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Biomedical subjects

Se-Hoon Lee

Publications and source records attributed to Se-Hoon Lee.

5 recordsLinked to original sources

Larotrectinib in TRK fusion differentiated thyroid carcinoma: updated trial data.

Larotrectinib is a first-in-class, highly selective, central nervous system-active tropomyosin receptor kinase (TRK) inhibitor approved for tumour-agnostic use in TRK fusion cancer. It has previously demonstrated rapid and durable disease control and favourable safety in patients with advanced TRK fusion thyroid carcinoma (TC). After an additional 4 years of follow-up with the inclusion of two additional patients, and utilising an independent review committee (IRC) to assess overall response rate (ORR), we report updated pooled analyses from three phase 1-2 larotrectinib clinical trials, focusing only on patients with TRK fusion differentiated TC (DTC). The primary endpoint was the IRC-determined ORR per RECIST v1.1. Duration of response (DoR), progression-free survival (PFS), overall survival (OS) and safety were also assessed. Twenty-four patients (papillary TC, n = 21; follicular TC, n = 2; poorly DTC, n = 1) were included (data cut-off: 20 July 2024). ORR was 79% (95% confidence interval (CI): 58-93); best responses were complete response in 3 (13%) patients, partial response in 16 (67%), stable disease in 3 (13%), progressive disease in 1 (4%) and not evaluable in 1 (4%). Median DoR and PFS were 35 (95% CI: 22-not estimable (NE)) and 44 (95% CI: 35-NE) months, respectively; 6-year OS rate was 71% (95% CI: 50-91). Six patients remained on treatment. Treatment-related adverse events (TRAEs) were mainly grade 1/2; no patients permanently discontinued treatment due to TRAEs. Larotrectinib continues to demonstrate durable disease control, extended survival and a favourable long-term safety profile in patients with advanced TRK fusion DTC requiring systemic therapy.

Humans

Assessing time to symptomatic progression, a patient-relevant efficacy endpoint, in the MARIPOSA study in non-small cell lung cancer.

INTRODUCTION: In the phase 3 randomized MARIPOSA study, amivantamab and lazertinib combination therapy demonstrated improved progression-free survival (PFS) and overall survival (OS) versus osimertinib in participants with previously untreated, epidermal growth factor receptor-mutated advanced non-small cell lung cancer. Time to symptomatic progression (TTSP) was introduced to assess clinical worsening and complement endpoints that investigate radiographic disease progression and patient-reported outcomes. TTSP provides an easily interpretable measure of disease-specific symptom worsening to further support patient experience. METHODS: In MARIPOSA, TTSP was quantitatively assessed as a secondary efficacy endpoint and defined as the time from randomization until participants experience disease-specific symptom worsening requiring a clinical intervention or treatment change, or death. To evaluate the impact of amivantamab and lazertinib on TTSP considering its established OS benefit against osimertinib, an exploratory analysis censoring death events was performed. RESULTS: At the final protocol-specified OS analysis (median follow up: 37.8 months), median TTSP was 43.6 months with amivantamab and lazertinib versus 29.3 months with osimertinib (hazard ratio [HR]: 0.69; 95% confidence interval [CI]: 0.57-0.83; p&#x202f;<&#x202f;0.0001). Amivantamab and lazertinib reduced deaths following a TTSP event compared to osimertinib. A strong correlation between TTSP and PFS or OS was observed. CONCLUSIONS: Amivantamab and lazertinib significantly delayed TTSP versus osimertinib. TTSP offers a clinician-validated measurement of disease-specific symptom worsening, capturing symptoms perceived by patients that prompt clinical action. TTSP is highly correlated with PFS and OS, providing complementary insights alongside traditional endpoints. TTSP enhances understanding of treatment benefit and supports informed clinical decision-making by integrating patient experience.

Humans

Malignant epithelial states drive immune dysfunction in ampulla of Vater carcinoma.

BACKGROUND: Ampulla of Vater (AoV) carcinoma is a rare malignancy arising at the junction of intestinal and pancreatobiliary epithelium. Its heterogeneous clinical behavior and histological diversity have hindered therapeutic advances, and the cellular basis of this heterogeneity remains unclear. We aimed to construct a single-cell transcriptomic atlas of AoV carcinoma, with a focus on identifying epithelial subtypes and their interactions with the tumor microenvironment (TME). METHODS: We performed single-cell RNA sequencing on eight primary AoV tumors and four matched normal tissues. Comprehensive clustering and transcriptomic analyses identified cell-type composition, epithelial heterogeneity, and tumor-immune interactions. Findings were validated using deconvolution of bulk RNA-seq data from 62 AoV carcinoma patients. Results Malignant epithelial cells were categorized into four distinct subtypes: Int-Wnt, PB-KRAS, Int-Hypoxia, and Cycling stage. PB-KRAS cells exhibited stem-like transcriptional programs and high genomic instability. Deconvolution analysis of bulk RNA-seq data from the independent AoV cohort revealed that enrichment of the PB-KRAS subtype correlated with tumor recurrence and poor survival. Our immune profiling analysis discovered a significant association between PB-KRAS subtype and GZMK+ CD8+ T cells, which are in a pre-dysfunctional state, alongside SPP1+ macrophages exhibiting immunosuppressive traits. Spatial transcriptome data further supports the immunosuppressive natures of TME around PB-KRAS subtype malignant epithelial cells in AoV carcinoma. CONCLUSIONS: Our study presents a single-cell atlas of AoV carcinoma, highlighting the molecular diversity of malignant epithelium and its association with the immune microenvironment. The PB-KRAS subtype emerges as a stem-like, immunosuppressive tumor state associated with poor prognosis, providing insights for future therapeutic targeting.

Ampulla of Vater carcinoma

Artificial intelligence-powered spatial analysis of tumor microenvironment in patients with non-small cell lung cancer with acquired resistance to EGFR tyrosine kinase inhibitor.

PURPOSE: This study evaluated the dynamic changes in the tumor microenvironment (TME) in patients with non-small cell lung cancer (NSCLC) and acquired resistance to epidermal growth factor receptor (EGFR)-tyrosine kinase inhibitors (TKIs) using an artificial intelligence (AI)-powered spatial TME analyzer. We then assessed the predictive efficacy of immune-checkpoint inhibitors (ICIs)-based treatment. EXPERIMENTAL DESIGN: An AI-powered whole-slide image analyzer was used to segment cancer areas (CAs) and cancer stroma and to identify tumor-infiltrating lymphocytes (TILs), tertiary lymphoid structures, fibroblasts, and endothelial cells (ECs) in the tumor tissue. We analyzed 143 NSCLC samples after resistance to EGFR-TKIs from two cohorts: (1) 89 patients treated with ICI monotherapy and (2) 54 patients from the ATTLAS phase III trial comparing atezolizumab plus bevacizumab, paclitaxel, and carboplatin (ABCP) versus pemetrexed plus carboplatin. RESULTS: Post-TKI samples showed reduced TILs in the CA (p=0.045) and increased ECs in the CA (p=0.005) compared with pre-TKI samples. These changes differed according to EGFR mutation subtype. Higher TILs in CA were associated with a better overall response rate (ORR) and progression-free survival (PFS). Similarly, higher EC levels in CA correlated with improved ORR and PFS. In the ATTLAS cohort, these factors were associated with clinical benefits from ABCP, with a significant association with TILs and a marginal association with ECs. CONCLUSION: Our findings suggest that EGFR-TKIs affect the immune landscape of patients with EGFR-mutated NSCLC. Higher TILs or ECs in the CA were significantly associated with a favorable response to subsequent ICI-based treatment. TRIAL REGISTRATION NUMBER: NCT03991403.

Aged

Intracranial and systemic progression on amivantamab in platinum-treated epidermal growth factor receptor exon 20 insertion-mutated advanced non-small cell lung cancer.

BACKGROUND: Amivantamab, an epidermal growth factor receptor (EGFR)-MET bispecific antibody, is approved as monotherapy and as combination therapy for patients with advanced non-small cell lung cancer (NSCLC) harboring various EGFR mutations in first-line and refractory settings. Sites of progressive disease on amivantamab monotherapy are not well understood and could be instructive for treatment management. METHODS: CHRYSALIS (NCT02609776) enrolled participants with NSCLC, including those with treated brain metastases. Brain magnetic resonance imaging was required at screening but performed per local practice after enrollment (conducted postbaseline every 6 [&#xb1;1] weeks after Cycle 1 Day 1). Sites of target, non-target, and new lesion progression were reported. This analysis includes 114 participants with EGFR exon 20 insertion (Ex20ins) NSCLC after disease progression on platinum-based chemotherapy who received amivantamab monotherapy on or before June 4, 2020. RESULTS: As of March 30, 2021, the median follow-up was 12.5&#xa0;months (range, 0.2-30.5). Among 114 participants, the objective response rate by blinded independent central review was 43&#xa0;%; median duration of response was 10.8&#xa0;months, and median progression-free survival was 6.7&#xa0;months. RECIST-defined progressive disease occurred in 72/114 participants (63&#xa0;%); 25/72 (35&#xa0;%) continued amivantamab after progression (4.2 median additional months; range, 1.0-12.5). The most common first sites of progression were the lungs/pleura (29&#xa0;%), followed by bone (21&#xa0;%), brain (15&#xa0;%), and lymph node (12&#xa0;%). Thirteen participants (11&#xa0;%) had intracranial-only first progression. Six of these 13 participants underwent stereotactic radiosurgery (SRS) while continuing amivantamab. The median duration of amivantamab treatment post-progression in these 6 participants was 4.0&#xa0;months (range, 2.3-6.0). SRS was well tolerated, with 2 adverse events reported (nausea and fatigue, n&#xa0;=&#xa0;1 each). CONCLUSIONS: Amivantamab monotherapy in post-platinum Ex20ins NSCLC demonstrated meaningful antitumor activity in participants, and intracranial-only progression was infrequent. Treatment of brain progression with SRS while continuing amivantamab appears feasible and tolerable.

Adult