Soyeon Park
Yonsei University · Medicine
About the Lab
Professor Soyeon Park's research lab focuses on the tumor microenvironment and cancer stem cell biology in breast cancer, with a particular emphasis on intratumoral heterogeneity, immune cell infiltration (especially TILs and TAMs), and the interplay between cancer stem cell phenotypes and epithelial-mesenchymal transition (EMT). The lab employs integrated approaches combining immunohistochemistry, genotypic analysis, and ecological/evolutionary modeling to dissect the dynamic cellular and molecular landscapes of breast tumors across subtypes and treatment stages. Their work aims to uncover mechanisms of therapeutic resistance and identify prognostic and predictive biomarkers for personalized therapy.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15PURPOSE: To evaluate the expression of stem cell-related markers at the cellular level in human breast tumors of different subtypes and histologic stage. EXPERIMENTAL DESIGN: We performed immunohistochemical analyses of 12 proteins [CD44, CD24, ALDH1, vimentin, osteonectin, EPCR, caveolin 1, connexin 43, cytokeratin 18 (CK18), MUC1, claudin 7, and GATA3] selected based on their differential expression in breast cancer cells with more differentiated and stem cell-like characteristics in 47 cases
Intratumor genetic heterogeneity is a key mechanism underlying tumor progression and therapeutic resistance. The prevailing model for explaining intratumor diversity, the clonal evolution model, has recently been challenged by proponents of the cancer stem cell hypothesis. To investigate this issue, we performed combined analyses of markers associated with cellular differentiation states and genotypic alterations in human breast carcinomas and evaluated diversity with ecological and evolutionary
BACKGROUND: Tumour-infiltrating lymphocytes (TILs) are known to be associated with response to primary systemic therapy (PST) in breast cancer. This study was conducted to assess the association of TIL subsets with pathological complete response (pCR) after PST in breast cancer in relation to breast cancer subtype, breast cancer stem cell (BCSC) phenotype and epithelial-mesenchymal transition (EMT). METHODS: The pre-chemotherapeutic biopsy specimens of 153 breast cancer patients who underwent su
BACKGROUND: The cancer stem cell (CSC) hypothesis has important clinical implications for cancer therapeutics because of the proposed role of CSCs in chemoresistance. The aim of this study was to investigate changes in the CSC populations before and after primary systemic therapy (PST) and their prognostic role in human breast cancer. METHODS: Paired samples (before and after PST) of breast cancer tissue were obtained from clinical stage II or III patients (n=92) undergoing PST with the regimen
BACKGROUND: Epidermal growth factor receptor (EGFR) is overexpressed in a subset of human epidermal growth factor receptor 2 (HER2)-positive breast cancers, and coexpression of HER2 and EGFR has been reported to be associated with poor clinical outcome. Moreover, interaction between HER2 and EGFR has been suggested to be a possible basis for trastuzumab resistance. METHODS: We analysed the clinical significance of EGFR overexpression and EGFR gene copy number alterations in 242 HER2-positive pri
Tumor-associated macrophages (TAMs) are involved in tumor progression by promoting epithelial-mesenchymal transition (EMT), tumor cell invasion, migration and angiogenesis. However, in breast cancer, the clinical relevance of the TAM infiltration according to distinct histologic locations (intratumoral vs. stromal) and hormone receptor status is unclear. We investigated the significance of the levels of TAM infiltration in distinct histologic locations in invasive breast cancer. We also examined
BACKGROUND: Papillary thyroid cancers often occur as multiple foci. Multifocal cancers have been considered to have a poor prognosis because they are thought to be the consequence of intrathyroidal spread of the papillary cancer. However, to the authors' knowledge there has been little investigation into whether multifocal thyroid papillary carcinomas arise from the intrathyroidal spread of a single carcinoma or from independent primary tumors. To answer this question, the BRAF(V600E) mutational
The changes in DNA methylation status in cancer cells are characterized by hypermethylation of promoter CpG islands and diffuse genomic hypomethylation. Alu and long interspersed nucleotide element-1 (LINE-1) are non-coding genomic repetitive sequences and methylation of these elements can be used as a surrogate marker for genome-wide methylation status. This study was designed to evaluate the changes of Alu and LINE-1 hypomethylation during breast cancer progression from normal to pre-invasive
AIM: To investigate the effect of polysomy 17 on HER-2 status as evaluated by immunohistochemistry (IHC), dual-colour fluorescence in situ hybridisation (FISH) and chromogenic in situ hybridisation (CISH). METHODS: Dual-probe FISH and single-probe CISH were performed to detect HER-2 gene amplification, and IHC to detect HER-2 expression, on 309 invasive breast cancers. RESULTS: Polysomy 17 was detected in 32.0% of the total number of breast cancers; it was detected in 12.3% of the IHC 0 or 1+ ca
Research Areas
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