Extracellular ATP regulates phagocytic activity, mitochondrial respiration, and cytokine secretion of human astrocytic cells.

IF 3 4区 医学 Q2 NEUROSCIENCES Purinergic Signalling Pub Date : 2025-01-21 DOI:10.1007/s11302-025-10066-x
Sijie Shirley Yang, Noah A H Brooks, Dylan E Da Silva, Julien Gibon, Hashim Islam, Andis Klegeris
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Abstract

The two main glial cell types of the central nervous system (CNS), astrocytes and microglia, are responsible for neuroimmune homeostasis. Recent evidence indicates astrocytes can participate in removal of pathological structures by becoming phagocytic under conditions of neurodegenerative disease when microglia, the professional phagocytes, are impaired. We hypothesized that adenosine triphosphate (ATP), which acts as damage-associated molecular pattern (DAMP), when released at high concentrations into extracellular space, upregulates phagocytic activity of human astrocytes. This study is the first to measure changes in phagocytic activity and mitochondrial respiration of human astrocytic cells in response to extracellular ATP. We demonstrate that ATP-induced phagocytic activity of U118 MG astrocytic cells is accompanied by upregulated mitochondrial oxidative phosphorylation, which likely supports this energy-dependent process. Application of a selective antagonist A438079 provides evidence identifying astrocytic purinergic P2X7 receptor (P2X7R) as the potential regulator of their phagocytic function. We also report a rapid ATP-induced increase in intracellular calcium ([Ca2+]i), which could serve as regulator of both the phagocytic activity and mitochondrial metabolism, but this hypothesis will need to be tested in future studies. Since ATP upregulates interleukin (IL)-8 secretion by astrocytes but has no effect on their cytotoxicity towards neuronal cells, we conclude that extracellular ATP affects only specific functions of astrocytes. The selectivity of P2X7R-dependent regulation of astrocyte functions by extracellular ATP could allow targeting this receptor-ligand interaction to upregulate their phagocytic function. This could have beneficial outcomes in neurodegenerative disorders, such as Alzheimer's disease, that are characterized by reactive astrocytes and defective phagocytic processes.

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细胞外ATP调节人类星形细胞的吞噬活性、线粒体呼吸和细胞因子分泌。
中枢神经系统(CNS)的两种主要胶质细胞类型,星形胶质细胞和小胶质细胞,负责神经免疫稳态。最近的证据表明,在神经退行性疾病条件下,当专业吞噬细胞小胶质细胞受损时,星形胶质细胞可以通过成为吞噬细胞参与病理结构的清除。我们假设三磷酸腺苷(ATP)作为损伤相关分子模式(DAMP),当高浓度释放到细胞外空间时,上调人类星形胶质细胞的吞噬活性。这项研究首次测量了人类星形细胞对细胞外ATP的吞噬活性和线粒体呼吸的变化。我们证明atp诱导的U118 MG星形细胞吞噬活性伴随着线粒体氧化磷酸化的上调,这可能支持这种能量依赖性过程。选择性拮抗剂A438079的应用为星形细胞嘌呤能P2X7受体(P2X7R)作为其吞噬功能的潜在调节剂提供了证据。我们还报道了atp诱导的细胞内钙([Ca2+]i)的快速增加,这可能作为吞噬活性和线粒体代谢的调节剂,但这一假设需要在未来的研究中进行验证。由于ATP上调星形胶质细胞分泌白细胞介素(IL)-8,但不影响其对神经元细胞的细胞毒性,我们得出结论,细胞外ATP仅影响星形胶质细胞的特定功能。细胞外ATP对星形胶质细胞功能的p2x7r依赖性调节的选择性可能允许靶向这种受体-配体相互作用来上调其吞噬功能。这可能对神经退行性疾病(如阿尔茨海默病)有有益的结果,这些疾病的特征是星形胶质细胞反应性和吞噬过程缺陷。
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来源期刊
Purinergic Signalling
Purinergic Signalling 医学-神经科学
CiteScore
6.60
自引率
17.10%
发文量
75
审稿时长
6-12 weeks
期刊介绍: Nucleotides and nucleosides are primitive biological molecules that were utilized early in evolution both as intracellular energy sources and as extracellular signalling molecules. ATP was first identified as a neurotransmitter and later as a co-transmitter with all the established neurotransmitters in both peripheral and central nervous systems. Four subtypes of P1 (adenosine) receptors, 7 subtypes of P2X ion channel receptors and 8 subtypes of P2Y G protein-coupled receptors have currently been identified. Since P2 receptors were first cloned in the early 1990’s, there is clear evidence for the widespread distribution of both P1 and P2 receptor subtypes in neuronal and non-neuronal cells, including glial, immune, bone, muscle, endothelial, epithelial and endocrine cells.
期刊最新文献
Adventures in translation. Extracellular ATP regulates phagocytic activity, mitochondrial respiration, and cytokine secretion of human astrocytic cells. Purinergic signaling in health: special issue of purines 2022 in Brazil. P2Y1R-IGFBP2 signaling: new contributor to astrocyte-neuron communication. Correction to: Preparation and preliminary evaluation of a tritium-labeled allosteric P2X4 receptor antagonist.
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