Yonsei University · 医学
Professor Sang-Guk Lee's research lab specializes in translational biomedical research, focusing on the molecular mechanisms underlying metabolic diseases such as type 2 diabetes and insulin resistance, with particular emphasis on biomarkers like netrin-1 and bile acids. The lab also investigates cellular and molecular responses in hematopoietic stem cell transplantation, aiming to improve graft quality and engraftment outcomes through advanced cell quantification and cryopreservation techniques. Additionally, the lab develops innovative biosensors using functional amphiphilic molecules for rapid, optical detection of clinical analytes such as urea in biological fluids. These interdisciplinary efforts bridge clinical diagnostics, molecular biology, and materials science to advance precision medicine and point-of-care diagnostics.
Figures are computed from collected data and may differ slightly.
Quantification of post-thaw viable CD34(+) cells better represents the actual composition of the graft and may be a more accurate predictor of haematopoietic engraftment than post-thaw total CD34(+) cell counts, or prefreeze determinations, especially for platelet engraftment. It is necessary to develop good quality controls for freezing and thawing procedures to minimize variance in cell viability.
Background While the introduction of automated urine analyzers is expected to reduce the labor involved, turnaround time and potential assay variations, microscopic examination remains the "gold standard" for the analysis of urine sediments. In this study, we evaluated the analytical and diagnostic performance of five recently introduced automated urine sediment analyzers. Methods A total of 1016 samples were examined using five automated urine sediment analyzers and manual microscopy. Concordan
<b>Background:</b> The protein netrin-1 has demonstrated anti-inflammatory, tissue regeneration, and immune modulation properties. Although inflammation is a major contributing factor in the development of insulin resistance and type 2 diabetes, little is known about a possible relationship between serum netrin-1 and type 2 diabetes. Therefore, we investigated the association between circulating levels of netrin-1 and glycometabolic parameters predictive of type 2 diabetes. <b>Methods:</b> Serum
Background Bile acids (BAs) have been demonstrated to exert a variety of metabolic effects and alterations in BAs have been reported in patients with obesity, insulin resistance (IR) and type 2 diabetes mellitus (T2DM). However, it is unclear which metabolic condition is the main contributor to alterations in BAs. In this study, we investigate the associations between different BA profiles with glycemia, obesity or IR status. Methods Fasting serum concentrations of 15 BA species were determined
Recent rapid developments in new technology such as whole genome/exome sequencing have revealed that novel mutations in genes such as DNMT3A , IDH1 , IDH2 and TET2 contribute to the main process of leukemogenesis in patients with normal karyotype acute myeloid leukemia (AML).[1][1] Among these genes
Stimuli-responsive self-assembly of functional amphiphilic molecules by specific chemical stimulants is a promising strategy for sensor application. Herein, we demonstrate a fast optical detection of urea in human urine by exploiting bolaform perylene diimide functionalized with imidazoles (PDI-Hm), whose aggregation is induced by urea hydrolysis. The hydroxides produced from the enzymatic urea hydrolysis deprotonate the imidazoles to reduce electrostatic repulsion between PDI-Hm molecules in a
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