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胶原纤维介导乳腺癌中磁共振成像检测到的水扩散和各向异性。

Collagen fibers mediate MRI-detected water diffusion and anisotropy in breast cancers.

作者信息

Kakkad Samata, Zhang Jiangyang, Akhbardeh Alireza, Jacob Desmond, Krishnamachary Balaji, Solaiyappan Meiyappan, Jacobs Michael A, Raman Venu, Leibfritz Dieter, Glunde Kristine, Bhujwalla Zaver M

机构信息

JHU ICMIC Program, Division of Cancer Imaging Research, The Russell H. Morgan Department of Radiology and Radiological Science; Department of Chemistry and Biology, University of Bremen, Bremen, Germany.

JHU ICMIC Program, Division of Cancer Imaging Research, The Russell H. Morgan Department of Radiology and Radiological Science.

出版信息

Neoplasia. 2016 Oct;18(10):585-593. doi: 10.1016/j.neo.2016.08.004. Epub 2016 Sep 19.

Abstract

Collagen 1 (Col1) fibers play an important role in tumor interstitial macromolecular transport and cancer cell dissemination. Our goal was to understand the influence of Col1 fibers on water diffusion, and to examine the potential of using noninvasive diffusion tensor imaging (DTI) to indirectly detect Col1 fibers in breast lesions. We previously observed, in human MDA-MB-231 breast cancer xenografts engineered to fluoresce under hypoxia, relatively low amounts of Col1 fibers in fluorescent hypoxic regions. These xenograft tumors together with human breast cancer samples were used here to investigate the relationship between Col1 fibers, water diffusion and anisotropy, and hypoxia. Hypoxic low Col1 fiber containing regions showed decreased apparent diffusion coefficient (ADC) and fractional anisotropy (FA) compared to normoxic high Col1 fiber containing regions. Necrotic high Col1 fiber containing regions showed increased ADC with decreased FA values compared to normoxic viable high Col1 fiber regions that had increased ADC with increased FA values. A good agreement of ADC and FA patterns was observed between in vivo and ex vivo images. In human breast cancer specimens, ADC and FA decreased in low Col1 containing regions. Our data suggest that a decrease in ADC and FA values observed within a lesion could predict hypoxia, and a pattern of high ADC with low FA values could predict necrosis. Collectively the data identify the role of Col1 fibers in directed water movement and support expanding the evaluation of DTI parameters as surrogates for Col1 fiber patterns associated with specific tumor microenvironments as companion diagnostics and for staging.

摘要

I型胶原(Col1)纤维在肿瘤间质大分子运输和癌细胞扩散中起重要作用。我们的目标是了解Col1纤维对水扩散的影响,并研究使用无创扩散张量成像(DTI)间接检测乳腺病变中Col1纤维的潜力。我们之前在经工程改造可在缺氧状态下发出荧光的人MDA-MB-231乳腺癌异种移植模型中观察到,荧光缺氧区域中的Col1纤维含量相对较低。在此,将这些异种移植肿瘤与人乳腺癌样本一起用于研究Col1纤维、水扩散和各向异性以及缺氧之间的关系。与含高Col1纤维的常氧区域相比,含低Col1纤维的缺氧区域表观扩散系数(ADC)和分数各向异性(FA)降低。与含高Col1纤维的常氧存活区域相比,含高Col1纤维的坏死区域ADC升高而FA值降低,而含高Col1纤维的常氧存活区域ADC升高且FA值升高。在体内和体外图像之间观察到ADC和FA模式具有良好的一致性。在人乳腺癌标本中,含低Col1的区域ADC和FA降低。我们的数据表明,病变内观察到的ADC和FA值降低可预测缺氧,而高ADC和低FA值模式可预测坏死。总体而言,这些数据确定了Col1纤维在定向水运动中的作用,并支持扩大对DTI参数的评估,将其作为与特定肿瘤微环境相关的Col1纤维模式的替代指标,用于伴随诊断和分期。

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