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Cytochrome P45026A1 Contributes to the Maintenance of Neuropathic Pain 被引量:1
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作者 De-Li Cao Ling-Jie Ma +2 位作者 Bao-Chun Jiang Qiang Gu Yong-Jing Gao 《Neuroscience Bulletin》 SCIE CAS CSCD 2024年第3期293-309,共17页
The cytochrome P450 proteins(CYP450s)have been implicated in catalyzing numerous important biological reactions and contribute to a variety of diseases.CYP26A1,a member of the CYP450 family,carries out the oxidative m... The cytochrome P450 proteins(CYP450s)have been implicated in catalyzing numerous important biological reactions and contribute to a variety of diseases.CYP26A1,a member of the CYP450 family,carries out the oxidative metabolism of retinoic acid(RA),the active metabolite of vitamin A.Here we report that CYP26A1 was dramatically upregulated in the spinal cord after spinal nerve ligation(SNL).CYP26A1 was mainly expressed in spinal neurons and astrocytes.HPLC analysis displayed that the content of all-trans-RA(at-RA),the substrate of CYP26A1,was reduced in the spinal cord on day 7 after SNL.Inhibition of CYP26A1 by siRNA or inhibition of CYP26A1-mediated at-RA catabolism by talarozole relieved the SNL-induced mechanical allodynia during the maintenance phase of neuropathic pain.Talarozole also reduced SNL-induced glial activation and proinflammatory cytokine production but increased anti-inflammatory cytokine(IL-10)production.The RA receptors RARα,RXRβ,and RXRγwere expressed in spinal neurons and glial cells.The promoter of Il-10 has several binding sites for RA receptors,and at-RA directly increased Il-10 mRNA expression in vitro.Finally,intrathecal IL-10 attenuated SNL-induced neuropathic pain and reduced the activation of astrocytes and microglia.Collectively,the inhibition of CYP26A1-mediated at-RA catabolism alleviates SNL-induced neuropathic pain by promoting the expression of IL-10 and suppressing glial activation.CYP26A1 may be a potential therapeutic target for the treatment of neuropathic pain. 展开更多
关键词 cyp26a1 MICROGLIA ASTROCYTES ERK P38 IL-10 Neuropathic pain
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米虾(Neoc aridina davidi)CYP18A1基因克隆及其功能分析
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作者 林然 周润林 +2 位作者 周家露 李冉 孙金生 《天津师范大学学报(自然科学版)》 2025年第6期13-18,共6页
为了解26-羟化酶(NhCYP18A1)在米虾蜕皮和繁殖中的作用,克隆得到NhCYP18A1基因全长,利用qPCR方法检测NhCYP18A1在米虾个体不同发育阶段和性腺发育不同时期的表达水平,统计计算米虾蜕皮率和雌虾性腺指数,并对雌虾性腺进行纵向石蜡切片观... 为了解26-羟化酶(NhCYP18A1)在米虾蜕皮和繁殖中的作用,克隆得到NhCYP18A1基因全长,利用qPCR方法检测NhCYP18A1在米虾个体不同发育阶段和性腺发育不同时期的表达水平,统计计算米虾蜕皮率和雌虾性腺指数,并对雌虾性腺进行纵向石蜡切片观察.结果显示:①NhCYP18A1在性腺成熟雌虾中的表达水平显著高于在性腺成熟雄虾中的表达水平;②在雌虾的性腺发育过程中,中后期NhCYP18A1表达水平显著高于性腺发育早期的表达水平;③成功敲降NhCYP18A1后,15d内实验组米虾累积蜕皮率显著高于对照组的数值,性腺成熟程度及性腺指数显著低于对照组的数值.上述结果证实NhCYP18A1参与米虾蜕皮和性腺发育过程,主要发挥抑制蜕皮及促进雌虾性腺成熟的作用. 展开更多
关键词 米虾 26-羟化酶(CYP18A1) 蜕皮 性腺发育 早熟 甲壳动物
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