病毒进入CD4+细胞的共同受体。值得注意的是,CCR5涉及与HIV感染无关的认知。抑制CCR5已被证明可以改善学习和记忆。为了测试CCR5是否参与HAND的认知变化,我们使用了一种非感染性的转基因模型,其中HIV-1 Tat被诱导表达。动力良好的雄性和雌性小鼠被放置在含有强力霉素的饮食中,以诱导Tat表达8周。男性在巴恩斯迷宫空间学习记忆测试中表现出tat介导的缺陷;雌性没有出现损伤。CCR5拮抗剂马拉维洛克(MVC)完全逆转了男性的缺陷。在新物体识别或情境恐惧条件反射中没有发现tat介导的缺陷。基于早期的工作,我们假设MVC可能增加脑源性神经营养因子(BDNF),这是维持突触树突功能所必需的。MVC确实增加了男性mBDNF与proBDNF的比例,这可能有助于提高认知能力。
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来源期刊
ASN NEURO
ASN NEURO NEUROSCIENCES-
CiteScore
7.70
自引率
4.30%
发文量
35
审稿时长
>12 weeks
期刊介绍: ASN NEURO is an open access, peer-reviewed journal uniquely positioned to provide investigators with the most recent advances across the breadth of the cellular and molecular neurosciences. The official journal of the American Society for Neurochemistry, ASN NEURO is dedicated to the promotion, support, and facilitation of communication among cellular and molecular neuroscientists of all specializations.
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