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Pharmaceutical agent cetylpyridinium chloride inhibits immune mast cell function by interfering with calcium mobilization.药物西吡氯铵通过干扰钙动员来抑制免疫肥大细胞功能。
bioRxiv. 2023 May 24:2023.05.23.541979. doi: 10.1101/2023.05.23.541979.
2
Pharmaceutical agent cetylpyridinium chloride inhibits immune mast cell function by interfering with calcium mobilization.药物试剂十六烷基吡啶氯通过干扰钙动员来抑制免疫肥大细胞功能。
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Antimicrobial cetylpyridinium chloride suppresses mast cell function by targeting tyrosine phosphorylation of Syk kinase.抗菌剂氯化十六烷基吡啶通过靶向Syk激酶的酪氨酸磷酸化来抑制肥大细胞功能。
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Antimicrobial cetylpyridinium chloride causes functional inhibition of mitochondria as potently as canonical mitotoxicants, nanostructural disruption of mitochondria, and mitochondrial Ca efflux in living rodent and primary human cells.抗菌剂十六烷基氯化吡啶对线粒体的功能抑制作用与典型的线粒体毒性剂一样有效,可导致活的啮齿动物细胞和原代人细胞中线粒体的纳米结构破坏以及线粒体钙外流。
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Regulation and Role of Store-Operated Ca Entry in Cellular Proliferation细胞内钙库操纵性钙内流在细胞增殖中的调控及作用

引用本文的文献

1
Quercetin and Kaempferol inhibit HMC-1 activation via SOCE/NFATc2 signaling and suppress hippocampal mast cell activation in lipopolysaccharide-induced depressive mice.槲皮素和山奈酚通过 SOCE/NFATc2 信号抑制 HMC-1 的激活,并抑制脂多糖诱导的抑郁小鼠海马肥大细胞的激活。
Inflamm Res. 2024 Jun;73(6):945-960. doi: 10.1007/s00011-024-01876-7. Epub 2024 Apr 8.

药物西吡氯铵通过干扰钙动员来抑制免疫肥大细胞功能。

Pharmaceutical agent cetylpyridinium chloride inhibits immune mast cell function by interfering with calcium mobilization.

作者信息

Obeng Bright, Potts Christian M, West Bailey E, Burnell John E, Fleming Patrick J, Shim Juyoung K, Kinney Marissa S, Ledue Emily L, Sangroula Suraj, Baez Vazquez Alan Y, Gosse Julie A

出版信息

bioRxiv. 2023 May 24:2023.05.23.541979. doi: 10.1101/2023.05.23.541979.

DOI:10.1101/2023.05.23.541979
PMID:37292883
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10245882/
Abstract

Cetylpyridinium chloride (CPC) is an antimicrobial used in numerous personal care and janitorial products and food for human consumption at millimolar concentrations. Minimal information exists on the eukaryotic toxicology of CPC. We have investigated the effects of CPC on signal transduction of the immune cell type mast cells. Here, we show that CPC inhibits the mast cell function degranulation with antigen dose-dependence and at non-cytotoxic doses ∼1000-fold lower than concentrations in consumer products. Previously we showed that CPC disrupts phosphatidylinositol 4,5-bisphosphate, a signaling lipid critical for store-operated Ca entry (SOCE), which mediates degranulation. Our results indicate that CPC inhibits antigen-stimulated SOCE: CPC restricts Ca efflux from endoplasmic reticulum, reduces Ca uptake into mitochondria, and dampens Ca flow through plasma membrane channels. While inhibition of Ca channel function can be caused by alteration of plasma membrane potential (PMP) and cytosolic pH, CPC does not affect PMP or pH. Inhibition of SOCE is known to depress microtubule polymerization, and here we show that CPC indeed dose-dependently shuts down formation of microtubule tracks. data reveal that CPC inhibition of microtubules is not due to direct CPC interference with tubulin. In summary, CPC is a signaling toxicant that targets Ca mobilization.

摘要

十六烷基氯化吡啶(CPC)是一种抗菌剂,用于众多个人护理和清洁产品以及供人类食用的食品中,浓度为毫摩尔级。关于CPC的真核生物毒理学的信息极少。我们研究了CPC对免疫细胞类型肥大细胞信号转导的影响。在此,我们表明CPC以抗原剂量依赖性方式抑制肥大细胞功能脱颗粒,且在非细胞毒性剂量下,其浓度比消费品中的浓度低约1000倍。此前我们表明,CPC会破坏磷脂酰肌醇4,5 - 二磷酸,这是一种对储存性钙内流(SOCE)至关重要的信号脂质,而SOCE介导脱颗粒。我们的结果表明,CPC抑制抗原刺激的SOCE:CPC限制内质网中的钙外流,减少线粒体对钙的摄取,并抑制钙通过质膜通道的流动。虽然钙通道功能的抑制可能由质膜电位(PMP)和细胞质pH的改变引起,但CPC不会影响PMP或pH。已知抑制SOCE会抑制微管聚合,在此我们表明CPC确实以剂量依赖性方式阻止微管轨道的形成。数据显示,CPC对微管的抑制并非由于CPC直接干扰微管蛋白。总之,CPC是一种靶向钙动员的信号毒物。