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帕金森病 Pink1-/- 大鼠模型中通气、发声和热伤害感受的变化。

Changes to Ventilation, Vocalization, and Thermal Nociception in the Pink1-/- Rat Model of Parkinson's Disease.

机构信息

Department of Surgical Sciences, University of Wisconsin-Madison, Madison, WI, USA.

Division of Otolaryngology, Department of Surgery, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

J Parkinsons Dis. 2020;10(2):489-504. doi: 10.3233/JPD-191853.

Abstract

BACKGROUND

Individuals with Parkinson's disease (PD) experience significant vocal communication deficits. Findings in the Pink1-/- rat model of early-onset PD suggest that ultrasonic vocal communication is impaired early, progressively worsens prior to nigrostriatal dopamine depletion, and is associated with loss of locus coeruleus neurons, brainstem α-synuclein, and larynx pathology. Individuals with PD also demonstrate ventilatory deficits and altered sensory processing, which may contribute to vocal deficits.

OBJECTIVE

The central hypothesis is that ventilatory and sensory deficits are present in the early disease stages when limb and vocal motor deficits also present.

METHODS

Pink1-/- rats were compared to wildtype (WT) controls at longitudinal timepoints. Whole-body flow through plethysmography was used to measure ventilation in the following conditions: baseline, hypoxia, and maximal chemoreceptor stimulation. Plantar thermal nociception, and as a follow up to previous work, limb gait and vocalization were analyzed. Serotonin density (5-HT) in the dorsal raphe was quantified post-mortem.

RESULTS

Baseline breathing frequencies were consistently higher in Pink1-/- rats at all time points. In hypoxic conditions, there were no significant changes between genotypes. With hypercapnia, Pink1-/- rats had decreased breathing frequencies with age. Thermal withdrawal latencies were significantly faster in Pink1-/- compared with WT rats across time. No differences in 5-HT were found between genotypes. Vocal peak frequency was negatively correlated to tidal volume and minute ventilation in Pink1-/- rats.

CONCLUSION

This work suggests that abnormal nociceptive responses in Pink1-/- rats and ventilatory abnormalities may be associated with abnormal sensorimotor processing to chemosensory stimuli during disease manifestation.

摘要

背景

帕金森病(PD)患者存在明显的言语交流障碍。在早发性 PD 的 Pink1-/-大鼠模型中发现,超声发声交流在疾病早期受损,在黑质纹状体多巴胺耗竭之前逐渐恶化,并与蓝斑神经元、脑干α-突触核蛋白和喉病理学有关。PD 患者还表现出呼吸功能缺陷和感觉处理改变,这可能导致发声缺陷。

目的

中心假设是,在出现肢体和发声运动缺陷的早期疾病阶段,存在呼吸和感觉缺陷。

方法

将 Pink1-/-大鼠与野生型(WT)对照组进行纵向比较。采用全身体积描记法测量以下条件下的通气:基础状态、缺氧和最大化学感受器刺激。足底热痛觉,以及作为之前工作的后续,分析肢体步态和发声。死后量化背侧中缝的 5-羟色胺密度(5-HT)。

结果

在所有时间点,Pink1-/-大鼠的基础呼吸频率始终较高。在缺氧条件下,两种基因型之间没有显著差异。随着高碳酸血症,Pink1-/-大鼠的呼吸频率随年龄下降。与 WT 大鼠相比,Pink1-/-大鼠的热退缩潜伏期在整个时间内均明显较快。两种基因型之间的 5-HT 无差异。Pink1-/-大鼠的发声峰值频率与潮气量和分钟通气量呈负相关。

结论

这项工作表明,Pink1-/-大鼠异常的痛觉反应和呼吸功能异常可能与疾病表现期间对化学感觉刺激的异常感觉运动处理有关。

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