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Pharmacological profile of the neuropeptide S receptor: Dynamic mass redistribution studies

机译:神经肽S受体的药理学概况:动态质量再分配研究

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Neuropeptide S (NPS) is the endogenous ligand of the neuropeptide S receptor (NPSR). NPS modulates several biological functions including anxiety, wakefulness, pain, and drug abuse. The aim of this study was the investigation of the pharmacological profile of NPSR using the dynamic mass redistribution (DMR) assay. DMR is a label-free assay that offers a holistic view of cellular responses after receptor activation. HEK293 cells stably transfected with the murine NPSR (HEK293mNPSR) have been used. To investigate the nature of the NPS-evoked DMR signaling, FR900359 (Gq inhibitor), pertussis toxin (Gi inhibitor), and rolipram (phosphodiesterase inhibitor) were used. To determine the pharmacology of NPSR, several selective ligands (agonists, partial agonists, antagonists) have been tested. NPS, through selective NPSR activation, evoked a robust DMR signal with potency in the nanomolar range. This signal was predominantly, but not completely, blocked by FR900359, suggesting the involvement of the Gq-dependent signaling cascade. NPSR ligands (agonists and antagonists) displayed potency values in DMR experiments similar, but not identical, to those reported in the literature. Furthermore, partial agonists produced a higher efficacy in DMR than in calcium experiments. DMR can be successfully used to study the pharmacology and signaling properties of novel NPSR ligands. This innovative approach will likely increase the translational value of in?vitro pharmacological studies.
机译:神经肽S(NPS)是神经肽S受体(NPSR)的内源性配体。 NPS调节若干生物功能,包括焦虑,清醒,疼痛和药物滥用。本研究的目的是使用动态质量再分布(DMR)测定来研究NPSR的药理学谱。 DMR是一种无标签的测定,在受体激活后提供细胞反应的整体视图。已经使用了用鼠NPSR(HEK293MNPSR)稳定转染的HEK293细胞。为了研究NPS诱发的DMR信号传导的性质,使用FR900359(GQ抑制剂),Pertussis毒素(GI抑制剂)和Rolipram(磷酸二酶抑制剂)。为了确定NPSR的药理学,已经测试了几种选择性配体(激动剂,部分激动剂,拮抗剂)。 NPS通过选择性NPSR激活,唤起纳米摩拉范围效力的强大DMR信号。在FR900359中,该信号主要是完全的,但不完全阻止,表明GQ相关的信号传导级联的参与。 NPSR配体(激动剂和拮抗剂)在DMR实验中显示出效力值,与文献中报道的那些相似但不相同。此外,部分激动剂在DMR中产生比钙实验更高的疗效。 DMR可以成功地用于研究新型NPSR配体的药理学和信号性质。这种创新方法可能会增加体外药理学研究的翻译价值。

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