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亨廷顿病 zQ175DN 小鼠模型中脑灌注和血管反应性的纵向变化。

Longitudinal alterations in brain perfusion and vascular reactivity in the zQ175DN mouse model of Huntington's disease.

机构信息

Bio-Imaging Lab, University of Antwerp, Universiteitsplein 1, 2610 Wilrijk, Antwerp, Belgium.

µNEURO Research Centre of Excellence, University of Antwerp, Antwerp, Belgium.

出版信息

J Biomed Sci. 2024 Apr 16;31(1):37. doi: 10.1186/s12929-024-01028-3.

Abstract

BACKGROUND

Huntington's disease (HD) is marked by a CAG-repeat expansion in the huntingtin gene that causes neuronal dysfunction and loss, affecting mainly the striatum and the cortex. Alterations in the neurovascular coupling system have been shown to lead to dysregulated energy supply to brain regions in several neurological diseases, including HD, which could potentially trigger the process of neurodegeneration. In particular, it has been observed in cross-sectional human HD studies that vascular alterations are associated to impaired cerebral blood flow (CBF). To assess whether whole-brain changes in CBF are present and follow a pattern of progression, we investigated both resting-state brain perfusion and vascular reactivity longitudinally in the zQ175DN mouse model of HD.

METHODS

Using pseudo-continuous arterial spin labelling (pCASL) MRI in the zQ175DN model of HD and age-matched wild-type (WT) mice, we assessed whole-brain, resting-state perfusion at 3, 6 and 9 and 13 months of age, and assessed hypercapnia-induced cerebrovascular reactivity (CVR), at 4.5, 6, 9 and 15 months of age.

RESULTS

We found increased perfusion in cortical regions of zQ175DN HET mice at 3 months of age, and a reduction of this anomaly at 6 and 9 months, ages at which behavioural deficits have been reported. On the other hand, under hypercapnia, CBF was reduced in zQ175DN HET mice as compared to the WT: for multiple brain regions at 6 months of age, for only somatosensory and retrosplenial cortices at 9 months of age, and brain-wide by 15 months. CVR impairments in cortical regions, the thalamus and globus pallidus were observed in zQ175DN HET mice at 9 months, with whole brain reactivity diminished at 15 months of age. Interestingly, blood vessel density was increased in the motor cortex at 3 months, while average vessel length was reduced in the lateral portion of the caudate putamen at 6 months of age.

CONCLUSION

Our findings reveal early cortical resting-state hyperperfusion and impaired CVR at ages that present motor anomalies in this HD model, suggesting that further characterization of brain perfusion alterations in animal models is warranted as a potential therapeutic target in HD.

摘要

背景

亨廷顿病(HD)的特征是亨廷顿基因中的 CAG 重复扩展,导致神经元功能障碍和丧失,主要影响纹状体和皮层。神经血管耦联系统的改变已被证明会导致几种神经退行性疾病(包括 HD)中脑区能量供应失调,这可能潜在地引发神经退行性过程。特别是在横断面人类 HD 研究中,观察到血管改变与脑血流(CBF)受损有关。为了评估全脑 CBF 是否存在并呈现进展模式,我们在 zQ175DN 型 HD 动物模型中纵向研究了静息状态脑灌注和血管反应性。

方法

在 zQ175DN 型 HD 模型和年龄匹配的野生型(WT)小鼠中使用伪连续动脉自旋标记(pCASL)MRI,我们评估了 3、6、9 和 13 个月龄时的全脑静息状态灌注,并在 4.5、6、9 和 15 个月龄时评估了高碳酸血症诱导的脑血管反应性(CVR)。

结果

我们发现 zQ175DN HET 小鼠在 3 个月龄时皮质区灌注增加,而在 6 和 9 个月龄时这种异常减少,此时已经报道了行为缺陷。另一方面,在高碳酸血症下,与 WT 相比,zQ175DN HET 小鼠的 CBF 降低:在 6 个月龄时多个脑区,在 9 个月龄时仅在体感和后扣带回皮质,而在 15 个月龄时整个大脑。在 9 个月龄时,zQ175DN HET 小鼠的皮质、丘脑和苍白球的 CVR 受损,在 15 个月龄时全脑反应性降低。有趣的是,在 3 个月龄时运动皮质的血管密度增加,而在 6 个月龄时外侧尾状核的平均血管长度减少。

结论

我们的发现揭示了在该 HD 模型中出现运动异常的年龄时早期皮质静息状态过度灌注和 CVR 受损,表明有必要进一步表征动物模型中脑灌注改变,作为 HD 的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c14/11022401/7967fa77f982/12929_2024_1028_Fig1_HTML.jpg

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