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用于癌症检测的巨噬细胞传感器的近红外生物发光成像

Near-Infrared Bioluminescence Imaging of Macrophage Sensors for Cancer Detection .

作者信息

Zambito Giorgia, Mishra Gunja, Schliehe Christopher, Mezzanotte Laura

机构信息

Department of Radiology and Nuclear Medicine, Erasmus MC University Medical Center, Rotterdam, Netherlands.

Department of Molecular Genetics, Erasmus MC University Medical Center, Rotterdam, Netherlands.

出版信息

Front Bioeng Biotechnol. 2022 May 9;10:867164. doi: 10.3389/fbioe.2022.867164. eCollection 2022.

Abstract

Melanoma is an aggressive type of skin cancer with a poor prognosis after it gets metastasized. The early detection of malignant melanoma is critical for effective therapy. Because melanoma often resembles moles, routine skin check-up may help for timely identification of suspicious areas. Recently, it has been shown that the interplay of melanoma cells with the immune system can help develop efficient therapeutic strategies. Here, we leveraged engineered macrophages (BMC2) as cell-based sensors for metastatic melanoma. To perform dual-color bioluminescence imaging (BLI) , macrophages were engineered to express a green click beetle luciferase (CBG2) and a near-infrared fluorescent dye (DiR), and B16F10 melanoma cells were instead engineered to express a near-infrared click beetle luciferase (CBR2). Using real-time dual-color BLI and near-infrared fluorescence (FL) imaging, we could demonstrate that macrophages were able to sense and substantially accumulate in subcutaneous and metastatic melanoma tissues at 72 h after systemic injections. Together, we showed the potentiality to use optical imaging technologies to track circulating macrophages for the non-invasive detection of metastatic melanoma.

摘要

黑色素瘤是一种侵袭性皮肤癌,发生转移后预后较差。恶性黑色素瘤的早期检测对有效治疗至关重要。由于黑色素瘤常与痣相似,常规皮肤检查可能有助于及时识别可疑区域。最近的研究表明,黑色素瘤细胞与免疫系统的相互作用有助于制定有效的治疗策略。在此,我们利用工程化巨噬细胞(BMC2)作为转移性黑色素瘤的细胞传感器。为了进行双色生物发光成像(BLI),将巨噬细胞工程化以表达绿色叩头虫荧光素酶(CBG2)和近红外荧光染料(DiR),而将B16F10黑色素瘤细胞工程化以表达近红外叩头虫荧光素酶(CBR2)。通过实时双色BLI和近红外荧光(FL)成像,我们能够证明在全身注射后72小时,巨噬细胞能够感知并大量聚集在皮下和转移性黑色素瘤组织中。我们共同展示了利用光学成像技术追踪循环巨噬细胞以无创检测转移性黑色素瘤的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/162c/9124759/27b615f81a24/fbioe-10-867164-g001.jpg

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