Seung Tae Kim
Sungkyunkwan University · 医学
研究室紹介
Professor Seung Tae Kim's research lab focuses on translational oncology, with a strong emphasis on identifying and validating predictive and prognostic biomarkers in gastrointestinal and neuroendocrine cancers. The lab investigates molecular mechanisms underlying treatment resistance and immune evasion, particularly through the analysis of key signaling pathways such as KRAS, c-MET, and PD-L1, as well as immune cell infiltration in the tumor microenvironment. Their work integrates molecular pathology, immunohistochemistry, and next-generation sequencing to guide personalized cancer therapy and assess response to targeted and immunotherapeutic agents.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Although erlotinib has become an important therapeutic option in addition to gemcitabine, the high frequency of KRAS mutations in pancreatic cancer probably limits the benefits. We retrospectively studied 136 pancreatic cancer patients with available formalin-fixed paraffin-embedded tumor blocks from 2003 to 2009 to understand the clinical significance of KRAS mutations in pancreatic cancer patients treated with gemcitabine-based chemotherapy. KRAS mutations were analyzed by sequencing codons 12
BACKGROUND: The balance in the immune system between immune surveillance against non-self-antigens and tolerance of self-antigens is known to be associated with the prognosis of breast cancer patients. However, immunologic signals in tumor microenvironment according to biological characteristics of cancer cells have not been clearly elucidated. CD4(+) T cells, CD8(+) T cells, and forkhead box P3-positive (Foxp3) regulatory T cells (Tregs) are the main keys for immune surveillance and tolerance,
Programmed death-ligand 1 (PD-L1), which is expressed on many cancer cells, interacts with PD1 expressed on the surface of T cells, inhibiting the T cells and blocking the antitumor immune response. Expression of PD-L1 in gastroenteropancreatic neuroendocrine tumors (GEP-NETs) has not been studied. We investigated the impact of PD-L1 expression in 32 patients with metastatic GEP-NET. The expression of PD-L1 was evaluated using an anti-PD-L1 immunohistochemistry (IHC) antibody optimized for stain
c-MET overexpression, which was detected in 39 CRC patients (15.3%) irrespective of primary sites or molecular markers, indicated a poor survival prognosis and predicted shorter PFS during bevacizumab treatment in patients with CRC. Further studies are warranted to elucidate the value of c-MET-targeted therapy in CRC patients.
// Seung Tae Kim 1, * , Won-Suk Lee 2, * , Richard B. Lanman 3 , Stefanie Mortimer 3 , Oliver A. Zill 3 , Kyoung-Mee Kim 4, 5 , Kee Taek Jang 5 , Seok-Hyung Kim 5 , Se Hoon Park 1 , Joon Oh Park 1, 4 , Young Suk Park 1 , Ho Yeong Lim 1 , Helmy Eltoukhy 3 , Won Ki Kang 1 , Woo Yong Lee 6 , Hee-Cheol Kim 6 , Keunchil Park 1, 4 , Jeeyun Lee 1, 4 , AmirAli Talasaz 3 1 Division of Hematology-Oncology, Department of Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, K
Our results add to the emerging literature about claudin 18.2 expression in various cancer types and support the need for extended clinical exploration of zolbetuximab.
The identification of biomarkers associated with response to therapeutic agents is central to optimizing patient outcomes. Expression of the immune checkpoint proteins PD-1/L1, and DNA mismatch repair deficiency (dMMR) status may be predictive response biomarkers for immunotherapies, but their overlap requires further study. We prospectively conducted PD-L1 and MMR immunohistochemistry (IHC) on 430 consecutive patients with advanced gastrointestinal (GI) cancers, genitourinary (GU) cancers or ra
Abstract Purpose: Ceralasertib is a potent and selective oral inhibitor of the serine/threonine protein kinase ataxia telangiectasia and Rad3-related (ATR) protein. Patients and Methods: Eligible patients with solid tumors, enriched for melanoma, received ceralasertib in combination with a fixed dose of paclitaxel (80 mg/m2 on D1, D8, D15) in 28-day cycles. The dose of ceralasertib was escalated to reach an MTD in a rolling 6 design. The starting dose of ceralasertib was 40 mg QD. Fifty-seven pa
Purpose Retrospective studies have demonstrated that cell-free circulating tumor DNA (ctDNA) hotspot testing predicts matched therapy response to first- and second-line therapies in patients with advanced non–small-cell lung cancer (NSCLC). However, no prospective outcomes studies have evaluated ctDNA-guided matched therapy decision making on the basis of comprehensive plasma genomic testing including all four major classes of alterations. Here, we report the clinical utility of this approach in