Paclitaxel alters the microvascular network in the central and peripheral nervous system of rats with chemotherapy-induced painful peripheral neuropathy.

IF 3.9 3区 医学 Q1 CLINICAL NEUROLOGY
Antonio Giuliano Zippo, Virginia Rodriguez-Menendez, Eleonora Pozzi, Annalisa Canta, Alessia Chiorazzi, Elisa Ballarini, Laura Monza, Paola Alberti, Cristina Meregalli, Alberto Bravin, Paola Coan, Elena Longo, Giulia Saccomano, Katrine Paiva, Giuliana Tromba, Guido Cavaletti, Valentina Alda Carozzi
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引用次数: 0

Abstract

Background and aims: Chemotherapy-induced peripheral neurotoxicity (CIPN), with paraesthesia, numbness, dysesthesia and neuropathic pain ranks among the most common dose-limiting toxicity of several widely used anticancer drugs. Recent studies revealed the microvascular angiogenesis as a new important actor, beside peripheral neurons, in the neurotoxicity and neuropathic pain development and chronicisation. The aim of this work is to elucidate the role of vascular alterations in CIPN.

Methods: We evaluated the severity of CIPN with neurophysiological, behavioural and neuropathological analysis together with the microvascular network in central and peripheral nervous systems of rats in order to correlate the features of the CIPN and the vascular abnormalities. The vascular network was quantitatively evaluated through synchrotron radiation-based X-ray phase-contrast micro-tomography imaging, measuring four specific parameters: vascular density, vessel diameter, vessel tortuosity and branching.

Results: Rats exposed to paclitaxel and affected by a severe painful sensory axonopathy showed an increased vascular density (putative sprouting angiogenesis) in the crucial districts of the central (somatosensory cortex and lumbar spinal cord) and peripheral nervous system (lumbar dorsal root ganglia). In addition, the complexity of the vascular network and the size of neo-formed vessels were significantly decreased in specific regions. On the other hand, less significant changes were observed in rats exposed to cisplatin, affected by a painless peripheral neuropathy, suggesting a specific involvement of neo-angiogenesis in the development of severe neurotoxicity and neuropathic pain.

Interpretations: These new ground-breaking results can shed light on new pathogenetic mechanisms and potential novel therapeutic approaches for painful-CIPN.

紫杉醇改变了化疗诱发痛性周围神经病大鼠中枢和周围神经系统的微血管网络。
背景和目的:化疗引起的外周神经毒性(CIPN),包括麻痹、麻木、感觉障碍和神经病理性疼痛,是几种广泛使用的抗癌药物最常见的剂量限制性毒性之一。最近的研究发现,微血管血管生成是神经毒性和神经病理性疼痛发展和慢性化过程中除外周神经元之外的一个新的重要角色。本研究旨在阐明血管变化在 CIPN 中的作用:我们通过神经生理学、行为学和神经病理学分析以及大鼠中枢神经系统和周围神经系统的微血管网络评估了 CIPN 的严重程度,以便将 CIPN 的特征与血管异常联系起来。通过基于同步辐射的 X 射线相位对比显微层析成像对血管网络进行了定量评估,测量了四个特定参数:血管密度、血管直径、血管迂曲度和分支:结果:暴露于紫杉醇并患有严重痛觉轴突病的大鼠在中枢神经系统(躯体感觉皮层和腰部脊髓)和周围神经系统(腰部背根神经节)的关键区域表现出血管密度增加(推测为血管新生发芽)。此外,特定区域血管网络的复杂性和新形成血管的大小也明显下降。另一方面,在暴露于顺铂的大鼠身上观察到的变化并不明显,这些大鼠受到无痛性周围神经病变的影响,这表明新血管生成特别参与了严重神经毒性和神经病理性疼痛的发展:这些新的突破性成果可以揭示新的致病机制和潜在的新型治疗方法,从而治疗疼痛型CIPN。
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来源期刊
CiteScore
6.10
自引率
7.90%
发文量
45
审稿时长
>12 weeks
期刊介绍: The Journal of the Peripheral Nervous System is the official journal of the Peripheral Nerve Society. Founded in 1996, it is the scientific journal of choice for clinicians, clinical scientists and basic neuroscientists interested in all aspects of biology and clinical research of peripheral nervous system disorders. The Journal of the Peripheral Nervous System is a peer-reviewed journal that publishes high quality articles on cell and molecular biology, genomics, neuropathic pain, clinical research, trials, and unique case reports on inherited and acquired peripheral neuropathies. Original articles are organized according to the topic in one of four specific areas: Mechanisms of Disease, Genetics, Clinical Research, and Clinical Trials. The journal also publishes regular review papers on hot topics and Special Issues on basic, clinical, or assembled research in the field of peripheral nervous system disorders. Authors interested in contributing a review-type article or a Special Issue should contact the Editorial Office to discuss the scope of the proposed article with the Editor-in-Chief.
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