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乳腺肿瘤的宏观硬度可预测转移。

Macroscopic stiffness of breast tumors predicts metastasis.

作者信息

Fenner Joseph, Stacer Amanda C, Winterroth Frank, Johnson Timothy D, Luker Kathryn E, Luker Gary D

机构信息

1] University of Michigan Medical School, College of Engineering, and School of Public Health. University of Michigan Center for Molecular Imaging, Department of Radiology [2].

1] University of Michigan Medical School, College of Engineering, and School of Public Health. University of Michigan Center for Molecular Imaging, Department of Biomedical Engineering [2].

出版信息

Sci Rep. 2014 Jul 1;4:5512. doi: 10.1038/srep05512.

Abstract

Mechanical properties of tumors differ substantially from normal cells and tissues. Changes in stiffness or elasticity regulate pro-metastatic behaviors of cancer cells, but effects have been documented predominantly in isolated cells or in vitro cell culture systems. To directly link relative stiffness of tumors to cancer progression, we combined a mouse model of metastatic breast cancer with ex vivo measurements of bulk moduli of freshly excised, intact tumors. We found a high, inverse correlation between bulk modulus of resected tumors and subsequent local recurrence and metastasis. More compliant tumors were associated with more frequent, larger local recurrences and more extensive metastases than mice with relatively stiff tumors. We found that collagen content of resected tumors correlated with bulk modulus values. These data establish that relative differences in tumor stiffness correspond with tumor progression and metastasis, supporting further testing and development of tumor compliance as a prognostic biomarker in breast cancer.

摘要

肿瘤的力学特性与正常细胞和组织有很大不同。硬度或弹性的变化调节癌细胞的促转移行为,但相关影响主要在分离的细胞或体外细胞培养系统中得到记录。为了直接将肿瘤的相对硬度与癌症进展联系起来,我们将转移性乳腺癌小鼠模型与对新鲜切除的完整肿瘤的体积模量进行的离体测量相结合。我们发现切除肿瘤的体积模量与随后的局部复发和转移之间存在高度负相关。与肿瘤相对较硬的小鼠相比,更具柔韧性的肿瘤与更频繁、更大的局部复发以及更广泛的转移相关。我们发现切除肿瘤的胶原蛋白含量与体积模量值相关。这些数据表明,肿瘤硬度的相对差异与肿瘤进展和转移相对应,支持将肿瘤顺应性作为乳腺癌预后生物标志物进行进一步测试和开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27d9/4076689/5ad680ed7cae/srep05512-f1.jpg

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