Gene Expression Profiling of Breast Cancer Brain Metastasis

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作者
Ji Yun Lee
Kyunghee Park
Eunjin Lee
TaeJin Ahn
Hae Hyun Jung
Sung Hee Lim
Mineui Hong
In-Gu Do
Eun Yoon Cho
Duk-Hwan Kim
Ji-Yeon Kim
Jin Seok Ahn
Young-Hyuck Im
Yeon Hee Park
机构
[1] Samsung Medical Center,Division of Hematology
[2] Sungkyunkwan University School of Medicine,Oncology, Department of Medicine
[3] Samsung Genomic Institute,Department of Health Sciences and Technology
[4] Samsung Biological Research Institute,Department of Molecular Cell Biology
[5] Samsung Medical Center,undefined
[6] Sungkyunkwan University School of Medicine,undefined
[7] SAIHST,undefined
[8] Sungkyunkwan University School of Medicine,undefined
[9] Center of Companion Diagnostics,undefined
[10] Innovative Cancer Medicine Institute,undefined
[11] Samsung Medical Center,undefined
[12] Sungkyunkwan University School of Medicine,undefined
[13] Samsung Biomedical Research Institute,undefined
[14] Sungkyunkwan University School of Medicine,undefined
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摘要
The biology of breast cancer brain metastasis (BCBM) is poorly understood. We aimed to explore genes that are implicated in the process of brain metastasis of primary breast cancer (BC). NanoString nCounter Analysis covering 252 target genes was used for comparison of gene expression levels between 20 primary BCs that relapsed to brain and 41 BCBM samples. PAM50-based intrinsic subtypes such as HER2-enriched and basal-like were clearly over-represented in BCBM. A panel of 22 genes was found to be significantly differentially expressed between primary BC and BCBM. Five of these genes, CXCL12, MMP2, MMP11, VCAM1, and MME, which have previously been associated with tumor progression, angiogenesis, and metastasis, clearly discriminated between primary BC and BCBM. Notably, the five genes were significantly upregulated in primary BC compared to BCBM. Conversely, SOX2 and OLIG2 genes were upregulated in BCBM. These genes may participate in metastatic colonization but not in primary tumor development. Among patient-matched paired samples (n = 17), a PAM50 molecular subtype conversion was observed in eight cases (47.1%), with a trend toward unfavorable subtypes in patients with the distinct gene expression. Our findings, although not conclusive, reveal differentially expressed genes that might mediate the brain metastasis process.
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