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一种用于监测炎性乳腺癌肿瘤生长和淋巴管浸润的新型临床前小鼠模型。

A Novel Preclinical Murine Model to Monitor Inflammatory Breast Cancer Tumor Growth and Lymphovascular Invasion.

作者信息

Rickard Ashlyn G, Sannareddy Dorababu S, Bennion Alexandra, Patel Pranalee, Sauer Scott J, Rouse Douglas C, Bouchal Samantha, Liu Harrison, Dewhirst Mark W, Palmer Gregory M, Devi Gayathri R

机构信息

Program of Medical Physics, Duke University, Durham, NC 27705, USA.

Department of Radiation Oncology, Duke University School of Medicine, Durham, NC 27710, USA.

出版信息

Cancers (Basel). 2023 Apr 12;15(8):2261. doi: 10.3390/cancers15082261.

Abstract

Inflammatory breast cancer (IBC), an understudied and lethal breast cancer, is often misdiagnosed due to its unique presentation of diffuse tumor cell clusters in the skin and dermal lymphatics. Here, we describe a window chamber technique in combination with a novel transgenic mouse model that has red fluorescent lymphatics (ProxTom RFP Nu/Nu) to simulate IBC clinicopathological hallmarks. Various breast cancer cells stably transfected to express green or red fluorescent reporters were transplanted into mice bearing dorsal skinfold window chambers. Intravital fluorescence microscopy and the in vivo imaging system (IVIS) were used to serially quantify local tumor growth, motility, length density of lymph and blood vessels, and degree of tumor cell lymphatic invasion over 0-140 h. This short-term, longitudinal imaging time frame in studying transient or dynamic events of diffuse and collectively migrating tumor cells in the local environment and quantitative analysis of the tumor area, motility, and vessel characteristics can be expanded to investigate other cancer cell types exhibiting lymphovascular invasion, a key step in metastatic dissemination. It was found that these models were able to effectively track tumor cluster migration and dissemination, which is a hallmark of IBC clinically, and was recapitulated in these mouse models.

摘要

炎性乳腺癌(IBC)是一种研究不足且致命的乳腺癌,因其在皮肤和真皮淋巴管中独特的弥漫性肿瘤细胞簇表现,常被误诊。在此,我们描述了一种结合新型转基因小鼠模型(具有红色荧光淋巴管,ProxTom RFP Nu/Nu)的窗口室技术,以模拟IBC的临床病理特征。将稳定转染以表达绿色或红色荧光报告基因的各种乳腺癌细胞移植到带有背部皮肤褶皱窗口室的小鼠体内。利用活体荧光显微镜和体内成像系统(IVIS)在0至140小时内连续定量局部肿瘤生长、运动性、淋巴管和血管的长度密度以及肿瘤细胞的淋巴侵袭程度。这种在研究局部环境中弥漫性和集体迁移肿瘤细胞的瞬时或动态事件时的短期纵向成像时间框架,以及对肿瘤面积、运动性和血管特征的定量分析,可以扩展到研究其他表现出淋巴管侵袭的癌细胞类型,这是转移扩散的关键步骤。研究发现,这些模型能够有效地追踪肿瘤簇的迁移和扩散,这是IBC临床的一个特征,并且在这些小鼠模型中得到了重现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/115d/10137020/84481b5e7899/cancers-15-02261-g001.jpg

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