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芳基环己酮及其衍生物对巨噬细胞体外极化的影响。

Effect of Aryl-Cyclohexanones and their Derivatives on Macrophage Polarization In Vitro.

作者信息

Lubschinski Tainá L, Pollo Luiz A E, Mohr Eduarda T B, da Rosa Julia S, Nardino Luigi A, Sandjo Louis P, Biavatti Maique W, Dalmarco Eduardo M

机构信息

Department of Clinical Analysis, Center of Health Sciences, Federal University of Santa Catarina, Florianópolis, Santa Catarina, 88040-970, Brazil.

Department of Pharmaceutical Sciences, Center of Health Sciences, Federal University of Santa Catarina, Florianópolis, Santa Catarina, 88040-970, Brazil.

出版信息

Inflammation. 2022 Aug;45(4):1612-1630. doi: 10.1007/s10753-022-01646-9. Epub 2022 Mar 5.

DOI:10.1007/s10753-022-01646-9
PMID:35247115
Abstract

Macrophages are critical in both tissue homeostasis and inflammation, and shifts in their polarization have been indicated as pivotal for the resolution of inflammatory processes. Inflammation is a complex and necessary component of the immune response to stimuli that are harmful to host homeostasis and is regulated by cellular and molecular events that remain a source of ongoing investigation. Among the compounds studied that have potential against autoimmune and inflammatory diseases, cannabinoids are currently highlighted. In this work, nineteen aryl-cyclohexanones diesters and their derivatives were synthesized based on the aryl-cyclohexane skeleton of phytocannabinoids, such as cannabidiol (CBD), and were evaluated for their anti-inflammatory and macrophage polarization potential. The results showed that Compound 4 inhibited the production of nitric oxide in RAW 264.7 macrophages. Furthermore, it reduced the levels of pro-inflammatory cytokines IL-12p70, TNF-α, IFN-γ, MCP-1, and IL-6 while, at the same time, was able to increase the production of anti-inflammatory cytokines IL-4, IL-10, and IL-13. Compound 4 also reduced macrophage apoptosis, increased the expression of the CD206 (mannose receptor) and at the same time, decreased the expression of CD284 (TLR-4 receptor) on the surface of these cells. Finally, it increased the phagocytic capacity and inhibited the phosphorylation of the p65 of NF-kβ. In conclusion, Compound 4, identified as diethyl-4-hydroxy-2-(4-methoxyphenyl)-4-methyl-6-oxocyclohexane-1-3-dicarboxylate, showed significant anti-inflammatory effect, while demonstrating the ability to transform phenotypically macrophages from the M1 phenotype (pro-inflammatory) to the M2 phenotype (anti-inflammatory). This led us to hypothesize that the main mechanism of anti-inflammatory effect of this molecule is linked to its immune modulation capacity.

摘要

巨噬细胞在组织稳态和炎症反应中都起着关键作用,其极化转变被认为是炎症过程消退的关键。炎症是对有害于宿主稳态的刺激产生免疫反应的复杂且必要的组成部分,由细胞和分子事件调节,这些事件仍是持续研究的来源。在已研究的具有抗自身免疫和炎症性疾病潜力的化合物中,大麻素目前备受关注。在这项工作中,基于植物大麻素如大麻二酚(CBD)的芳基环己烷骨架合成了19种芳基环己酮二酯及其衍生物,并评估了它们的抗炎和巨噬细胞极化潜力。结果表明,化合物4抑制RAW 264.7巨噬细胞中一氧化氮的产生。此外,它降低了促炎细胞因子IL-12p70、TNF-α、IFN-γ、MCP-1和IL-6的水平,同时能够增加抗炎细胞因子IL-4、IL-10和IL-13的产生。化合物4还减少了巨噬细胞凋亡,增加了CD206(甘露糖受体)的表达,同时降低了这些细胞表面CD284(TLR-4受体)的表达。最后,它增加了吞噬能力并抑制了NF-κβ p65的磷酸化。总之,被鉴定为4-羟基-2-(4-甲氧基苯基)-4-甲基-6-氧代环己烷-1,3-二羧酸二乙酯的化合物4显示出显著的抗炎作用,同时证明了将巨噬细胞从M1表型(促炎)转变为M2表型(抗炎)的能力。这使我们推测该分子抗炎作用的主要机制与其免疫调节能力有关。

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