基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:MRI Monitored Mn-THPPmPEG12-Guided Phototherapy Elicits Abscopal Immunity and Synergizes with PD-1 Blockade in Triple-Negative Breast Cancer in Mice Model.
MRI Monitored Mn-THPPmPEG12-Guided Phototherapy Elicits Abscopal Immunity and Synergizes with PD-1 Blockade in Triple-Negative Breast Cancer in Mice Model.
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Mn-THPPmPEG12 是一种有效的诊疗一体化平台,可实现精确的 MRI 监测 PDT。Mn-THPPmPEG12 介导的 PDT 可引发远隔免疫效应,并与 PD-1 阻断协同增强 TNBC 治疗。
本研究旨在开发一种临床转化型诊疗一体化光敏剂 Mn-THPPmPEG12,用于多参数 MRI 监测下的三阴性乳腺癌(TNBC)光动力治疗(PDT),并评估其激发远隔免疫效应及与 PD-1 阻断协同的潜力。
合成了Mn-THPPmPEG12并对其进行了表征,评估了其MRI对比能力。建立了原发性TNBC小鼠模型,利用体素内不相干运动-扩散加权成像(IVIM-DWI)和血氧水平依赖MRI(BOLD-MRI)评估了Mn-THPPmPEG12的PDT疗效,并最终进行病理分析以验证。随后,建立了双侧TNBC小鼠模型,以研究原发肿瘤PDT后远处肿瘤的远隔免疫反应,以及PDT联合抗PD-1阻断的协同疗效。在整个治疗过程中,MRI作为一种无创方法用于实时监测治疗反应。
Mn-THPPmPEG12 表现出优异的水溶性和高 T1 弛豫率(r1 = 4.47 mM-1·s-1)。Mn-THPPmPEG12 介导的 PDT 显著抑制原发性 TNBC 生长,MRI 参数(D、D*、f 和 R2*)与病理学发现高度相关。值得注意的是,PDT 在双侧 TNBC 小鼠模型中触发了远隔效应,增加了远处肿瘤中 CD8⁺ T 细胞浸润和 PD-1 表达。与 anti-PD-1 阻断联合使用时,该疗法对原发性和远处肿瘤均显示出更优疗效,其中参数 D 能够实现治疗反应的早期检测。
The study was to develop a clinical-translational theranostic photosensitizer, Mn-THPPmPEG12, for multiparametric MRI-monitored photodynamic therapy (PDT) of triple-negative breast cancer (TNBC), and to evaluate its potential to elicit abscopal immunity and synergize with PD-1 blockade.
Mn-THPPmPEG12 was synthesized and characterized, and its MRI contrast capability was evaluated. A primary TNBC mouse model was established, and the PDT efficacy of Mn‑THPPmPEG12 was evaluated using intravoxel incoherent motion‑diffusion weighted imaging (IVIM‑DWI) and blood oxygen level‑dependent MRI (BOLD‑MRI), with final pathological analyses performed for validation. Subsequently, a bilateral TNBC mouse model was established to investigate the abscopal immune response in distant tumors following PDT of primary tumors, as well as the synergistic efficacy of combining PDT with anti‑PD‑1 blockade. Throughout the treatment, MRI served as a non-invasive method for real-time monitoring of therapeutic response.
Mn-THPPmPEG12 exhibited excellent water solubility and high T 1 relaxivity (r1 = 4.47 mM -1 ·s -1 ). Mn-THPPmPEG12-mediated PDT significantly inhibited primary TNBC growth, with MRI parameters (D, D*, f, and R2*) correlating strongly with pathological findings. Notably, PDT triggered an abscopal effect in a bilateral TNBC mouse model, increasing CD8⁺ T cell infiltration and PD-1 expression in distant tumors. Combined with anti-PD-1 blockade, the therapy showed superior efficacy against both primary and distant tumors, with parameter D enabling early detection of treatment response.
Mn-THPPmPEG12 serves as a potent theranostic platform that enables precise MRI-monitored PDT. The PDT mediated by Mn-THPPmPEG12 elicits an abscopal immune effect and synergizes with PD-1 blockade to enhance TNBC treatment.
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