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Dive into the research topics where Moon Soon Lee is active.

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Featured researches published by Moon Soon Lee.


Neurochemistry International | 2012

Obovatol attenuates LPS-induced memory impairments in mice via inhibition of NF-κB signaling pathway.

Dong-Young Choi; Jae Woong Lee; Guihua Lin; Yong Kyung Lee; Yeon Hee Lee; Im Seop Choi; Sang-Bae Han; Jae Kyung Jung; Young Hee Kim; Ki Ho Kim; Ki-Wan Oh; Jin Tae Hong; Moon Soon Lee

Neuroinflammation and accumulation of β-amyloid are critical pathogenic mechanisms of Alzheimers disease (AD). In the previous study, we have shown that systemic lipopolysaccharide (LPS) caused neuroinflammation with concomitant increase in β-amyloid and memory impairments in mice. In an attempt to investigate anti-neuroinflammatory properties of obovatol isolated from Magnolia obovata, we administered obovatol (0.2, 0.5 and 1.0 mg/kg/day, p.o.) to animals for 21 days before injection of LPS (0.25 mg/kg, i.p.). We found that obovatol dose-dependently attenuates LPS-induced memory deficit in the Morris water maze and passive avoidance tasks. Consistent with the results of memory tasks, the compound prevented LPS-induced increases in Aβ₁₋₄₂ formation, β- and γ-secretases activities and levels of amyloid precursor protein, neuronal β-secretase 1 (BACE1), and C99 (a product of BACE1) in the cortex and hippocampus. The LPS-mediated neuroinflammation as determined by Western blots and immunostainings was significantly ameliorated by the compound. Furthermore, LPS-induced nuclear factor (NF)-κB DNA binding activity was drastically abolished by obovatol as shown by the electrophoretic mobility shift assay. The anti-neuroinflammation and anti-amyloidogenesis by obovatol were replicated in in vitro studies. These results show that obovatol mitigates LPS-induced amyloidogenesis and memory impairment via inhibiting NF-κB signal pathway, suggesting that the compound might be plausible therapeutic intervention for neuroinflammation-related diseases such as AD.


Mediators of Inflammation | 2007

Inhibitory Effect of Inflexinol on Nitric Oxide Generation and iNOS Expression via Inhibition of NF-κB Activation

Jae Woong Lee; Moon Soon Lee; Tae Hun Kim; Hwa Jeong Lee; Seong Su Hong; Young Hee Noh; Bang Yeon Hwang; Jai Seup Ro; Jin Tae Hong

Inflexinol, an ent-kaurane diterpenoid, was isolated from the leaves of Isodon excisus. Many diterpenoids isolated from the genus Isodon (Labiatae) have antitumor and antiinflammatory activities. We investigated the antiinflammatory effect of inflexinol in RAW 264.7 cells and astrocytes. As a result, we found that inflexinol (1, 5, 10 μM) suppressed the expression of inducible nitric oxide synthase (iNOS) and cyclooxygenase-2 (COX-2) as well as the production of nitric oxide (NO) in LPS-stimulated RAW 264.7 cells and astrocytes. Consistent with the inhibitory effect on iNOS and COX-2 expression, inflexinol also inhibited transcriptional and DNA binding activity of NF-κB via inhibition of IκB degradation as well as p50 and p65 translocation into nucleus. These results suggest that inflexinol inhibits iNOS and COX-2 expression through inhibition of NF-κB activation, thereby inhibits generation of inflammatory mediators in RAW 264.7 cells and astrocytes, and may be useful for treatment of inflammatory diseases.


Archives of Pharmacal Research | 2010

Naphthoquinones from Catalpa ovata and their inhibitory effects on the production of nitric oxide

Byeong Min Park; Seong Su Hong; Chul Lee; Moon Soon Lee; Shin Jung Kang; Yu Su Shin; Jae-Kyung Jung; Jin Tae Hong; Youngsoo Kim; Mi Kyeong Lee; Bang Yeon Hwang

Bioassay-guided fractionation of a CH2Cl2-soluble fraction of the stems of Catalpa ovata led to isolation of a new naphthoquinone, 4-hydroxy-2-(2-methoxy-3-hydroxy-3-methyl-but-1-enyl)-4-hydro-1H-naphthalen-1-one (10), together with nine known compounds, catalponol (1), catalponone (2), catalpalactone (3), α-lapachone (4), 9-hydroxy-α-lapachone (5), 4,9-dihydroxy-α-lapachone (6), 9-methoxy-α-lapachone (7), 4-oxo-α-lapachone (8), and 9-methoxy-4-oxo-α-lapachone (9). The structures were elucidated on the basis of spectroscopic analyses. The inhibitory effects of these isolates on lipopolysaccharide-induced NO synthesis in RAW 264.7 cells were evaluated. Among them, catapalactone (3), 9-hydroxy-α-lapachone (5) and 4,9-dihydroxy-α-lapachone (6) exhibited potent inhibitory effects, with IC50 values of 9.80, 4.64 and 2.73 μM, respectively.


Archives of Pharmacal Research | 2007

Quinolone Alkaloids from Evodiae Fructus and Their Inhibitory Effects on Monoamine Oxidase

Xiang Hua Han; Seong Su Hong; Dongho Lee; Jung Joon Lee; Moon Soon Lee; Dong-Cheul Moon; Kun Han; Ki-Wan Oh; Myung Koo Lee; Jai Seup Ro; Bang Yeon Hwang

Abstract1-Methyl-2-undecyl-4(1H)-quinolone (1) was previously isolated as a selective MAO-B inhibitor from the Evodiae Fructus. Further bioassay-guided purification led to the identification of five known quinolone alkaloids, 1-methyl-2-nonyl-4(1H)-quinolone (2), 1-methyl-2-[(Z)-6-unde-cenyl]-4(1H)-quinolone (3), evocarpine (4), 1-methyl-2-[(6Z,9Z)-6,9-pentadecadienyl]-4(1H)-quinolone (5), and dihydroevocarpine (6). All the isolates showed more potent inhibitory effects against MAO-B compared to MAO-A. The most MAO-B selective compound 5 among the isolates inhibited MAO-B in a competitive manner, according to kinetic analyses by Lineweaver-Burk reciprocal plots.


Archives of Pharmacal Research | 2009

A new furofuran lignan from Isodon japonicus

Seong Su Hong; Chul Lee; Chang-Hee Lee; Mieon Park; Moon Soon Lee; Jin Tae Hong; Heesoon Lee; Mi Kyeong Lee; Bang Yeon Hwang

A new sesamin type furofuran lignan, (−)-sesamin-2,2′-diol (1), along with two known flavonoids (2 and 3) and three phenolic compounds (4–6) were isolated from the aerial parts of Isodon japonicus. The structures of these compounds were determined by analysis of spectroscopic data (1D-, 2D-NMR, HRMS and CD) and by comparison of the data with those of related metabolites.


Oncotarget | 2015

Myelin oligodendrocyte glycoprotein (MOG 35-55 )-induced experimental autoimmune encephalomyelitis is ameliorated in interleukin-32 alpha transgenic mice

Jaesuk Yun; Sun Mi Gu; Hyung Mun Yun; Dong Ju Son; Mi Hee Park; Moon Soon Lee; Jin Tae Hong

Multiple sclerosis (MS), also known as disseminated sclerosis or encephalomyelitis disseminate, is an inflammatory disease in which myelin in the spinal cord and brain are damaged. IL-32α is known as a critical molecule in the pathophysiology of immune-mediated chronic inflammatory disease such as rheumatoid arthritis, chronic pulmonary disease, and cancers. However, the role of IL-32α on spinal cord injuries and demyelination is poorly understood. Recently, we reported that the release of proinflammatory cytokines were reduced in IL-32α-overexpressing transgenic mice. In this study, we investigated whether IL-32α plays a role on MS using experimental autoimmune encephalomyelitis (EAE), an experimental mouse model of MS, in human IL-32α Tg mice. The Tg mice were immunized with MOG35-55 suspended in CFA emulsion followed by pertussis toxin, and then EAE paralysis of mice was scored. We observed that the paralytic severity and neuropathology of EAE in IL-32α Tg mice were significantly decreased compared with that of non-Tg mice. The immune cells infiltration, astrocytes/microglials activation, and pro-inflammatory cytokines (IL-1β and IL-6) levels in spinal cord were suppressed in IL-32α Tg mice. Furthermore, NG2 and O4 were decreased in IL-32α Tg mice, indicating that spinal cord damaging was suppressed. In addition, in vitro assay also revealed that IL-32α has a preventive role against Con A stimulation which is evidenced by decrease in T cell proliferation and inflammatory cytokine levels in IL-32α overexpressed Jurkat cell. Taken together, our findings suggested that IL-32α may play a protective role in EAE by suppressing neuroinflammation in spinal cord.


Chemistry & Biodiversity | 2017

Chemical Constituents Isolated from Bletilla striata and Their Inhibitory Effects on Nitric Oxide Production in RAW 264.7 Cells.

Joon Young Bae; Jin Woo Lee; Qinghao Jin; Hari Jang; Dongho Lee; Youngsoo Kim; Jin Tae Hong; Mi Kyeong Lee; Moon Soon Lee; Bang Yeon Hwang

Bioassay‐guided fractionation of the MeOH extract of the tubers of Bletilla striata led to the isolation of two new C‐methylated flavan‐3‐ols, bletillanols A (1) and B (2), along with ten known compounds (3 – 12). Their structures were determined by using extensive spectroscopic analysis including 1D‐, 2D‐NMR, and circular dichroism data. All of the isolated compounds were tested for their inhibitory potential on the nitric oxide generation in LPS‐stimulated RAW 264.7 cells.


Neurochemical Research | 2009

Neurite Outgrowth Effect of 4-O-methylhonokiol by Induction of Neurotrophic Factors Through ERK Activation

Yong Kyoung Lee; Im Seop Choi; Young Heui Kim; Ki Ho Kim; Sang Yun Nam; Young Won Yun; Moon Soon Lee; Ki Wan Oh; Jin Tae Hong


Toxicology and Applied Pharmacology | 2014

Anti-inflammatory effect of tricin 4′-O-(threo-β-guaiacylglyceryl) ether, a novel flavonolignan compound isolated from Njavara on in RAW264.7 cells and in ear mice edema

Young Suk Jung; Dae Hwan Kim; Jae Yeon Hwang; Na Young Yun; Yun Hee Lee; Sang-Bae Han; Bang Yeon Hwang; Moon Soon Lee; Heon Sang Jeong; Jin Tae Hong


Biomolecules & Therapeutics | 2011

Neuroprotective Effect of L-Theanine on Aβ-Induced Neurotoxicity through Anti-Oxidative Mechanisms in SK-N-SH and SK-N-MC Cells

Mi Ran Jo; Mi Hee Park; Dong Young Choi; Dong Yeun Yuk ; Yuk Mo Lee; Jin Moo Lee; Jae Hwang Jeong; Ki Wan Oh; Moon Soon Lee; Sang-Bae Han; Jin Tae Hong

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Bang Yeon Hwang

Chungbuk National University

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Jin Tae Hong

Chungbuk National University

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Mi Kyeong Lee

Chungbuk National University

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Chul Lee

Chungbuk National University

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Jai Seup Ro

Chungbuk National University

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Sang-Bae Han

Chungbuk National University

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Xiang Hua Han

Chungbuk National University

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Hari Jang

Chungbuk National University

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