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吗啡对大鼠小胶质细胞吞噬活性的影响:脑区、铺板密度、性别、吗啡浓度和受体依赖性的体外研究。

The effect of morphine on rat microglial phagocytic activity: An in vitro study of brain region-, plating density-, sex-, morphine concentration-, and receptor-dependency.

机构信息

Department of Neuroscience and Experimental Therapeutics, Albany Medical College, Albany, NY 12208, United States of America.

Department of Neuroscience and Experimental Therapeutics, Albany Medical College, Albany, NY 12208, United States of America; Siena College, Loudonville, NY 12211, United States of America.

出版信息

J Neuroimmunol. 2023 Nov 15;384:578204. doi: 10.1016/j.jneuroim.2023.578204. Epub 2023 Sep 21.

Abstract

Opioids have long been used for clinical pain management, but also have addictive properties that have contributed to the ongoing opioid epidemic. While opioid activation of opioid receptors is well known to contribute to reward and reinforcement, data now also suggest that opioid activation of immune signaling via toll-like receptor 4 (TLR4) may also play a role in addiction-like processes. TLR4 expression is enriched in immune cells, and in the nervous system is primarily expressed in microglia. Microglial phagocytosis is important for developmental, homeostatic, and pathological processes. To examine how morphine impacts microglial phagocytosis, we isolated microglia from adult male and female rat cortex and striatum and plated them in vitro at 10,000 (10K) or 50,000 cells/well densities. Microglia were incubated with neutral fluorescent microbeads to stimulate phagocytosis in the presence of one of four morphine concentrations. We found that the brain region from which microglia are isolated and plating density, but not morphine concentration, impacts cell survival in vitro. We found that 10 M morphine, but not higher concentrations, increases phagocytosis in striatal microglia in vitro independent of sex and plating density, while 10 M morphine increased phagocytosis in cortical microglia in vitro independent of sex, but contingent on a plating density. Finally, we demonstrate that the effect of 10 M morphine in striatal microglia plated at 10 K density is mediated via TLR4, and not μORs. Overall, our data suggest that in rats, a morphine-TLR4 signaling pathway increases phagocytic activity in microglia independent of sex. This may is useful information for better understanding the possible neural outcomes associated with morphine exposures.

摘要

阿片类药物长期以来一直被用于临床疼痛管理,但也具有成瘾性,这导致了持续的阿片类药物流行。虽然阿片类药物激活阿片受体被认为是导致奖赏和强化的原因,但现在的数据也表明,阿片类药物通过 Toll 样受体 4(TLR4)激活免疫信号也可能在成瘾样过程中发挥作用。TLR4 表达在免疫细胞中丰富,在神经系统中主要在小胶质细胞中表达。小胶质细胞吞噬作用对于发育、稳态和病理过程都很重要。为了研究吗啡如何影响小胶质细胞吞噬作用,我们从小鼠大脑皮质和纹状体中分离出小胶质细胞,并以 10000(10K)或 50000 个细胞/孔的密度在体外培养。在存在四种吗啡浓度之一的情况下,用中性荧光微球刺激小胶质细胞吞噬作用。我们发现,从小胶质细胞分离出来的脑区和培养密度,但不是吗啡浓度,影响体外细胞的存活。我们发现,10 M 吗啡,但不是更高浓度的吗啡,增加了体外纹状体小胶质细胞的吞噬作用,而不考虑性别和培养密度,而 10 M 吗啡增加了体外皮质小胶质细胞的吞噬作用,而不考虑性别,但取决于培养密度。最后,我们证明,10 K 密度培养的纹状体小胶质细胞中 10 M 吗啡的作用是通过 TLR4 介导的,而不是 μORs。总的来说,我们的数据表明,在大鼠中,吗啡-TLR4 信号通路增加了小胶质细胞的吞噬活性,而与性别无关。这可能是更好地理解与吗啡暴露相关的可能神经后果的有用信息。

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