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Release of Anti-Inflammatory Palmitoleic Acid and Its Positional Isomers by Mouse Peritoneal Macrophages

机译:通过小鼠腹膜巨噬细胞释放抗炎棕榈药酸及其位置异构体

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摘要

Positional isomers of hexadecenoic acid are considered as fatty acids with anti-inflammatory properties. The best known of them, palmitoleic acid (cis-9-hexadecenoic acid, 16:1n-7), has been identified as a lipokine with important beneficial actions in metabolic diseases. Hypogeic acid (cis-7-hexadecenoic acid, 16:1n-9) has been regarded as a possible biomarker of foamy cell formation during atherosclerosis. Notwithstanding the importance of these isomers as possible regulators of inflammatory responses, very little is known about the regulation of their levels and distribution and mobilization among the different lipid pools within the cell. In this work, we describe that the bulk of hexadecenoic fatty acids found in mouse peritoneal macrophages is esterified in a unique phosphatidylcholine species, which contains palmitic acid at the sn-1 position, and hexadecenoic acid at the sn-2 position. This species markedly decreases when the macrophages are activated with inflammatory stimuli, in parallel with net mobilization of free hexadecenoic acid. Using pharmacological inhibitors and specific gene-silencing approaches, we demonstrate that hexadecenoic acids are selectively released by calcium-independent group VIA phospholipase A2 under activation conditions. While most of the released hexadecenoic acid accumulates in free fatty acid form, a significant part is also transferred to other phospholipids to form hexadecenoate-containing inositol phospholipids, which are known to possess growth-factor-like-properties, and are also used to form fatty acid esters of hydroxy fatty acids, compounds with known anti-diabetic and anti-inflammatory properties. Collectively, these data unveil new pathways and mechanisms for the utilization of palmitoleic acid and its isomers during inflammatory conditions, and raise the intriguing possibility that part of the anti-inflammatory activity of these fatty acids may be due to conversion to other lipid mediators.
机译:十六烯酸的位置异构体被认为是具有抗炎性质的脂肪酸。它们中已知的棕榈酰酸(CIS-9-十六烯酸,16:1N-7)已被鉴定为具有代谢疾病的重要有益作用的脂质因子。在动脉粥样硬化期间被认为是脱酸(CIS-7-十六烯酸,16:1N-9)被认为是可能的泡沫细胞形成的可能生物标志物。尽管这些异构体的重要性,作为可能的炎症反应的可能调节剂,但关于其在细胞内不同脂质池中的水平和分布和动员的调节很少。在这项工作中,我们描述了在小鼠腹膜巨噬细胞中发现的大量十六烯族脂肪酸在独特的磷脂酰胆碱物种中酯化,其在Sn-1位置含有棕榈酸,在Sn-2位置处的十六烯酸。当巨噬细胞用炎性刺激激活巨噬细胞时,该物种显着降低,与游离十六烯酸的净动员平行。使用药理学抑制剂和特异性基因沉默方法,我们证明了在活化条件下通过磷脂酶A2通过富于磷脂酶A 2选择性地释放十六烯酸。虽然大多数释放的十六烯酸酸中累积在游离脂肪酸形式中,但也转移到其它磷脂中以形成含环苯酸酯的肌醇磷脂,其已知具有生长因子样,并且还用于形成羟基脂肪酸的脂肪酸酯,已知的抗糖尿病和抗炎性能的化合物。统称,这些数据揭示了在炎症条件下利用棕榈酰酸及其异构体的新途径和机制,并提高了这些脂肪酸的部分抗炎活性的有趣可能是由于转化为其他脂质介质。

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