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Complex interrelationships between nitro-alkene-dependent inhibition of soluble epoxide hydrolase inflammation and tumor growth

机译:硝基烯烃依赖性抑制可溶性环氧化物水解酶炎症和肿瘤生长之间的复杂相互关系

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摘要

Nitro-oleate (10-nitro-octadec-9-enoic acid), which inhibits soluble epoxide hydrolase (sEH) by covalently adducting to C521, increases the abundance of epoxyeicosatrienoic acids (EETs) that can be health promoting, for example by lowering blood pressure or their anti-inflammatory actions. However, perhaps consistent with their impact on angiogenesis, increases in EETs may exacerbate progression of some cancers. To assess this, Lewis lung carcinoma (LLc1) cells were exposed to oleate or nitro-oleate, with the latter inhibiting the hydrolase and increasing their proliferation and migration . The enhanced proliferation induced by nitro-oleate was EET-dependent, being attenuated by the ETT-receptor antagonist 14,15-EE-5(Z)-E. LLc1 cells were engineered to stably overexpress wild-type or C521S sEH, with the latter exhibiting resistance to nitro-oleate-dependent hydrolase inhibition and the associated stimulation of tumor growth or vivo. Nitro-oleate also increased migration in endothelial cells isolated from wild-type (WT) mice, but not those from C521S sEH knock-in (KI) transgenic mice genetically modified to render the hydrolase electrophile-resistant. These observations were consistent with nitro-oleate promoting cancer progression, and so the impact of this electrophile was examined again, but this time comparing growth of LLc1 cells expressing constitutive levels of wild-type hydrolase when implanted into WT or KI mice. Nitro-oleate inhibited tumor sEH (P in vitro studies with LLc1 cells supported a role for nitro-oleate in cancer cell proliferation, it failed to significantly stimulate tumor growth in WT mice implanted with the same LLc1 cells , perhaps due to its well-established anti-inflammatory actions. Indeed, pro-inflammatory cytokines were significantly down-regulated in nitro-oleate treated WT mice, potentially countering any impact of the concomitant inhibition of sEH.
机译:通过共价加成C521来抑制可溶性环氧化物水解酶(sEH)的油酸硝基酯(10-硝基-十八烷基-9-烯酸)增加了可以促进健康的环氧二十碳三烯酸(EET)的含量,例如通过降低血液压力或抗炎作用。但是,EET的增加可能与其对血管生成的影响相一致,可能会加剧某些癌症的进展。为了评估这一点,将Lewis肺癌(LLc1)细胞暴露于油酸盐或硝基油酸盐中,后者抑制水解酶并增加其增殖和迁移。油酸硝基酯诱导的增殖增强是EET依赖性的,被ETT受体拮抗剂14,15-EE-5(Z)-E减弱。 LLc1细胞经过工程改造,可以稳定地过表达野生型或C521S sEH,后者表现出对硝基油酸酯依赖性水解酶抑制作用的抵抗力以及与之相关的肿瘤生长或体内刺激。硝基油酸酯还增加了从野生型(WT)小鼠中分离的内皮细胞的迁移,但没有对经过基因修饰以使水解酶具有亲电性的C521S sEH敲入(KI)转基因小鼠中的内皮细胞迁移。这些观察结果与油酸硝基酯促进癌症的进展一致,因此再次检查了该亲电试剂的影响,但是这次比较了植入野生型水解酶时表达组成型水平的LLcl细胞的生长。硝基油酸酯抑制肿瘤sEH(P对LLc1细胞的体外研究支持了硝基油酸酯在癌细胞增殖中的作用,它未能显着刺激植入相同LLc1细胞的野生型小鼠的肿瘤生长,可能是由于其成熟的原因实际上,促炎细胞因子在硝基油酸酯处理的WT小鼠中显着下调,可能抵消了对sEH抑制的任何影响。

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