Young Mo Kim
Hanyang University · Environmental Science
About the Lab
Professor Young Mo Kim's research lab focuses on molecular and translational studies in cardiovascular and musculoskeletal diseases, with a strong emphasis on oxidative stress mechanisms in atrial fibrillation and innovative arthroscopic techniques for meniscal repair. The lab investigates redox signaling and enzymatic pathways—particularly NAD(P)H oxidase—contributing to cardiac remodeling, while also advancing minimally invasive surgical solutions for knee joint pathologies such as patellofemoral arthritis and meniscal tears. Additionally, the lab explores microbial metabolism, especially CO-utilizing mycobacteria, highlighting its potential in biotechnological and environmental applications. These diverse yet interconnected research directions reflect a commitment to understanding disease mechanisms and developing targeted therapeutic and surgical interventions.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Human atrial fibrillation (AF) has been associated with increased atrial oxidative stress. In animal models, inhibition of reactive oxygen species prevents atrial remodeling induced by rapid pacing, suggesting that oxidative stress may play an important role in the pathophysiology of AF. NAD(P)H oxidase is a major source of superoxide in the cardiovascular system; however, whether this enzyme contributes to atrial oxidative stress in AF remains to be elucidated. We investigated the sources of su
We developed an effective arthroscopic pullout technique for repairing complete radial tears of the tibial attachment site of the medial meniscus posterior horn (MMPH). In our technique, the torn meniscus is reattached to the tibial plateau immediately medial or anteromedial to the posterior cruciate ligament (PCL) using two No. 2 Ethibond sutures (Ethicon, Somerville, NJ). After a complete radial tear of the tibial attachment site of the MMPH and its reparability were confirmed, using a Caspari
Patellofemoral arthritis is a fairly common disease, and it has been gaining interest with increasing number of studies due to its diverse treatment methods. Patellofemoral arthritis has a broad range of management options according to the characteristics of individual diseases. Identifying whether patellofemoral arthritis is the primary cause of knee pain and is compartment arthritis is necessary for establishing an adequate treatment method. Through investigation of the literature, the issues
Several mycobacterial strains, such as Mycobacterium flavescens, Mycobacterium gastri, Mycobacterium neoaurum, Mycobacterium parafortuitum, Mycobacterium peregrinum, Mycobacterium phlei, Mycobacterium smegmatis, Mycobacterium tuberculosis, and Mycobacterium vaccae, were found to grow on carbon monoxide (CO) as the sole source of carbon and energy. These bacteria, except for M. tuberculosis, also utilized methanol as the sole carbon and energy source. A CO dehydrogenase (CO-DH) assay, staining by
Research Areas
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