Nagoya University · Medicine
Professor Masato Yoshihara's research lab focuses on the tumor microenvironment in ovarian cancer, particularly the dynamic interactions between cancer cells and stromal components such as mesothelial cells, adipocytes, and fibroblasts. The lab investigates how these cells are reprogrammed during peritoneal metastasis—such as mesothelial-to-mesenchymal transition and adipocyte dedifferentiation—into pro-tumorigenic phenotypes that facilitate cancer dissemination and therapeutic resistance. A key research direction involves exploring therapeutic strategies, including vitamin D and recombinant human thrombomodulin, to reverse these pathological changes and restore normal microenvironmental functions. The lab integrates in vitro models, primary cell cultures, and translational studies to uncover molecular mechanisms driving ovarian cancer progression and to identify novel targets for intervention.
Figures are computed from collected data and may differ slightly.
Ovarian cancer (OvCa), a lethal gynecological malignancy, disseminates to the peritoneum. Mesothelial cells (MCs) act as barriers in the abdominal cavity, preventing the adhesion of cancer cells. However, in patients with OvCa, they are transformed into cancer-associated mesothelial cells (CAMs) via mesenchymal transition and form a favorable microenvironment for tumors to promote metastasis. However, attempts for restoring CAMs to their original state have been limited. Here, we investigated wh
Ovarian cancer has one of the poorest prognoses among carcinomas. Advanced ovarian cancer often develops ascites and peritoneal dissemination, which is one of the poor prognostic factors. From the perspective of the "seed and soil" hypothesis, the intra-abdominal environment is like the soil for the growth of ovarian cancer (OvCa) and mesothelial cells (MCs) line the top layer of this soil. In recent years, various functions of MCs have been reported, including supporting cancer in the OvCa micr
Adipocyte-rich omentum offers "good soil" for disseminating ovarian cancer (OvCa), contributing to therapeutic difficulty. However, little is understood about the association between adipocytes and tumor growth at peritoneal dissemination site. Herein, we report the induction of adipocyte dedifferentiation by OvCa cells and pro-tumorigenic effects of resulted adipocyte-derived fibroblasts. We confirmed that malignant ascites promoted the dedifferentiation of the primary human adipocytes obtained
FSS can be considered in stage I CCC, specifically in stage IA and IC1 patients who strongly desire to have children in the future. Further clinical research is needed to clarify the optimal application of FSS for CCC.
rhTM administration was associated with clinical and laboratory improvement in patients with DIC caused by underlying obstetric conditions. Further clinical research is needed to clarify the optimal application of rhTM in each of the causative obstetric disorders.
Ovarian cancer cells shed from primary tumors can spread easily to the peritoneum via the peritoneal fluid. To allow further metastasis, the cancer cells must interact with the mesothelial cell layer, which covers the entire surface of the peritoneal organs. Although the clinical importance of this interaction between cancer and mesothelial cells has been increasingly recognized, the molecular mechanisms utilized by cancer cells to adhere to and migrate through the mesothelial cell layer are poo
Positive ascites cytology is a strong prognostic factor in patients with early-stage ovarian cancer (OvCa). However, limited information is currently available on the impact of positive ascites cytology on patient prognoses under each clinical background. We herein investigated the comprehensive impact of positive ascites cytology on patients with epithelial OvCa and the effectiveness of additional therapeutic interventions, including complete staging surgery and chemotherapy. Among 4730 patient
Hepatic infarction is an extremely rare and fatal complication associated with hemolysis, elevated liver enzymes, and low platelets (HELLP) syndrome. It can develop into fulminant liver failure, which increases both maternal and neonatal mortality rates. A 34-year-old woman with no remarkable past medical history developed eclampsia after delivery at 40 weeks of gestation. Imaging indicated massive hepatic infarction and rupture followed by cardiac arrest and fulminant liver failure. Despite liv
Blastocyst implantation involves multiple interactions with numerous molecules expressed in endometrial epithelial cells (EECs) during the implantation window; however, there is limited information regarding the molecular mechanism underlying the crosstalk. In blastocysts, fibronectin plays a major role in the adhesion of various types of cells by binding to extracellular matrix proteins via the Arg-Gly-Asp (RGD) motif. In EECs, RGD-recognizing integrins are important bridging receptors for fibr
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