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解析N-棕榈酰-D-葡萄糖胺与内源性大麻素系统之间的相互作用。

Deciphering the interaction between N-palmitoyl-D-glucosamine and the endocannabinoidome.

作者信息

Schiano Moriello Aniello, Allarà Marco, Iannotti Fabio Arturo, Marcolongo Gabriele, Piscitelli Fabiana, Verde Roberta, Di Marzo Vincenzo, Petrosino Stefania

机构信息

Istituto di Chimica Biomolecolare, Consiglio Nazionale delle Ricerche, Via Campi Flegrei 34, Pozzuoli (Napoli), 80078, Italy.

Epitech Group SpA, Via Einaudi 13, Saccolongo (Padova), 35030, Italy.

出版信息

Sci Rep. 2025 Jul 1;15(1):21094. doi: 10.1038/s41598-025-07103-5.

Abstract

N-palmitoyl-D-glucosamine (PGA) belongs to the class of molecules known as Autacoid Local Injury Antagonism (ALIA)-amides, whose parent compound is N-palmitoyl-ethanolamine (PEA) an endocannabinoid-like mediator belonging to the expanded endocannabinoid system (the endocannabinoidome). The mechanism of action of ALIA-amides is mainly targeted at the down-regulation of the hyperactivity of peripheral mast cells and non-neuronal cells of the central nervous system. This study aimed to investigate if PGA is able to produce the typical "entourage" effect of PEA, consisting of increasing the endogenous levels of the endocannabinoids anandamide (AEA) and 2-arachidonoylglycerol (2-AG), and to also elevate endogenous PEA levels. PGA (10 µM) treatment of HaCaT cells for 40 min and 6 h resulted in higher cellular concentrations of AEA, 2-AG and PEA. The increase of endocannabinoid and PEA levels was observed both after 40 min and 6 h of PGA treatment. The unselective serine hydrolase inhibitor MAFP (10 µM) inhibited the PGA-induced increase in cellular concentrations of AEA, 2-AG and PEA. The mRNA expression of endocannabinoid and PEA anabolic (NAPEPLD, ABHD4, GDE1, DAGLA and DAGLB) and catabolic (FAAH, MAGL and NAAA) enzymes was also measured, revealing a significative reduction of GDE1, DAGLB, FAAH, MAGL and NAAA, after PGA treatment for 6 h. Finally, AEA, 2-AG and PEA were also measured in HaCaT cells after siRNA against ABHD4 and PGA treatment for 40 min, revealing an increase of their endogenous levels. In conclusion, we demonstrated for the first time that PGA increases PEA and endocannabinoid levels, thus potentially strengthening a part of endocannabinoidome signaling.

摘要

N-棕榈酰-D-葡萄糖胺(PGA)属于被称为自分泌局部损伤拮抗物(ALIA)-酰胺类的分子,其母体化合物是N-棕榈酰乙醇胺(PEA),一种属于扩展内源性大麻素系统(内源性大麻素组)的类内源性大麻素介质。ALIA-酰胺的作用机制主要针对下调外周肥大细胞和中枢神经系统非神经元细胞的过度活跃。本研究旨在调查PGA是否能够产生PEA典型的“伴随”效应,即增加内源性大麻素花生四烯乙醇胺(AEA)和2-花生四烯酸甘油酯(2-AG)的水平,并提高内源性PEA水平。用PGA(10 μM)处理HaCaT细胞40分钟和6小时后,细胞内AEA、2-AG和PEA的浓度升高。在PGA处理40分钟和6小时后均观察到内源性大麻素和PEA水平的升高。非选择性丝氨酸水解酶抑制剂MAFP(10 μM)抑制了PGA诱导的细胞内AEA、2-AG和PEA浓度的升高。还测量了内源性大麻素和PEA合成(NAPEPLD、ABHD4、GDE1、DAGLA和DAGLB)及分解(FAAH、MAGL和NAAA)酶的mRNA表达,结果显示PGA处理6小时后,GDE1、DAGLB、FAAH、MAGL和NAAA显著降低。最后,在针对ABHD4的siRNA和PGA处理40分钟后的HaCaT细胞中也测量了AEA、2-AG和PEA,结果显示它们的内源性水平升高。总之,我们首次证明PGA可提高PEA和内源性大麻素水平,从而可能增强内源性大麻素组信号传导的一部分。

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