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巨噬细胞的手性依赖性重编程

Chirality-Dependent Reprogramming of Macrophages.

作者信息

Han Jing, Liu Huihui, Chen Junyu, Jia Ke, Sun Jiameng, Nie Zongxiu

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences; Beijing 100190, China.

Department of Clinical Laboratory, the Second Affiliated Hospital of Nanchang University, Nanchang 330006, China.

出版信息

ACS Nano. 2024 Jul 16. doi: 10.1021/acsnano.4c04137.

Abstract

The chirality of materials directly influences their transport and biological effects in physiological conditions. However, the impact of chiral materials on cellular metabolic reprogramming remains incompletely elucidated. In this study, we have synthesized chiral gold particles through a light-driven particle growth approach and demonstrated that d-Au particles exhibited superior macrophage activation ability compared to l-Au particles. An inflammatory creatine-phosphocreatine shunt was induced following d-Au stimulation. This shunt, facilitated by the upregulated expression of creatine kinase muscle-type (CKM), also resulted in a reduction in cytosolic levels of creatine. Pharmacological inhibition and genetic ablation of CKM further suppressed the secretion of pro-inflammatory cytokines, without compromising mitochondrial respiration. Moreover, the activation of macrophages induced by d-Au was mediated through the activation of the NF-κB and NLRP3 inflammasome pathways. Inhibition of CKM expression not only decreased the secretion of CXCL2 but also attenuated IL-1β by suppressing the NLRP3 inflammasome pathways. Our investigation into the metabolic reprogramming mechanism of chiral materials on macrophage activation is pivotal for the application of chiral-based anticancer therapies.

摘要

材料的手性直接影响其在生理条件下的转运和生物学效应。然而,手性材料对细胞代谢重编程的影响仍未完全阐明。在本研究中,我们通过光驱动颗粒生长方法合成了手性金颗粒,并证明与l-Au颗粒相比,d-Au颗粒表现出更强的巨噬细胞激活能力。d-Au刺激后诱导了一种炎症性肌酸-磷酸肌酸分流。这种分流由肌酸激酶肌肉型(CKM)表达上调促进,也导致细胞溶质中肌酸水平降低。CKM的药理学抑制和基因敲除进一步抑制了促炎细胞因子的分泌,而不影响线粒体呼吸。此外,d-Au诱导的巨噬细胞激活是通过NF-κB和NLRP3炎性小体途径的激活介导的。抑制CKM表达不仅降低了CXCL2的分泌,还通过抑制NLRP3炎性小体途径减弱了IL-1β的分泌。我们对手性材料对巨噬细胞激活的代谢重编程机制的研究对于基于手性的抗癌疗法的应用至关重要。

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