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Yanagawa, J.

Publications and source records attributed to Yanagawa, J..

2 recordsLinked to original sources

Personalized chordoma organoids for drug discovery studies

Chordomas are rare tumors of notochordal origin, most commonly arising in the sacrum or skull base. Primary treatment of chordoma is surgery, however complete resection is not always feasible due to their anatomic location, and recurrence rates remain high. Chordomas are considered insensitive to conventional chemotherapy, and their rarity complicates running timely and adequately powered trials to identify effective regimens. Therefore, there is a need for discovery of novel therapeutic approaches. Drug discovery efforts in chordoma have been mostly limited to cell line models. Patient-derived organoids can accelerate drug discovery studies and predict patient responses to therapy. In this proof-of-concept study, we successfully established organoids from seven chordoma tumor samples obtained from five patients presenting with tumors in different sites and stages of disease. The organoids recapitulated features of the original parent tumors and inter-as well as intra-patient heterogeneity. High-throughput screenings performed on the organoids highlighted targeted agents such as PI3K/mTOR, EGFR, and JAK2/STAT3 inhibitors among the most effective molecules. Pathway analysis underscored how the NF-kB and IGF-1R pathways are sensitive to perturbations and potential targets to pursue for combination therapy of chordoma.

cancer biology↗

Single-cell characterization of subsolid and solid lesions in the lung adenocarcinoma spectrum

Determining the clinical significance of CT scan-detected subsolid pulmonary nodules requires an understanding of the molecular and cellular features that may foreshadow disease progression. We studied the alterations at the transcriptome level in both immune and non-immune cells, utilizing single-cell RNA sequencing, to compare the microenvironment of subsolid, solid, and non-involved lung tissues from surgical resection specimens. This evaluation of early spectrum lung adenocarcinoma reveals a significant decrease in the cytolytic activities of natural killer and natural killer T cells, accompanied by a reduction of effector T cells as well as an increase of CD4+ regulatory T cells in subsolid lesions. Characterization of non-immune cells revealed that both cancer-associated alveolar type 2 cells and fibroblasts contribute to the deregulation of the extracellular matrix, potentially affecting immune infiltration in subsolid lesions through ligand-receptor interactions. These findings suggest a decrement of immune surveillance in subsolid lesions.

cancer biology↗