北海道大学 · 医学
Ebihara教授の研究室は、食道がんをはじめとする消化器がんの発症メカニズムと治療戦略の解明を柱としています。特に、細胞周期調節因子(E2F-1)や神経関連タンパク質(DARPP-32)のがん内での役割を分子レベルで解明しており、がんのバイオマーカーとしての可能性を追求しています。また、最新のロボット手術技術を用いた内視鏡的・外科研修の実践的応用も進め、臨床応用に直結する研究を展開しています。
Figures are computed from collected data and may differ slightly.
Functional end-to-end esophagojejunostomy in TLTG is safe and feasible.
The transcription factor E2F-1, a downstream regulator of the p16-cyclinD-Rb pathway, is required for cell cycle progression. Evidence shows that overexpression of E2F-1 can either promote or inhibit the development of tumors, depending on tissue or experimental conditions. However, the clinical impact of E2F-1 expression on esophageal squamous cell carcinoma (ESCC) remains unknown. To analyze E2F-1 expression in ESCC, we investigated the immunoreactivity of E2F-1 and its correlation with clinic
This is the first report to correlate DARPP-32 immunoreactivity (dopamine and cAMP-regulated phosphoprotein, M(r) 32 000) to clinicopathological status in human cancer. DARPP-32 is recognised as a neuronal protein. A recent study demonstrated that DARPP-32, and a truncated isoform t-DARPP, are overexpressed in gastric carcinoma during the process of carcinogenesis. The biological function of DARPP-32, however, is still unclear. The purpose of this study was to clarify the roles of DARPP-32 and t
The purpose of this study is to evaluate the performance of tele-robotic distal gastrectomy (tele-RDG) with lymph node dissection (LND) using a novel Japanese-made surgical robot hinotori™ (Medicaroid, Kobe, Japan) in a cadaver with a presumptive gastric cancer. The Cadaveric Anatomy and Surgical Training Laboratory (CAST-Lab.) at Hokkaido University and Kushiro City General Hospital (KCGH) are connected by a guaranteed type line (1 Gbps), and the distance between the two facilities is 250 km. A
Open papers in the app to read, cite, and organize with AI.