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用于脑肿瘤中M2肿瘤相关巨噬细胞靶向磁共振成像的亚型特异性探针。

A subtype specific probe for targeted magnetic resonance imaging of M2 tumor-associated macrophages in brain tumors.

作者信息

Li Yuancheng, Thamizhchelvan Anbu Mozhi, Ma Hedi, Padelford Jonathan, Zhang Zhaobin, Wu Tianhe, Gu Quanquan, Wang Zi, Mao Hui

机构信息

Department of Radiology and Imaging Sciences, Emory University School of Medicine, Atlanta, Georgia 30322, USA; 5M Biomed, LLC, Atlanta, Georgia 30303, USA.

Department of Radiology and Imaging Sciences, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

Acta Biomater. 2025 Mar 1;194:336-351. doi: 10.1016/j.actbio.2025.01.003. Epub 2025 Jan 11.

Abstract

Pro-tumoral M2 tumor-associated macrophages (TAMs) play a critical role in the tumor immune microenvironment (TIME), making them an important therapeutic target for cancer treatment. Approaches for imaging and monitoring M2 TAMs, as well as tracking their changes in response to tumor progression or treatment are highly sought-after but remain underdeveloped. Here, we report an M2-targeted magnetic resonance imaging (MRI) probe based on sub-5 nm ultrafine iron oxide nanoparticles (uIONP), featuring an anti-biofouling coating to prevent non-specific macrophage uptake and an M2-specific peptide ligand (M2pep) for active targeting of M2 TAMs. The targeting specificity of M2pep-uIONP was validated in vitro, using M0, M1, and M2 macrophages, and in vivo, using an orthotopic patient-tissue-derived xenograft (PDX) mouse model of glioblastoma (GBM). MRI of the mice revealed hypointense contrast in T-weighted images of intracranial tumors 24 h after receiving intravenous (i.v.) injection of M2pep-uIONP. In contrast, no noticeable contrast change was observed in mice receiving scrambled-sequence M2pep-conjugated uIONP (scM2pep-uIONP) or the commercially available iron oxide nanoparticle formulation, Ferumoxytol. Measurement of nanoparticle-induced T value changes in tumors showed 38 %, 9 %, and 2 % decrease for M2pep-uIONP, scM2pep-uIONP, and Ferumoxytol, respectively. Moreover, M2pep-uIONP exhibited 88.7-fold higher intra-tumoral accumulation compared to co-injected Ferumoxytol at 24 h post-injection. Immunofluorescence-stained tumor sections showed that CD68/CD163 M2 TAMs were highly co-localized with Cy7-M2pep-uIONP, but not with Cy7-scM2pep-uIONP and Cy7-Ferumoxytol. Flow cytometry analysis revealed 26 ± 10 % of M2 TAMs were targeted by M2pep-uIONP, which was significantly higher than Ferumoxytol (16 ± 1 %) and scM2pep-uIONP (13 ± 4 %) with the same dosage (20 mg Fe/kg). These findings demonstrate that M2pep-uIONP functions as a ligand-mediated MRI probe for targeted imaging of M2 TAMs in GBM, with potential applications for imaging of M2 TAM in other cancer types. STATEMENT OF SIGNIFICANCE: Targeting the pro-tumoral M2 subtype of tumor-associated macrophages (TAMs) to modulate the tumor immune microenvironment (TIME) is an emerging strategy for developing novel cancer therapies and enhancing the efficacy of existing treatments. In this study, we have developed a magnetic resonance imaging (MRI) probe using sub-5 nm ultrafine iron oxide nanoparticles (uIONP), which are coated with an anti-biofouling polymer and conjugated to an M2-specific peptide ligand (M2pep). Our results demonstrate that M2pep-uIONP exhibits an 88.7-fold higher accumulation in intracranial tumors in an orthotopic patient-derived xenograft (PDX) model of glioblastoma compared to the commercial iron oxide nanoparticle, Ferumoxytol. This enhanced accumulation enables M2pep-uIONP to induce significant MRI contrast, providing a non-invasive imaging tool to visualize M2 TAMs and monitor changes in the TIME of brain tumors and potentially other cancers.

摘要

促肿瘤的M2型肿瘤相关巨噬细胞(TAMs)在肿瘤免疫微环境(TIME)中起关键作用,使其成为癌症治疗的重要靶点。对M2 TAMs进行成像和监测的方法,以及追踪它们对肿瘤进展或治疗反应的变化,备受关注但仍未充分发展。在此,我们报告一种基于亚5纳米超细微氧化铁纳米颗粒(uIONP)的靶向M2的磁共振成像(MRI)探针,其具有抗生物污染涂层以防止非特异性巨噬细胞摄取,以及用于主动靶向M2 TAMs的M2特异性肽配体(M2pep)。M2pep-uIONP的靶向特异性在体外使用M0、M1和M2巨噬细胞进行了验证,在体内使用了胶质母细胞瘤(GBM)的原位患者组织来源异种移植(PDX)小鼠模型进行了验证。小鼠的MRI显示,在静脉内(i.v.)注射M2pep-uIONP后24小时,颅内肿瘤的T2加权图像中出现低信号对比。相比之下,接受乱序序列M2pep偶联的uIONP(scM2pep-uIONP)或市售氧化铁纳米颗粒制剂菲立磁的小鼠未观察到明显的对比变化。测量纳米颗粒诱导的肿瘤T2值变化显示,M2pep-uIONP、scM2pep-uIONP和菲立磁分别使T2值降低了38%、9%和2%。此外,在注射后24小时,M2pep-uIONP的瘤内蓄积量比共注射的菲立磁高88.7倍。免疫荧光染色的肿瘤切片显示,CD68/CD163 M2 TAMs与Cy7-M2pep-uIONP高度共定位,但与Cy7-scM2pep-uIONP和Cy7-菲立磁不共定位。流式细胞术分析显示,26±10%的M2 TAMs被M2pep-uIONP靶向,这显著高于相同剂量(20 mg Fe/kg)的菲立磁(16±1%)和scM2pep-uIONP(13±4%)。这些发现表明,M2pep-uIONP作为一种配体介导的MRI探针,可用于GBM中M2 TAMs的靶向成像,在其他癌症类型的M2 TAM成像中具有潜在应用。

意义声明

靶向促肿瘤的肿瘤相关巨噬细胞(TAMs)的M2亚型以调节肿瘤免疫微环境(TIME)是开发新型癌症疗法和提高现有治疗疗效的新兴策略。在本研究中,我们使用亚5纳米超细微氧化铁纳米颗粒(uIONP)开发了一种磁共振成像(MRI)探针,该纳米颗粒涂有抗生物污染聚合物并与M2特异性肽配体(M2pep)偶联。我们的结果表明,在胶质母细胞瘤的原位患者来源异种移植(PDX)模型中,M2pep-uIONP在颅内肿瘤中的蓄积量比市售氧化铁纳米颗粒菲立磁高88.7倍。这种增强的蓄积使M2pep-uIONP能够诱导显著的MRI对比,提供了一种非侵入性成像工具来可视化M2 TAMs并监测脑肿瘤及潜在其他癌症的TIME变化。

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Selective targeting of tumor associated macrophages in different tumor models.在不同肿瘤模型中靶向肿瘤相关巨噬细胞。
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