Sin-Hyuk Lim
Pohang University of Science and Technology
研究室紹介
Professor Sin-Hyuk Lim's research lab focuses on the host-microbiota crosstalk in immune regulation and allergic diseases, with a particular emphasis on identifying beneficial commensal and food-derived microbes that modulate immune responses. The lab investigates the molecular mechanisms by which specific bacteria, such as *Lactobacillus pentosus* KF340, induce regulatory T cells and promote immune tolerance, aiming to develop microbiota-based therapeutics. Using innovative gnotobiotic mouse models and in vitro screening systems, the lab explores how microbial metabolites and host factors interact to influence immune homeostasis and disease susceptibility.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
5Ca2+/calcineurin-NFAT-mediated signaling pathways are involved in diverse cellular reactions by regulating gene expression either positively or negatively. The transcriptional activity of NFAT proteins can be either activating or deactivating depending on which binding partners are involved. Interaction of NFAT with AP-1 turns on the genes involved in active immune responses, while NFAT without cooperative binding of AP-1 turns on a T cell anergy program and blocks T cell activation and prolifer
The prevalence of allergic disorders has dramatically increased over the past decade, particularly in developed countries. Apart from gastrointestinal disorders, neoplasia, genital and dermatological diseases etc., dysregulation of gut microbiota (dysbiosis) has also been found to be associated with increased risk of allergies. Probiotics are increasingly being employed to correct dysbiosis and, in turn, to modulate allergic diseases. However, several factors like strain variations and effector
Considerable evidence points to the critical role of the gut microbiota in physiology and disease. The administration of live microbes as a therapeutic modality is increasingly being considered. However, key questions such as how to identify candidate microorganisms and which preclinical models are relevant to recapitulate human microbiota remain largely unanswered. The establishment of a humanized gnotobiotic mouse model through the fecal microbiota transplantation of human feces into germ-free
Several gut commensals have been shown to modulate host immune response. Recently, many food derived microbes have also been reported to affect the immune system. However, a mechanism to identify immunostimulatory and immunoregulatory microbes is needed. Here, we successfully established an in vitro screening system and identified an immunoregulatory bacterium, Lactobacillus pentosus KF340 (LP340), present in various fermented foods. LP340 induced a regulatory phenotype in mice Ag presenting cel