PO.IM01.12 · 免疫学

受妊娠启发的DNA纳米载体可重现由cGAS驱动的促炎单核细胞表型

Pregnancy-inspired DNA nanocarriers reproduce a cGAS-driven pro-inflammatory monocyte phenotype

海报缩略图:受妊娠启发的DNA纳米载体可重现由cGAS驱动的促炎单核细胞表型
编号 4307 展板 11 时间 4/21 09:00–12:00 区域 Section 8 主讲 Mathew Schnorenberg, MD;PhD
分会场 Immunomodulatory Agents
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作者与单位 Authors & Affiliations

Mathew R. Schnorenberg, Elizabeth Ann L. Enninga, Wendy K. Nevala, Noah A. Stueven, Svetomir N. Markovic

Mayo Clinic, Rochester, MN

摘要 Abstract

中文摘要
引言:在妊娠期间,胎盘游离DNA(cfDNA)通过cGAS-STING信号通路将母体单核细胞激活为促炎表型,从而刺激T细胞。我们试图利用可临床转化的材料,设计能够在人类单核细胞中重现这一机制的DNA纳米载体,作为肿瘤相关巨噬细胞(TAM)重编程的策略。 方法:设计并商业化合成了一种胎儿cfDNA的合成模拟物(scfDNA),并将其与聚乙烯亚胺(PEI)复合形成scfDNA-PEI纳米颗粒(scfDNA-PEI-NPs)以实现胞质递送。用scfDNA-PEI-NPs或人类细胞滋养层来源的cfDNA(CTB-DNA)处理表达干扰素调节因子(IRF)诱导型荧光素酶的THP-1 Dual报告单核细胞,以定量cGAS-STING-IRF激活。通过乳酸脱氢酶(LDH)释放评估细胞毒性,以确定无毒性的治疗窗。 结果:scfDNA-PEI-NPs在THP-1单核细胞中触发了强烈的cGAS-STING-IRF激活,超过了CTB-DNA的反应。该反应在cGAS敲除细胞中被消除,并可由IRF通路的cGAS非依赖性刺激物挽救,证实了scfDNA-PEI-NPs的cGAS特异性。剂量-反应分析显示,cGAS激活浓度与细胞毒性浓度之间存在>10倍的差距,从而确立了髓系选择性cGAS激活的治疗窗。 结论:这些发现提供了概念验证,表明受妊娠启发的DNA纳米载体能够在体外重现由胎儿cfDNA驱动的促炎单核细胞表型激活。该平台为未来针对巨噬细胞的cGAS激活及促炎重编程用于肿瘤免疫治疗开发的研究奠定了基础。
查看英文原文 English abstract
Introduction: Placental cell-free DNA (cfDNA) activates maternal monocytes to a proinflammatory phenotype through cGAS-STING signaling during pregnancy, thereby stimulating T cells. We sought to engineer DNA nanocarriers that reproduce this mechanism in human monocytes using clinically translatable materials as a strategy for tumor-associated macrophage (TAM) reprogramming. Methods: A synthetic mimic of fetal cfDNA (scfDNA) was designed, commercially synthesized, and complexed with polyethylenimine (PEI) to form scfDNA-PEI nanoparticles (scfDNA-PEI-NPs) for cytosolic delivery. THP-1 Dual reporter monocytes expressing interferon regulatory factor (IRF)-inducible luciferase were treated with scfDNA-PEI-NPs or human cytotrophoblast derived cfDNA (CTB-DNA) to quantify cGAS-STING-IRF activation. Cytotoxicity was assessed by lactate dehydrogenase (LDH) release to define a non-toxic therapeutic window. Results: scfDNA-PEI-NPs triggered robust cGAS-STING-IRF activation in THP-1 monocytes, exceeding CTB-DNA responses. This response was abolished in cGAS-knockout cells and rescued by a cGAS-independent stimulator of the IRF pathway, confirming cGAS specificity of scfDNA-PEI-NPs. Dose-response analysis showed a > 10-fold separation between cGAS-activating and cytotoxic concentrations, establishing a therapeutic window for myeloid-selective cGAS activation. Conclusions: These findings provide proof-of-concept that pregnancy-inspired DNA nanocarriers can reproduce fetal cfDNA-driven activation of a proinflammatory monocyte phenotype in vitro. This platform lays the groundwork for future work on macrophage-targeted cGAS activation and proinflammatory reprogramming for tumor immunotherapy development.
利益披露 Disclosure
M. R. Schnorenberg, None.. E. L. Enninga, None.. W. K. Nevala, None.. N. A. Stueven, None.. S. N. Markovic, None.

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