Hye Ryun Kang
Seoul National University · Medicine
About the Lab
Professor Hye Ryun Kang's research lab focuses on the genetic and immunological mechanisms underlying severe drug-induced adverse reactions, particularly severe cutaneous adverse reactions (SCARs) such as Stevens-Johnson syndrome and toxic epidermal necrolysis. The lab investigates HLA associations and immune pathways involved in drug hypersensitivity, with a strong emphasis on ethnic-specific genetic susceptibility. Additionally, the lab explores the role of growth factors like TGF-β1 and signaling molecules such as SEMA 7A in fibrotic lung diseases and tissue remodeling, integrating molecular immunology with clinical pharmacogenomics. Their work bridges genetics, immunology, and respiratory disease pathogenesis to improve diagnosis and personalized treatment strategies.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Recent investigations suggest genetic susceptibility of allopurinol-induced severe cutaneous adverse reactions (SCARs). However, the strength of association was variable according to phenotypes and ethnic backgrounds. To explore genetic markers for allopurinol-induced SCARs in Koreans, we genotyped human leukocyte antigen (HLA) class I alleles of 25 cases of allopurinol-induced SCARs (20 cases of drug-induced hypersensitivity syndrome and five cases of Stevens-Johnson syndrome/toxic epidermal ne
Fibrosis, apoptosis, and the exaggerated production of transforming growth factor (TGF)-beta(1) are juxtaposed in a variety of pulmonary diseases including the interstitial lung diseases and asthma. In these disorders, the relationships between these responses are not well defined. In addition, the apoptosis pathways that contribute to these responses and the mechanism(s) of their contribution have not been described. We hypothesized that BH3 domain-only protein-induced apoptosis plays an import
Semaphorin (SEMA) 7A regulates neuronal and immune function. In these studies, we tested the hypothesis that SEMA 7A is also a critical regulator of tissue remodeling. These studies demonstrate that SEMA 7A and its receptors, plexin C1 and beta1 integrins, are stimulated by transforming growth factor (TGF)-beta(1) in the murine lung. They also demonstrate that SEMA 7A plays a critical role in TGF-beta(1)-induced fibrosis, myofibroblast hyperplasia, alveolar remodeling, and apoptosis. TGF-beta(1)
Overall, our data suggest that SJS, and TEN are infrequent but constantly arise throughout the years.
RCM induced anaphylactic shock is related to multiple exposures to RCM and most patients showed skin test positivity to RCM.
The national prevalence of atopic dermatitis, and asthma did not show noticeable increase any more in Korea. However, the prevalence of allergic rhinitis still on the rise until recently, especially in the age group under 10. This is the first report in Asia suggesting a slowdown of the incidence of allergic diseases.
The prevalence of respiratory symptoms increased in children exposed to parental smoking including SHS and THS. To avoid the risk of respiratory and allergic disease by environmental tobacco smoke, absolute smoking cessation by parents is strongly recommended.
The incidence of cephalosporin-induced anaphylaxis differed according to individual drugs and side-chain structure. Screening IDT showed no clinical efficacy at a population level.
The incidence trend of anaphylaxis in Asia is not well investigated. The aim of this study is to estimate the entire population-based incidence of anaphylaxis in Korea using a nationwide administrative database.Data over a 7-year period (2008-2014) was obtained from the Korean National Health Insurance (NHI) claims database which covers 97.9% of the entire Korean population. Using diagnosis codes from the International Classification of Diseases-10 for anaphylaxis (T78.0, T78.2, T80.5, and T88.6
Platinum compounds are the most commonly reported causative agents of in-hospital drug-induced anaphylaxis. Older age ≥70 years and drugs such as iodinated contrast media and aminosteroid NMBA are related with high risk of anaphylactic shock.
Research Areas
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