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Takayuki Yoshino

Publications and source records attributed to Takayuki Yoshino.

3 recordsLinked to original sources

A multicenter survey on BRAF screening for the implementation of perioperative cancer genomic medicine for resectable colorectal oligometastases.

BACKGROUND: Genomic screening is an essential, but potentially time-consuming procedure, especially in neoadjuvant settings. We evaluated the preoperative screening of the BRAF V600E mutation for recruitment to a clinical trial among patients with resectable colorectal oligometastases (CRM). METHODS: In April 2022, an investigator-initiated trial was launched to investigate the efficacy and safety of perioperative use of the BEACON triplet regimen for BRAF V600E mutant resectable CRM. BRAF screening was retrospectively conducted in patients with resected colorectal liver metastases in 2019 for planning the trial and prospectively conducted in preoperative patients with resectable CRM from January 2022 to June 2025 for patient recruitment to the trial. RESULTS: BRAF V600E mutation was detected in 12 (3.2%) of 379 postoperative patients retrospectively and in 36 (1.7%) of 2140 preoperative patients prospectively, with 1840 patients (86.0%) carrying the wild-type and 264 patients (12.3%) classified as untested. The detection rate of the BRAF V600E mutation was significantly lower when the screening was performed prospectively in preoperative patients (P&#x2009;<&#x2009;0.001). The untested rates varied across metastatic organs, with 10.3% in the liver, 18.1% in the lungs, 12.0% in the lymph nodes, 16.7% in the peritoneum, and 7.8% in other organs. The untested rates decreased consistently across semiannual comparisons: 28.5% in the first evaluation, followed by 15.0%, 12.0%, 8.4%, 9.1%, 7.3%, and 7.1% (P&#x2009;<&#x2009;0.01 when compared with the first period). CONCLUSION: Raising physician awareness, as reflected by the untested rate, is a crucial factor in conducting clinical trials to implement perioperative cancer genomic medicine.

Humans

Molecular Residual Disease and Recurrence in Rectal Cancer Patients Undergoing Upfront Surgery: A Prospective Cohort Study.

OBJECTIVE: To evaluate the prognostic utility of postoperative circulating tumor DNA (ctDNA) for recurrence and treatment response in patients with rectal cancer undergoing upfront surgery. BACKGROUND: ctDNA-based molecular residual disease (MRD) testing shows promise in colorectal cancer, but its role in patients with rectal cancer not receiving neoadjuvant therapy is unclear. This study evaluates whether postoperative ctDNA predicts disease-free survival (DFS) and guides adjuvant chemotherapy (ACT) decisions. METHODS: We analyzed ctDNA from patients with stage II to III rectal cancer (N=250) enrolled in the GALAXY study, a multicenter registry in Japan. A clinically validated, personalized, tumor-informed 16-plex PCR next-generation sequencing assay (Signatera) was used to detect and quantify ctDNA. The primary outcome was DFS, defined as the time from landmark to recurrence, death, or the latest radiologic assessment. RESULTS: In the MRD window (2-10&#xa0;wk postsurgery, before ACT), 14.2% (35/246) of patients were ctDNA-positive and had significantly shorter DFS (HR: 9.96, 95% CI: 5.76-17.2, P <0.0001). Among patients who were ctDNA-positive in the MRD window, a significant benefit from ACT was observed (HR: 0.28, 95% CI: 0.09-0.89, P =0.031), whereas no benefit was seen in ctDNA-negative patients (HR: 0.59, 95% CI: 0.26-1.35, P =0.211). When analyzing ctDNA dynamics from the MRD window to 6 months postsurgery, recurrence risk was higher in patients who converted from ctDNA-negative to positive (HR: 8.22, 95% CI: 1.86-36.32, P =0.0055) and who remained ctDNA-positive (HR: 45.48, 95% CI: 14.31-144.57, P <0.0001) compared with serially ctDNA-negative patients. CONCLUSIONS: Postoperative ctDNA status is a robust biomarker predicting recurrence risk and ACT benefit in patients with rectal cancer undergoing upfront surgery.

Humans

Tumor specimen cold ischemia time impacts molecular cancer drug target discovery.

Tumor tissue collections are used to uncover pathways associated with disease outcomes that can also serve as targets for cancer treatment, ideally by comparing the molecular properties of cancer tissues to matching normal tissues. The quality of such collections determines the value of the data and information generated from their analyses including expression and modifications of nucleic acids and proteins. These biomolecules are dysregulated upon ischemia and decompose once the living cells start to decay into inanimate matter. Therefore, ischemia time before final tissue preservation is the most important determinant of the quality of a tissue collection. Here we show the impact of ischemia time on tumor and matching adjacent normal tissue samples for mRNAs in 1664, proteins in 1818, and phosphosites in 1800 cases (tumor and matching normal samples) of four solid tumor types (CRC, HCC, LUAD, and LUSC NSCLC subtypes). In CRC, ischemia times exceeding 15&#x2009;min impacted 12.5% (mRNA), 25% (protein), and 50% (phosphosites) of differentially expressed molecules in tumor versus normal tissues. This hypoxia- and decay-induced dysregulation increased with longer ischemia times and was observed across tumor types. Interestingly, the proteomics analysis revealed that specimen ischemia time above 15&#x2009;min is mostly associated with a dysregulation of proteins in the immune-response pathway and less so with metabolic processes. We conclude that ischemia time is a crucial quality parameter for tissue collections used for target discovery and validation in cancer research.

Humans