脂多糖突变体Re-LPS是检测类风湿滑膜细胞培养中脂多糖污染的有用工具。

Hiroki Kohno, Kazuhisa Ouhara, Sho Mokuda, Tadahiro Tokunaga, Tomohiro Sugimoto, Hirofumi Watanabe, Michinori Ishitoku, Yusuke Yoshida, Noriyoshi Mizuno, Tatsuhiko Ozawa, Masatoshi Kawataka, Shintaro Hirata, Hiroyuki Kishi, Eiji Sugiyama
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引用次数: 0

摘要

市售蛋白的脂多糖(LPS)污染严重阻碍了类风湿滑膜细胞(RSCs)中瓜氨酸化纤维蛋白原(citl - fb)的研究。方法:培养4例行全膝关节置换术的类风湿关节炎患者的RSCs,用cite - fb刺激RSCs,测定细胞因子表达水平。然后,我们评估了多粘菌素- b (PMB)、热失活和粗糙(R)型LPS突变体对LPS污染的快速检测。结果:cit-Fb通过toll样受体诱导RSCs中CXCL10和IFNB的表达。PMB抑制20 μg/mL cit-Fb介导的CXCL10基因表达,但对cit-Fb诱导的CXCL10蛋白表达无抑制作用。热失活不影响lps介导的CXCL10或IL-6诱导;然而,cit- fb介导的cxcl10表达被抑制。野生型大肠杆菌LPS (WT-LPS)诱导CXCL10表达较强,而Ra-LPS诱导较弱,Rc-和Re-LPS诱导较弱。wt - lps介导的CXCL10诱导在RSCs和外周血单核细胞(PBMs)中的抑制作用是剂量依赖性的。此外,Re-LPS完全抑制了cite - fb介导的CXCL10在RSCs和PBMs中的诱导。结论:为了在常规实验中容易识别LPS污染,我们的研究结果表明,与PMB和热处理相比,Re-LPS是一种更好的快速检测LPS污染的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Lipopolysaccharide Mutant Re-LPS Is a Useful Tool for Detecting LPS Contamination in Rheumatoid Synovial Cell Cultures.

Introduction: Lipopolysaccharide (LPS) contamination of commercially available proteins has seriously impeded research on citrullinated fibrinogen (cit-Fb) in rheumatoid synovial cells (RSCs).

Methods: RSCs obtained from 4 rheumatoid arthritis patients who underwent full knee arthroplasty were cultured, stimulated with cit-Fb, and cytokine expression levels were measured. We then evaluated polymyxin-B (PMB), heat inactivation, and rough (R)-type LPS mutants for rapid detection of LPS contamination.

Results: cit-Fb induced expression of CXCL10 and IFNB in RSCs via the toll-like receptor. PMB inhibited cit-Fb-mediated CXCL10 gene expression but not protein expression induced by 20 μg/mL cit-Fb. Heat inactivation did not affect LPS-mediated CXCL10 or IL-6 induction; however, cit-Fb-mediated CXCL10expression was inhibited. Wild-type LPS from Escherichia coli (WT-LPS) strongly induces CXCL10 expression, but induction by Ra-LPS was weak, and induction by Rc- and Re-LPS was minimal. Re-LPS suppression of WT-LPS-mediated CXCL10 induction in RSCs and peripheral blood monocytes (PBMs) was dose dependent. Furthermore, Re-LPS completely suppressed cit-Fb-mediated CXCL10 induction in RSCs and PBMs.

Conclusion: To easily identify LPS contamination during routine experiments, our results suggest that Re-LPS is a better tool for rapid detection of LPS contamination compared to PMB and heat treatment.

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