需要 TRPV1 感受器来优化对新型抗原的抗原特异性一抗反应。

Aisling Tynan, Téa Tsaava, Manojkumar Gunasekaran, Carlos E Bravo Iñiguez, Michael Brines, Sangeeta S Chavan, Kevin J Tracey
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引用次数: 0

摘要

背景:生物电子医学领域发展的关键是确定神经调节免疫功能的新途径。感觉神经元(称为痛觉感受器)能识别有害刺激,并通过引起疼痛和防御行为启动保护性反应。痛觉感受器还与免疫细胞相互作用,调节宿主防御和炎症反应。然而,目前还不清楚痛觉感受器是否参与调节对新抗原的初级 IgG 抗体反应:为了了解瞬时受体电位香草素1(TRPV1)表达神经元在IgG反应中的作用,我们培育了TRPV1-Cre/Rosa-ChannelRhodopsin2小鼠和TRPV1-Cre/Lox-diphtheria toxin A小鼠,前者用于精确光遗传激活TRPV1 +神经元,后者用于靶向消融TRPV1表达神经元。对抗原特异性抗体反应进行了为期 28 天的纵向监测:结果:我们在此表明,TRPV1表达神经元是产生抗原特异性免疫反应的必要条件。我们证明,在免疫过程中选择性光遗传刺激 TRPV1+ 神经感受器可显著增强对新型抗原的初级 IgG 抗体反应。此外,缺乏 TRPV1 表达神经感受器的小鼠无法对匙孔虫血蓝蛋白或合体抗原产生初级 IgG 抗体反应:这些功能和遗传证据表明,痛觉感受器 TRPV1 在对新型抗原的抗原特异性一级抗体反应中起着关键作用。这些结果还支持考虑利用生物电子设备对痛觉感受器通路进行潜在的治疗操作,以增强对外来抗原的免疫反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TRPV1 nociceptors are required to optimize antigen-specific primary antibody responses to novel antigens.

Background: Key to the advancement of the field of bioelectronic medicine is the identification of novel pathways of neural regulation of immune function. Sensory neurons (termed nociceptors) recognize harmful stimuli and initiate a protective response by eliciting pain and defensive behavior. Nociceptors also interact with immune cells to regulate host defense and inflammatory responses. However, it is still unclear whether nociceptors participate in regulating primary IgG antibody responses to novel antigens.

Methods: To understand the role of transient receptor potential vanilloid 1 (TRPV1)-expressing neurons in IgG responses, we generated TRPV1-Cre/Rosa-ChannelRhodopsin2 mice for precise optogenetic activation of TRPV1 + neurons and TRPV1-Cre/Lox-diphtheria toxin A mice for targeted ablation of TRPV1-expressing neurons. Antigen-specific antibody responses were longitudinally monitored for 28 days.

Results: Here we show that TRPV1 expressing neurons are required to develop an antigen-specific immune response. We demonstrate that selective optogenetic stimulation of TRPV1+ nociceptors during immunization significantly enhances primary IgG antibody responses to novel antigens. Further, mice rendered deficient in TRPV1- expressing nociceptors fail to develop primary IgG antibody responses to keyhole limpet hemocyanin or haptenated antigen.

Conclusion: This functional and genetic evidence indicates a critical role for nociceptor TRPV1 in antigen-specific primary antibody responses to novel antigens. These results also support consideration of potential therapeutic manipulation of nociceptor pathways using bioelectronic devices to enhance immune responses to foreign antigens.

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来源期刊
CiteScore
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