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Dual Carbonic Anhydrase IX/XII Inhibitors and Carbon Monoxide Releasing Molecules Modulate LPS-Mediated Inflammation in Mouse Macrophages

机译:双碳酸酐酶IX / XII抑制剂和一氧化碳释放分子调节小鼠巨噬细胞中的LPS介导的炎症

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摘要

Low concentrations of carbon monoxide (CO) were reported to exhibit anti-inflammatory effects when administered in cells by suitable chemotypes such as CO releasing molecules (CO-RMs). In addition, the pH-modulating abilities of specific carbonic anhydrase isoforms played a crucial role in different models of inflammation and neuropathic pain. Herein, we report a series of chemical hybrids consisting of a Carbonic Anhydrase (CA) inhibitor linked to a CO-RM tail (CAI/CO-RMs). All compounds and their precursors were first tested in vitro for their inhibition activity against the human CA I, II, IX, and XII isoforms as well their CO releasing properties, aiming at corroborating the data by means of molecular modelling techniques. Then, their impact on metabolic activity modulation of RAW 264.7 mouse macrophages for 24 and 48 h was assessed with or without lipopolysaccharide (LPS) stimulation. The compounds were shown to counteract the inflammatory stimulus as also indicated by the reduced tumor necrosis factor alpha (TNF-α) release after treatment. All the biological results were compared to those of N-acetylcysteine (NAC) as a reference antioxidant compound. Within the series, two CAI/CO-RM hybrids (1 and 2), bearing both the well-known scaffold able to inhibit CAs (acesulfame) and the cobalt-based CO releasing portion, induced a higher anti-inflammatory effect up to 48 h at concentrations lower than NAC.
机译:据报道,当通过合适的嗜型诸如CO释放分子(CO-RMS)在细胞中施用时,据报道低浓度的一氧化碳(CO)表现出抗炎作用。此外,特异性碳酸酐酶同种型的pH调节能力在不同模型中发挥了至关重要的作用和神经性疼痛。在此,我们报告了一系列化学杂交物,其由与CO-RM尾部(CAI / CO-RMS)连接的碳酸酐酶(CA)抑制剂组成。所有化合物及其前体首先在体外测试它们对人Ca I,II,IX和XII同种型的抑制活性,以及​​它们的共同释放性质,旨在通过分子建模技术来证实数据。然后,使用或不含脂多糖(LPS)刺激来评估它们对原始264.7小鼠巨噬细胞的对原料264.7小鼠巨噬细胞的影响24和48小时的影响。显示化合物,抵消炎性刺激,也通过降低的肿瘤坏死因子α(TNF-α)释放治疗后表明。将所有生物学结果与N-乙酰半胱氨酸(NAC)的那些相提并为参考抗氧化剂。在该系列内,两个CAI / CO-RM杂交种(1和2),载有众所周知的支架能够抑制CAS(乙酰磺胺酰胺)和基于钴的CO释放部分,诱导抗炎效应高达48 H浓度低于NAC。

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