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Potentiation of PIEZO2 mechanically-activated currents in sensory neurons mediates vincristine-induced mechanical hypersensitivity 被引量:1
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作者 Mingli Duan Yurui Jia +4 位作者 Lifang Huo yiting gao Jia Wang Wei Zhang Zhanfeng Jia 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2023年第8期3365-3381,共17页
Vincristine,a widely used chemotherapeutic agent for treating different cancer,often induces severe peripheral neuropathic pain.A common symptom of vincristine-induced peripheral neuropathic pain is mechanical allodyn... Vincristine,a widely used chemotherapeutic agent for treating different cancer,often induces severe peripheral neuropathic pain.A common symptom of vincristine-induced peripheral neuropathic pain is mechanical allodynia and hyperalgesia.However,mechanisms underlying vincristine-induced mechanical allodynia and hyperalgesia are not well understood.In the present study,we show with behavioral assessment in rats that vincristine induces mechanical allodynia and hyperalgesia in a PIEZO2 channel-dependent manner since gene knockdown or pharmacological inhibition of PIEZO2 channels alleviates vincristine-induced mechanical hypersensitivity.Electrophysiological results show that vincristine potentiates PIEZO2 rapidly adapting(RA)mechanically-activated(MA)currents in rat dorsal root ganglion(DRG)neurons.We have found that vincristine-induced potentiation of PIEZO2 MA currents is due to the enhancement of static plasma membrane tension(SPMT)of these cells following vincristine treatment.Reducing SPMT of DRG neurons by cytochalasin D(CD),a disruptor of the actin filament,abolishes vincristine-induced potentiation of PIEZO2 MA currents,and suppresses vincristine-induced mechanical hypersensitivity in rats.Collectively,enhancing SPMT and subsequently potentiating PIEZO2 MA currents in primary afferent neurons may be an underlying mechanism responsible for vincristineinduced mechanical allodynia and hyperalgesia in rats.Targeting to inhibit PIEZO2 channels may be an effective analgesic method to attenuate vincristine-induced mechanical hypersensitivity. 展开更多
关键词 VINCRISTINE Peripheral neuropathic pain Mechanical hypersensitivity Dorsal root ganglion neurons PIEZO2mechanically-activated currents
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Spatial Distribution of Parvalbumin-Positive Fibers in the Mouse Brain and Their Alterations in Mouse Models of Temporal Lobe Epilepsy and Parkinson’s Disease
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作者 Changgeng Song Yan Zhao +17 位作者 Jiajia Zhang Ziyi Dong Xin Kang Yuqi Pan Jinle Du yiting gao Haifeng Zhang Ye Xi Hui Ding Fang Kuang Wenting Wang Ceng Luo Zhengping Zhang Qinpeng Zhao Jiazhou Yang Wen Jiang Shengxi Wu Fang gao 《Neuroscience Bulletin》 SCIE CSCD 2023年第11期1683-1702,共20页
Parvalbumin interneurons belong to the major types of GABAergic interneurons.Although the distribution and pathological alterations of parvalbumin interneuron somata have been widely studied,the distribution and vulne... Parvalbumin interneurons belong to the major types of GABAergic interneurons.Although the distribution and pathological alterations of parvalbumin interneuron somata have been widely studied,the distribution and vulnerability of the neurites and fibers extending from parvalbumin interneurons have not been detailly interrogated.Through the Cre recombinase-reporter system,we visualized parvalbumin-positive fibers and thoroughly investigated their spatial distribution in the mouse brain.We found that parvalbumin fibers are widely distributed in the brain with specific morphological characteristics in different regions,among which the cortex and thalamus exhibited the most intense parvalbumin signals.In regions such as the striatum and optic tract,even long-range thick parvalbumin projections were detected.Furthermore,in mouse models of temporal lobe epilepsy and Parkinson’s disease,parvalbumin fibers suffered both massive and subtle morphological alterations.Our study provides an overview of parvalbumin fibers in the brain and emphasizes the potential pathological implications of parvalbumin fiber alterations. 展开更多
关键词 alterations EPILEPSY fibers
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Correction:Spatial Distribution of Parvalbumin‑Positive Fibers in the Mouse Brain and Their Alterations in Mouse Models of Temporal Lobe Epilepsy and Parkinson’s Disease
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作者 Changgeng Song Yan Zhao +17 位作者 Jiajia Zhang Ziyi Dong Xin Kang Yuqi Pan Jinle Du yiting gao Haifeng Zhang Ye Xi Hui Ding Fang Kuang Wenting Wang Ceng Luo Zhengping Zhang Qinpeng Zhao Jiazhou Yang Wen Jiang Shengxi Wu Fang gao 《Neuroscience Bulletin》 SCIE CSCD 2023年第11期1747-1748,共2页
In this article the wrong figure appeared as Fig.3,the figure should have appeared as shown below.
关键词 Spatial FIGURE appeared
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