Han Woong-gyu
Yonsei University · Medicine
About the Lab
Professor Han Woong-gyu's research lab specializes in renal pathophysiology and urological surgery, with a strong focus on acute and chronic kidney injury mechanisms, regenerative medicine, and innovative surgical techniques. The lab investigates protective strategies such as remote ischemic preconditioning and molecular regulators like apo-A4 and SIRT3 in kidney injury and cancer. It also pioneers advanced models, including adult-derived kidney organoids and novel surgical platforms like the SP surgical system for single-site partial nephrectomy, aiming to bridge translational gaps between experimental models and clinical applications. The lab integrates molecular biology, in vivo models, and minimally invasive surgical innovation to advance kidney disease treatment and surgical outcomes.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Remote ischemic preconditioning (IP) is a potential renoprotective strategy. However, there has been no demonstrated result in large animals and the role of time window in remote IP remains to be defined. Using a single-kidney porcine model, we evaluated organ protective function of remote IP in renal ischemia reperfusion injury. Fifteen Yorkshire pigs, 20 weeks old and weighing 35-38 kg were used. One week after left nephrectomy, we performed remote IP (clamping right external iliac artery, 2 c
Apo-A4 expression was increased in tissues from chronic kidney disease (CKD) patients compared to that in normal kidney tissue. We determined the association of apo-A4 and its regulatory signals following acute kidney injury and elucidated the effects of apo-A4 on cell signaling pathways related to kidney injury in vitro and in vivo. Tumor necrosis factor (TNF)-α, which causes inflammatory cell injury, induced significantly increased expression of apo-A4 protein levels, and these levels were rel
Cell-culture methods that simplify the inherent complexities of the kidney have not sufficiently reproduced its true characteristics. Although reports indicate that organoid methodology surpasses traditional cell culture in terms of reproducing the nature of organs, the study of human kidney organoids have been confined to pluripotent stem cells. Furthermore, it has not yet progressed beyond the developmental state of embryonic kidney even after complicate additional differentiation processes. W
Background: Robotic laparoendoscopic single-site (LESS) partial nephrectomy is not widely used because of its limitations, and true single-site surgery has not previously been possible. To investigate the feasibility of partial nephrectomy using the novel SP surgical system, compare perioperative outcomes using this system and the previous Xi single-site platform (XiSSP), and describe how true single-site partial nephrectomy is possible with the SP system. Methods: Retrospective chart review of
Clear cell renal cell carcinoma (ccRCC) alters metabolic signals frequently, leading to mitochondrial dysfunction, such as increase of glycolysis and accumulation of lipid. Sirtuin3 (SIRT3) is a key factor for the regulation of both mitochondrial integrity and function. SIRT3 is downregulated and contributes in both cancer development and progression in ccRCC. The aim of this study is to investigate SIRT3-regulated mitochondrial biogenesis in ccRCC. SIRT3 overexpression alone reduced glucose upt
Video-assisted mini-laparotomy surgery (VAMS), a hybrid of open and laparoscopic surgical techniques, is an important surgical approach in the field of partial nephrectomy. The learning curve for VAMS partial nephrectomy has not been studied to date; we therefore, evaluated this learning curve.We prospectively evaluated 20 consecutive patients who underwent VAMS partial nephrectomy performed by a single surgeon (YEY) between March 2015 and December 2016. The learning curve was evaluated using th
Research Areas
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