👤 Sehee Oh

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122
Articles
97
Name variants
Also published as: Ah-Reum Oh, Arum Oh, B Oh, Bermseok Oh, Byung-Chul Oh, Byung-Ha Oh, Chang-Myung Oh, D-Y Oh, Dae Jong Oh, Do-Youn Oh, Dong Sun Oh, Doyeun Oh, Edwin C Oh, Elizabeth Oh, Eun-Kyung Oh, Eunseok Oh, Eunyoung Oh, Frances Oh, Gia Oh, Goo Taeg Oh, Grace Oh, Gun-Woo Oh, Gyun-Sik Oh, Hamilton Se-Hwee Oh, Heeseung Oh, Heesook Oh, Hoon Kyu Oh, Hye-Kyung Oh, Hyejin Oh, Hyeon-Jeong Oh, Hyeonsik Oh, Hyuncheol Oh, In-Jae Oh, Inn Gyung Oh, Jae Hwan Oh, Jae Won Oh, Jee Youn Oh, Ji Young Oh, Jieun Oh, Jin Kyun Oh, Jiwon Oh, Jong Min Oh, Joon Oh, Jung-Hwa Oh, Kang-Il Oh, Ki Kwang Oh, Ki-Kwang Oh, Ki-Won Oh, Kyoung-Jin Oh, Kyu-Young Oh, Mi Hyune Oh, Mihyun Oh, Min Hee Oh, Myung Sook Oh, Nayoung Oh, Raymond S Oh, S H Oh, S J Oh, Sae Jin Oh, Sae-Ock Oh, Sang-Muk Oh, Sangnam Oh, Sangtaek Oh, Sarah Oh, Se-Hyun Oh, Se-Jun Oh, Seil Oh, Sekyung Oh, Seokjun Oh, Seoyeon Oh, Seung Hwan Oh, Seung Jun Oh, Seung Yeon Oh, Seung-Jae Oh, Seung-Won Oh, Si Won Oh, Soo A Oh, Soo-Jin Oh, Soyoung A Oh, Stephen T Oh, Suk-Kyu Oh, Sumin Oh, Sun Kyung Oh, Sung-Dug Oh, Tae Gyu Oh, Tae Jung Oh, William K Oh, Won Keun Oh, Yeon Ju Oh, Yeon-Mok Oh, Yong-Seog Oh, Yoonsang Oh, Youjin Oh, Young Taek Oh, Young-Min Oh, Yumi Oh
articles
Ken C N Chang, Qi Shen, Inn Gyung Oh +10 more · 2008 · Molecular endocrinology (Baltimore, Md.) · added 2026-04-24
Liver X receptors (LXRalpha and -beta) are liposensors that exert their metabolic effects by orchestrating the expression of macrophage genes involved in lipid metabolism and inflammation. LXRs are al Show more
Liver X receptors (LXRalpha and -beta) are liposensors that exert their metabolic effects by orchestrating the expression of macrophage genes involved in lipid metabolism and inflammation. LXRs are also expressed in other tissues, including skin, where their natural oxysterol ligands induce keratinocyte differentiation and improve epidermal barrier function. To extend the potential use of LXR ligands to dermatological indications, we explored the possibility of using LXR as a target for skin aging. We demonstrate that LXR signaling is down-regulated in cell-based models of photoaging, i.e. UV-activated keratinocytes and TNFalpha-activated dermal fibroblasts. We show that a synthetic LXR ligand inhibits the expression of cytokines and metalloproteinases in these in vitro models, thus indicating its potential in decreasing cutaneous inflammation associated with the etiology of photoaging. Furthermore, a synthetic LXR ligand induces the expression of differentiation markers, ceramide biosynthesis enzymes, and lipid synthesis and transport genes in keratinocytes. Remarkably, LXRbeta-null mouse skin showed some of the molecular defects that are observed in chronologically aged human skin. Finally, we demonstrate that a synthetic LXR agonist inhibits UV-induced photodamage and skin wrinkle formation in a murine model of photoaging. Therefore, the ability of an LXR ligand to modulate multiple pathways underlying the etiology of skin aging suggests that LXR is a novel target for developing potential therapeutics for photoaging and chronological skin aging indications. Show less
no PDF DOI: 10.1210/me.2008-0232
NR1H3
J H Kim, Y S Lee, E W Park +6 more · 2005 · Cytogenetic and genome research · added 2026-04-24
no PDF DOI: 10.1159/000081533
PIK3C3