Macrophage inflammatory state in Type 1 diabetes: triggered by NLRP3/iNOS pathway and attenuated by docosahexaenoic acid

促炎细胞因子 六烯酸 内分泌学 胰岛炎 炎症体 内科学 炎症 趋化因子 点头 化学 免疫学 医学 糖尿病 多不饱和脂肪酸 生物化学 脂肪酸
作者
Mariana Rodrigues Davanso,Amanda Rabello Crisma,Tárcio Teodoro Braga,Laureane Nunes Masi,Cátia Lira do Amaral,Vinícius Nunes Cordeiro Leal,Dhêmerson Souza de Lima,Thiago A. Patente,José Alexandre Marzagão Barbuto,Maria Lúcia Corrêa‐Giannella,Mario Lauterbach,Carl Christian Kolbe,Eicke Latz,Niels Olsen Saraiva Câmara,Alessandra Pontillo,Rui Curi
出处
期刊:Clinical Science [Portland Press]
卷期号:135 (1): 19-34 被引量:49
标识
DOI:10.1042/cs20201348
摘要

Type 1 diabetes mellitus (T1D) is a chronic autoimmune disease characterized by insulin-producing pancreatic β-cell destruction and hyperglycemia. While monocytes and NOD-like receptor family-pyrin domain containing 3 (NLRP3) are associated with T1D onset and development, the specific receptors and factors involved in NLRP3 inflammasome activation remain unknown. Herein, we evaluated the inflammatory state of resident peritoneal macrophages (PMs) from genetically modified non-obese diabetic (NOD), NLRP3-KO, wild-type (WT) mice and in peripheral blood mononuclear cells (PBMCs) from human T1D patients. We also assessed the effect of docosahexaenoic acid (DHA) on the inflammatory status. Macrophages from STZ-induced T1D mice exhibited increased inflammatory cytokine/chemokine levels, nitric oxide (NO) secretion, NLRP3 and iNOS protein levels, and augmented glycolytic activity compared to control animals. In PMs from NOD and STZ-induced T1D mice, DHA reduced NO production and attenuated the inflammatory state. Furthermore, iNOS and IL-1β protein expression levels and NO production were lower in the PMs from diabetic NLRP3-KO mice than from WT mice. We also observed increased IL-1β secretion in PBMCs from T1D patients and immortalized murine macrophages treated with advanced glycation end products and palmitic acid. The present study demonstrated that the resident PMs are in a proinflammatory state characterized by increased NLRP3/iNOS pathway-mediated NO production, up-regulated proinflammatory cytokine/chemokine receptor expression and altered glycolytic activity. Notably, ex vivo treatment with DHA reverted the diabetes-induced changes and attenuated the macrophage inflammatory state. It is plausible that DHA supplementation could be employed as adjuvant therapy for treating individuals with T1D.
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