Sinyoung Kim
Yonsei University · Medicine
About the Lab
Professor Sinyoung Kim's research lab specializes in regenerative medicine and translational biomedicine, with a focus on stem cell-derived exosomes for tissue repair and regeneration. The lab investigates the molecular mechanisms underlying the anti-inflammatory and pro-angiogenic effects of mesenchymal stem cell-derived exosomes, particularly through microRNA-mediated regulation. Additionally, the lab explores in vitro generation of clinical-grade red blood cells from hematopoietic stem cells and develops advanced diagnostic tools for infectious diseases such as hepatitis C. The integration of stem cell biology, molecular therapeutics, and biomedical device innovation defines the lab’s interdisciplinary approach.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Stem cell-derived exosomes are efficient and safe therapeutic tools for transferring endogenous biological cargo or functional biomolecules for regenerative medicine. The regulation of inflammation and angiogenesis plays a pivotal role in wound healing and tissue regeneration. The purpose of this study was to investigate the anti-inflammatory and pro-angiogenic roles of human adipose mesenchymal stem cell-derived exosomes, focusing on the underlying mechanisms. Exosomes inhibited LPS-induced inf
Various automated chemiluminescence immunoassay (CLIA) analyzers for the detection of antibodies to hepatitis C virus (HCV) are now commercially available in clinical laboratories and are replacing conventional enzyme immunoassays. We investigated the performance of four anti-HCV CLIAs (the Architect Anti-HCV assay on the Architect i2000 system, the Vitros Anti-HCV assay on the Vitros ECiQ Immunodiagnostic System, the Access HCV Ab PLUS assay on the UniCel DxI 800 analyzer, and the newly develop
BACKGROUND: There is no appropriate alternative source of red blood cells (RBCs) to relieve the worsening shortage of blood available for transfusion. Therefore, in vitro generation of clinically available RBCs from hematopoietic stem cells could be a promising new source to supplement the blood supply. However, there have been few studies about the generation of clinical-grade RBCs by coculture on human mesenchymal stem cells (MSCs) and various cytokine supplements, even though the production o
A new noise-cancelling method that employs a modified current-bleeding (CBLD) technique and balanced loads is presented by developing a design for a low-noise and high-linearity balun-low-noise amplifier (LNA) for broadband applications. The basic common-gate (CG)-common-source (CS) balun topology cannot achieve a noise figure (NF) of less than 3 dB. Thus, a practical topology containing a CS transistor of which the transconductance is N times larger than that of the CG transistor and a CS resis
BACKGROUND AND OBJECTIVES: In peripheral blood stem cell transplantation, the number of CD34(+) cells infused is considered a predictor of haematopoietic engraftment. However, the currently accepted minimal threshold of CD34(+) cells/kg was determined by counting CD34(+) cells before freezing, and the loss of viable CD34(+) cells during freezing, cryopreservation or thawing prior to reinfusion has not been assessed. MATERIALS AND METHODS: Total and viable CD34(+) cells were quantified using sing
BACKGROUND: Hyperleukocytosis in acute leukemia is associated with higher early mortality due to the major complications of leukostasis, tumor lysis syndrome (TLS), and disseminated intravascular coagulopathy (DIC). Leukapheresis remains an important modality for the management of patients with acute leukemia and hyperleukocytosis. However, the role of leukapheresis in early mortality is controversial. This study sought to evaluate the prognostic impact of leukapheresis and its beneficial effect
We retrospectively analyzed the performance of the Architect HIV antigen/antibody (Ag/Ab) combination assay in a tertiary health care center with a situation of low HIV prevalence. The specificity and positive predictive value (PPV) were 99.78% and 31.21%, respectively. However, the specificity and PPV could increase to 99.99% and 89.70% using an arbitrary cutoff value.
A new low-voltage and low-power noise-cancelling method that employs the local feedback g <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">m</sub> -boosting and balanced loads is proposed by developing a design for a low-noise and low-power balun-low-noise amplifier (LNA) for low-power broadband applications. A common-gate (CG) - common-source (CS) balun-LNA with a modified current-bleeding (CBLD) technique has low noise performance and differential
Mesenchymal stem cells (MSCs) possess great therapeutic potential. Efficient in vitro expansion of MSCs is however necessary for their clinical application. The extracellular matrix (ECM) provides structural and biochemical support to the surrounding cells, and it has been used as a coating substrate for cell culture. In this study, we have aimed to improve the functionality and stemness of MSCs during culture using poly-L-lysine (PLL). Functionality of MSCs was analysed by cell cycle analysis,
Understanding the relationship between structure and property is important in current research works. The QSAR/QSPR (Quantitative Structure–Activity Relationship/Quantitative Structure–Property Relationship) is a common method for finding the relationships between the structure and property of compounds. However, traditional methods of performing QSAR analysis rely on multiple software platforms for each step. Here, an integrated standalone python package, PyQSAR, is proposed that combines all Q
BACKGROUND: Dendritic cells (DCs), used in clinical trials for cancer immunotherapy, require processing on an expanded scale to conform to current good manufacturing practice guidelines. This study evaluated a large-scale monocyte enrichment procedure with a commercially available cell separator (Elutra, Gambro BCT) and analyzed the capacity of enriched monocytes to differentiate into DCs. STUDY DESIGN AND METHODS: Mononuclear cells were collected in two patients with malignant melanoma and seve
OBJECTIVE: The anti-cyclic citrullinated peptide (anti-CCP) antibody has been increasingly used in the field of rheumatology, and various manufacturers have developed a variety of anti-CCP assays using mainly ELISA techniques. This study evaluated the performance of recently marketed automated chemiluminescence enzyme immunoassays for anti-CCP. METHODS: We investigated four anti-CCP assays (Diastat anti-CCP ELISA assay, Axsym anti-CCP assay on the Axsym system, the Architect anti-CCP assay on th
Research Areas
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