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      • KCI등재

        IL-15에 의한 류마티스관절염 환자 활막 섬유모세포에서의 SDF-1 유도

        박영은 ( Young Eun Park ),김성일 ( Sung Il Kim ),박성후 ( Seong Hu Park ),백승훈 ( Seung Hoon Baek ),오혜좌 ( Hye Jwa Oh ),허양미 ( Yang Mi Heo ),조미라 ( Mi La Cho ) 대한류마티스학회 2010 대한류마티스학회지 Vol.17 No.3

        Objective: Interleukin-15 (IL-15) recruits and activates synovial T cells, and IL-15 plays an important role in amplifying and perpetuating inflammation in the pathogenesis of rheumatoid arthritis (RA). Stromal cell-derived factor-1 (SDF-1) is a potent chemoattractant for memory T cells in the inflamed RA synovium. This study investigated the effect of IL-15 on SDF-1 production in RA fibroblast-like synoviocytes (FLS). Methods: The expressions of IL-15 and SDF-1 were determined from the synovium of patients with RA and osteoarthritis (OA) by performing immunohistochemistry. The expressions of SDF-1 was measured from the RA FLS that were cultured with IL-15 and IL-17 by real-time RT-PCR and ELISA. The SDF-1 expression was also measured, via ELISA, from the RA FLS stimulated by IL-15 together with the inhibitors of such intracellular signal molecules as phosphatidylinositol 3-kinase (PI 3-kinase, LY294002), STAT3 (AG490), MAP Kinase (PD98059), NF-κB (parthenolide) and activator protein 1 (AP-1, curcumin). Results: IL-15 and SDF-1 were mainly expressed in the RA synovium compared to that of the OA synovium. IL-15 increased the SDF-1 expressions and it, and had an additive effect with IL-17 on the SDF-1 expressions in the cultured RA FLS. The IL-15 induced increase of the SDF-1 expression in the cultured RA FLS was blocked by the inhibitors of PI 3-kinase, NF-κB and AP-1. Conclusion: The SDF-1 expression was increased in the RA synovium and it was up-regulated by IL-15 in the RA FLS through the PI 3-kinase, NF-κB, and AP-1 pathways. These results imply that the IL-15 induced increase of the SDF-1 expressions may be involved in the immunopathogenesis of RA.

      • The enhanced IL-l8 production by UVB irradiation requires ROI and AP-1 signaling in human keratinocyte cell line (HaCaT)

        Cho, Daeho,Kang, Jae Seung,Park, Jong Hoon,Kim, Young-In,Hahm, Eunsil,Lee, Junechul,Yang, Yoolhee,Jeon, Junho,Song, HyunKeun,Park, Hyunjeong,Kim, Taesung,Pang, Saic,Kim, Chul-Woo,Hwang, Young Il,Lee, 전남대학교 약품개발연구소 2002 약품개발연구지 Vol.11 No.-

        Based on our recent observation that enhanced IL-18 expression positively correlates with malignant skin tumors, such as SCC and melanoma, we examined the possible role of UVB, known to be associated with skin cancer development, in the enhancement of IL-18 production using primary human epidermal keratinocytes and human cell line HaCaT. After cells were exposed to UVB irradiation in vitro, IL-18 production was examined by Northern blot analysis and ELISA, and it was found that IL-18 production is enhanced by UVB irradiation in a dose- and time-dependent manner. In addition, we confirmed that it is functionally active form of IL-18 using the inhibitor of caspase-1. The effect of UVB irradiation was blocked by antioxidant, N-acetyl-ι-cysteine (NAC), which suggested the involvement of reactive oxygen intermediates (ROI) in the signal transduction of UVB irradiation-enhanced IL-18 synthesis. We also found that UVB irradiation increased AP-1 binding activity by using EMSA with AP-1-specific oligonucleotide. Furthermore, inhibitors of UVB-induced AP-1 activity, such as PD98059, blocked enhanced IL-18 production, indicating that AP-1 activation is required for UVB-induced IL-18 production. Taken together, our results suggest that UVB irradiation-enhanced IL-18 production is selectively mediated through the generation of ROI and the activation of AP-1.

      • SCIESCOPUSKCI등재

        The Effects of Ketorolac Tromethamine and Baicalein on the Levels of Inflammatory Factors in Human Synoviocytes

        Yang, Jae-Heon,Yun, Mi-Young,Lee, Nam-Hee,Kim, Dae-Keun,Kim, Young-Il,Noh, Young-Hee,Kim, Tae-Youl,Yoon, Se-Won,Shin, Sang-Chul 대한약학회 2008 Archives of Pharmacal Research Vol.31 No.11

        This study examined the effects of ketorolac tromethamine (KT) and baicalein (BE) on the levels of inflammatory factors in human synoviocytes. The fibroblast-like synoviocytes (FLS) cells were used to determine the possible regulatory effects of KT and BE (KTBE) on the levels of inflammatory factors in FLS cells. In addition, the levels of TNF-$\alpha$, IL-6, and IL-$1{\beta}$ mRNA expression in FLS cells induced by a TNF-$\alpha$ and IL-$1{\beta}$ co-treatment were largely inhibited by a KTBE treatment. The level of FLS cells proliferation was increased by IL-$1{\beta}$ and TNF-$\alpha$, and strongly inhibited by KTBE treatment. The production of oxygen species (ROS) was inhibited by KTBE in FLS cells. KTBE appears to regulate the levels of mRNA that are important for regulating RA progression.

      • Effect of high-mobility group box 1 on keratinocytes and fibroblasts

        ( Chan-yang Lee ),( In-hye Kang ),( Seung-min Oh ),( Jin-woo Lee ),( Young Il Kim ),( Ki-heon Jeong ) 대한피부과학회 2020 대한피부과학회 학술발표대회집 Vol.72 No.1

        Background: High-mobility group protein B1 (HMGB1) is a physiological activator of immune responses. In patients with chronic inflammatory skin disorders including lupus, atopic dermatitis, and psoriasis, HMGB1 is increased in the cutaneous lesions. Objectives: This study was designed to investigate the effect of HMGB1 on keratinocytes and fibroblasts. Methods: In this study, keratinocytes and fibroblasts were exposed to narrow band ultraviolet B (NBUVB). Thereafter, release of HMGB1 were measured. Then keratinocytes and fibroblasts were treated with recombinant HMGB1 (rHMGB1) and production of inflammatory factors such as interleukin (IL)-1β, IL-6, IL-8, IL-18, chemokine (C-X-C motif) ligand (CXCL)1, CXCL2 and tumor necrosis factor (TNF)-α were examined. Results: 24h after NBUVB irradiation, the level of HMGB1 mRNA was increased in the fibroblasts but it was decreased in the keratinocytes. Extracellular level of HMGB1 was significantly increased in both keratinocytes and fibroblasts, 72h after NBUVB irradiation. After rHMGB1 treatment, proinflammatory molecule such as CXCL-1, IL-6, IL-8 and IL-18 were significantly increased in the keratinocytes and CXCL-1, IL-6 and IL-8 were significantly increased in the fibroblasts. Conclusion: HMGB1 can be released from keratinocytes and fibroblasts by external stress such as NBUVB irradiation and leads to activation of inflammatory signaling pathways in the keratinocytes and fibroblasts.

      • SCISCIESCOPUS

        A Novel Function of Interleukin-10 Promoting Self-Renewal of Hematopoietic Stem Cells

        Kang, Young-Ju,Yang, Seung-Jip,Park, Gyeongsin,Cho, Bin,Min, Chang-Ki,Kim, Tae-Yoon,Lee, Joon-Sung,Oh, Il-Hoan Wiley (John WileySons) 2007 Stem Cells Vol.25 No.7

        <P>Self-renewal of hematopoietic stem cells (HSCs) is key to their reconstituting ability, but the factors regulating the process remain poorly understood. Here, we show that Interleukin-10 (IL-10), a pleiotropic immune modulating cytokine, can also play a role in regulating HSC self-renewal. First, a quantitative decrease of primitive hematopoietic cell populations, but not more matured cells, was observed in the bone marrows of IL-10 disrupted mice as determined by long-term in vitro cultures or in vivo competitive repopulation assays. In contrast, normal HSCs from 5-fluorouracil treated marrows cultured on the IL-10 secreting stroma displayed an enhanced repopulating activity compared with cells grown on control stroma, with ninefold higher numbers of donor-derived HSCs in the reconstituted recipient marrows. Moreover, limiting dilution transplantation assay demonstrated that exogenous addition of IL-10 in the stroma-free cultures of purified Lin- Sca-1+ c-kit+ cells caused three- to fourfold higher frequencies of HSCs in the 5-day short-term culture without indirect inhibitory effect of IL-10 on tumor necrosis factor-alpha or interferon-gamma secretion. Interestingly, primitive hematopoietic cells, including Lin- Sca-1+ c-kit+ or side population cells, expressed the surface receptor for IL-10, and microenvironmental production of IL-10 was sharply increased in the osteoblasts lining the trabecular regions of the radiation-stressed marrow but not in the steady-state marrows. These results show that IL-10 may be a ligand that can stimulate self-renewal of HSCs to promote their regeneration in addition to being a ligand for immune regulation. Disclosure of potential conflicts of interest is found at the end of this article.</P>

      • KCI등재

        Soluble mediators from mesenchymal stem cells suppress T cell proliferation by inducing IL-10

        Seung-Ha Yang,Min-Jung Park,Il-Hee Yoon,Su-Young Kim,So-Hee Hong,Jin-Young Shin,Hye-Young Nam,김용희,Bongi Kim,박정규 생화학분자생물학회 2009 Experimental and molecular medicine Vol.41 No.5

        Mesenchymal stem cells (MSCs) can inhibit T cell proliferation; however, the underlying mechanisms are not clear. In this study, we investigated the mechanisms of the immunoregulatory activity of MSCs on T cells. Irradiated MSCs co-cultured with either naïve or pre-activated T cells in a mixed lymphocyte reaction (MLR) significantly suppressed T cell proliferation in a dose-dependent manner, irrespective of allogeneic disparity between responders and MSCs. Transwell assays revealed that the suppressive effect was primarily mediated by soluble factors that induced apoptosis. Splenocytes stimulated with alloantigen in the presence of the MSC culture supernatant (CS) produced a significant amount of IL-10, which was attributed to an increase in the number of IL-10 secreting cells, confirmed by an ELISPOT assay. The blockade of IL-10 and IL-10 receptor interaction by anti-IL-10 or anti-IL-10-receptor antibodies abrogated the suppressive capacity of MSC CS, indicating that IL-10 plays a major role in the suppression of T cell proliferation. The addition of 1-methyl-DL-tryptophan (1-MT), an indoleamine 2,3-dioxygenase (IDO) inhibitor, also restored the proliferative capacity of T cells. In conclusion, we demonstrated that soluble mediators from culture supernatant of MSCs could suppress the proliferation of both naïve and pre-activated T cells in which IL-10 and IDO play important roles.

      • SCOPUSKCI등재

        담배 니코틴에 의한 사람 태아 성상세포에서 종양괴사인자(TNF-α)의 발현 억제작용

        손일홍,이성익,양현덕,한선정,석승한,이재규,김재현,박주영,문형인,이성수,Son, Il-Hong,Lee, Sung-Ik,Yang, Hyun-Duk,Han, Sun-Jung,Suk, Seung-Han,Lee, Jai-Kyoo,Kim, Jae-Hyun,Park, Joo-Young,Moon, Hyung-In,Lee, Sung-Soo 대한화학회 2007 대한화학회지 Vol.51 No.3

        니코틴은 사람 대식세포에서 interleukin 2 (IL-2)와 종양괴사인자 (tumor necrosis factor-alpha; TNF-α) 가 생성되는 것을 억제하는데, 이러한 억제작용은 cytokine 유전자 발현 중 전사단계에서 전사인자의 활성을 억제함으로써 일어난다. 이러한 니코틴의 면역반응 억제작용은 아프타성궤양 및 궤양성대장염, 알레르기성폐 포염, 건초열 등에서도 보고되고 있다. 만일 중추신경계에서도 위와 같은 니코틴의 면역억제 작용이 일어난 다면 다발성경화증과 같은 면역반응 매개질환의 치료에 새로운 전기가 마련될 수 있을 것이다. 본 연구에서 는 중추신경계의 여러 면역반응 매개질환의 병태생리에 대한 이해를 넓히고자, 이미 알려진 니코틴의 cytokine 생성억제가 사람 중추신경계의 성상세포에서도 일어남을 확인하고 그 억제기전을 밝히고자 하였다. 이를 위 하여 사람 태아 성상세포에 다양한 농도의 니코틴과 IL-1β를 처리한 다음 TNF-α mRNA의 발현 정도와 NF- κB의 활성을 비교, 분석하여 다음과 같은 결과를 얻었다. 1. 사람 태아 성상세포를 0.1-20 μg/ml의 니코틴으로 처리해 본 결과 10 μg/ml 이상의 농도에서 세포독성능이 나타나기 시작하였다. 2. 사람 태아 성상세포에 IL- 1β를 처리하면 2시간만에 TNF-α mRNA가 최대로 발현되었으며 그 이후로는 점진적으로 감소하였다. 3. 사 람 태아 성상세포를 1 및 0.1 μg/ml의 니코틴으로 전처리한 후 IL-1β로 자극한 군에서는 IL-1β 단독 처리군에 비해 TNF-α mRNA의 발현이 감소하는 양상을 보였다. 1 μg/ml의 니코틴을 처리한 경우에는 8시간 이후부터 TNF-α mRNA의 발현이 현저하게 감소하여 12시간에 최대로 감소하였다. 또한 0.1 μg/ml의 니코틴을 처리한 군에서는 24시간에 가장 현저하게 감소하였다. 4. 성상세포에 IL-1β로 처리한 군에서는 강력한 NF-κB의 활성 을 확인할 수 있었으며, 니코틴을 전처리하고 IL-1β 자극한 군에서는 NF-B의 활성이 감소하였다. 결론적으로 일정농도 이상의 니코틴은 세포독성효과를 나타내나 적정한 농도와 시간 경과후 니코틴은 사람 태아 성상세포에서 IL-1β에 의해 유도되는 TNF-α의 발현 감소를 유도하며, 이는 NF-κB의 활성을 감소시킴으로써 나타난다고 생각된다. The Tumor necrosis factor-α, (TNF-α), is involved in the pathogenesis of multiple sclerosis and contributes to the degeneration of oligodendrocytes as well as neurons. Nicotine has been found to have immunosuppressive and inflammation-suppressing effects. Astrocytes, the major glial cells in the CNS, are capable of producing TNF-α at both the mRNA and protein levels in response to interleukin-1 (IL-1) or TNF-α. Nicotine has been shown to influence glial cell functions. To order to explore the role of astrocytes in the production of TNF-α, astrocytes were pretreated with nicotine and are stimulated with IL-1β to determine their effects on TNF-α production. The results are as follows. Cytotoxic effects of nicotine on human fetal astrocytes were noted above 10 μg/ml of nicotine. The effect of IL-1β on TNF-α mRNA expression in primary cultured human fetal astrocytes was maximal at 2 h after IL- 1β(100 pg/ml) treatment. Human fetal astrocytes were pretreated with 0.1, 1, and 10 μg/ml of nicotine and then stimulated with IL-1β (100 pg/ml) for 2 h. The inhibitory effect of nicotine on expressions of TNF-α mRNA in human fetal astrocytes with pretreated 0.1 μg/ml of nicotine is first noted at 8 hr, and the inhibitory effect is maximal at 12 h. The inhibitory effect at 1 μg/ml of nicotine is inhibited maximal at 24 h. Nicotine at 0.1, 1 and 10 μg/ml concentrations significantly inhibits IL-1β-induced NF-κB activation. Collectively, this study indicates that nicotine might inhibit the expression of TNF-α in activated human fetal astrocytes.

      • SCISCIESCOPUS

        Caffeic acid phenethyl ester inhibits the inflammatory effects of interleukin-1β in human corneal fibroblasts

        Yang, Jae-Wook,Jung, Won-Kyo,Lee, Chang-Min,Yea, Sung Su,Choi, Yung Hyun,Kim, Gi-Young,Lee, Dae-Sung,Na, Giyoun,Park, Sae-Gwang,Seo, Su-Kil,Choi, Jung Sik,Lee, Young-Min,Park, Won Sun,Choi, Il-Whan Informa Healthcare USA, Inc. 2014 IMMUNOPHARMACOLOGY AND IMMUNOTOXICOLOGY Vol.36 No.5

        <P><I>Context</I>: Expression of various inflammatory mediators in corneal fibroblasts contributes to corneal inflammation.</P><P><I>Objective</I>: The purpose of this study was to assess the possible effects of caffeic acid phenethyl ester (CAPE) on the expression of inflammatory mediators during an inflammatory response in human corneal fibroblasts.</P><P><I>Materials and methods</I>: The levels of interleukin (IL)-6, monocyte chemotactic protein (MCP)-1, and intercellular adhesion molecule-1 (ICAM-1) from IL-1β-exposed human corneal fibroblasts were measured with enzyme-linked immunosorbent assays (ELISA). The regulatory mechanisms of CAPE on cellular signaling pathways were examined using Western blot and electrophoretic mobility shift assays. A functional validation was carried out by evaluating the inhibitory effects of CAPE on neutrophil and monocyte migration <I>in vitro</I>.</P><P><I>Results</I>: CAPE inhibited the expression of IL-6, MCP-1 and ICAM-1 induced by the pro-inflammatory cytokine IL-1β in corneal fibroblasts. The activation of AKT and NF-κB by IL-1β was markedly inhibited by CAPE, whereas the activity of mitogen-activated protein kinases (MAPKs) was not affected. CAPE significantly suppressed the IL-1β-induced migration of differentiated (d)HL-60 and THP-1 cells.</P><P><I>Discussion</I>: These anti-inflammatory effects of CAPE may be expected to inhibit the infiltration of leukocytes into the corneal stroma <I>in vivo</I>.</P>

      • Chronic alcohol consumption induces migration of IL-1R2+ monocytes from the bone marrow into the liver by neuro-immunologic pathway

        Young-Ri Shim,Hee-Hoon Kim,Keungmo Yang,Tom Ryu,Kyurae Kim,Sung Eun Choi,Minjeong Kim,Chae-Rin Woo,Young-Sun Lee,Won-Il Jeong 한국실험동물학회 2021 한국실험동물학회 학술발표대회 논문집 Vol.2021 No.7

        Liver is challenged by diverse detrimental substances through multiple metabolic processes, but it is less prone to inflammation. In chronic alcohol consumption, although the migration of monocytes from bone marrow (BM) into liver is increased, alcoholic hepatitis rarely occurs. Thus, we investigated the sub-population of liver macrophages showing anti-inflammatory roles through single-cell RNA sequencing (scRNA-Seq) after chronic EtOH-feeding. Interestingly, in scRNA-seq and flow cytometry analyses of hepatic macrophages, the phenotype of Ly6Clow (anti-inflammatory) cells was dramatically altered by ethanol intake. In particular, they were highly expressed interleukin-1 type II receptor (IL-1R2), a decoy receptor of IL-1β. Intriguingly, IL-1R2+ Ly6Clow macrophages showed decreased CX3CR1 expression, which was confirmed not only in the liver, but also BM and blood, suggesting monocytes from BM affected by ethanol might migrate into the liver. We found that the Leptin Receptor+ mesenchymal stromal cells (LepR+ MSCs), which were located around blood vessels expressing CX3CL1 to hold CX3CR1+ macrophages, could express alcohol dehydrogenase to metabolize ethanol in BM. Ethanol metabolism in LepR+ MSCs was induced both production of chemokines (CXCL9 and 10) and the excretion of glutamate via cystine-glutamate anti-porter xCT to recruit and activate the CXCR3+ BM NK cells to produce interferon-γ in a metabotropic glutamate receptor 5 (mGluR5)-dependent manner. Indeed, IFN-γ production was significantly decreased in EtOH-fed mice when we depleted mGluR5 in NK cells. In turn, NK cell-derived IFN-γ down-regulated CX3CR1 expression in BM Ly6Clow monocytes, consequently induced egress of Ly6Clow monocytes into the blood and migration into the liver to suppress alcoholic inflammation. In conclusion, glutamate of LepR+ MSCs imposed egress license on anti-inflammatory IL-1R2+ Ly6Clow monocytes through NK cell-derived IFN-γ-mediated suppression of CX3CR1, suggesting a potential therapeutic inter-organ crosstalk between BM and liver in alcoholic liver disease.

      • KCI등재

        Blockade of Retinol Metabolism Protects T Cell-Induced Hepatitis by Increasing Migration of Regulatory T Cells

        Lee, Young-Sun,Yi, Hyon-Seung,Suh, Yang-Gun,Byun, Jin-Seok,Eun, Hyuk Soo,Kim, So Yeon,Seo, Wonhyo,Jeong, Jong-Min,Choi, Won-Mook,Kim, Myung-Ho,Kim, Ji Hoon,Park, Keun-Gyu,Jeong, Won-Il Korean Society for Molecular and Cellular Biology 2015 Molecules and cells Vol.38 No.11

        Retinols are metabolized into retinoic acids by alcohol dehydrogenase (ADH) and retinaldehyde dehydrogenase (Raldh). However, their roles have yet to be clarified in hepatitis despite enriched retinols in hepatic stellate cells (HSCs). Therefore, we investigated the effects of retinols on Concanavalin A (Con A)-mediated hepatitis. Con A was injected into wild type (WT), Raldh1 knockout ($Raldh1^{-/-}$), $CCL2^{-/-}$ and $CCR2^{-/-}$ mice. For migration study of regulatory T cells (Tregs), we used in vivo and ex vivo adoptive transfer systems. Blockade of retinol metabolism in mice given 4-methylpyrazole, an inhibitor of ADH, and ablated Raldh1 gene manifested increased migration of Tregs, eventually protected against Con A-mediated hepatitis by decreasing interferon-${\gamma}$ in T cells. Moreover, interferon-${\gamma}$ treatment increased the expression of ADH3 and Raldh1, but it suppressed that of CCL2 and IL-6 in HSCs. However, the expression of CCL2 and IL-6 was inversely increased upon the pharmacologic or genetic ablation of ADH3 and Raldh1 in HSCs. Indeed, IL-6 treatment increased CCR2 expression of Tregs. In migration assay, ablated CCR2 in Tregs showed reduced migration to HSCs. In adoptive transfer of Tregs in vivo and ex vivo, Raldh1-deficient mice showed more increased migration of Tregs than WT mice. Furthermore, inhibited retinol metabolism increased survival rate (75%) compared with that of the controls (25%) in Con A-induced hepatitis. These results suggest that blockade of retinol metabolism protects against acute liver injury by increased Treg migration, and it may represent a novel therapeutic strategy to control T cell-mediated acute hepatitis.

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