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      • A Novel Small-Molecule Inhibitor Targeting the IL-6 Receptor β Subunit, Glycoprotein 130

        Hong, Soon-Sun,Choi, Jung Ho,Lee, Sung Yoon,Park, Yeon-Hwa,Park, Kyung-Yeon,Lee, Joo Young,Kim, Juyoung,Gajulapati, Veeraswamy,Goo, Ja-Il,Singh, Sarbjit,Lee, Kyeong,Kim, Young-Kook,Im, So Hee,Ahn, Sun The American Association of Immunologists, Inc. 2015 JOURNAL OF IMMUNOLOGY Vol.195 No.1

        <P>IL-6 is a major causative factor of inflammatory disease. Although IL-6 and its signaling pathways are promising targets, orally available small-molecule drugs specific for IL-6 have not been developed. To discover IL-6 antagonists, we screened our in-house chemical library and identified-LMT-28, a novel synthetic compound, as a candidate IL-6 blocker. The activity, mechanism of action, and direct molecular target of LMT-28 were investigated. A reporter gene assay showed that LMT-28 suppressed activation of STAT3 induced by IL-6, but not activation induced by leukemia inhibitory factor. In addition, LMT-28 downregulated IL-6-stimulated phosphorylation of STAT3, gp130, and JAK2 protein and substantially inhibited IL-6-dependent TF-1 cell proliferation. LMT-28 antagonized IL-6-induced TNF-alpha production in vivo. In pathologic models, oral administration of LMT-28 alleviated collagen-induced arthritis and acute pancreatitis in mice. Based on the observation of upstream IL-6 signal inhibition by LMT-28, we hypothesized IL-6, IL-6R alpha, or gp130 to be putative molecular targets. We subsequently demonstrated direct interaction of LMT-28 with gp130 and specific reduction of IL-6/IL-6R alpha complex binding to gp130 in the presence of LMT-28, which was measured by surface plasmon resonance analysis. Taken together, our data suggest that LMT-28 is a novel synthetic IL-6 inhibitor that functions through direct binding to gp130.</P>

      • SCIESCOPUSKCI등재

        Up - Regulation of Interleukin - 4 Receptor Expression by Interleukin - 4 and CD40 Ligation via Tyrosine Kinase - Dependent Pathway

        ( Hyun Il Kim,Eui Young So,Suk Ran Yoon,Mi Young Han,Choong Eun Lee ) 생화학분자생물학회 1998 BMB Reports Vol.31 No.1

        Recently a B cell surface molecule, CD40, has emerged as a receptor mediating a co-stimulatory signal for B cell proliferation and differentiation. To investigate the mechanism of synergy between interleukin-4(IL-4) and CD40 ligation in B cell activation we have examined the effect of CD40 cross-linking on the IL-40 receptor expression in human B cells using anti-CD40 antibody. We observed that IL-4 and anti-CD40 both induce IL-40 receptor gene expression with a rapid kinetics resulting in a noticeable accumulation of IL-4 receptor mRNA within 4 h. While IL-4 caused a dose-dependent induction of surface IL-4 receptor expression, the inclusion of anti-CD40 in the IL-4-treated culture, further up-regulated the IL-4-induced IL-4 receptor expression as analyzed by flow cytometry. Pretreatment of B cells with inhibitors of protein tyrosine kinase (PTK) resulted in asignificant inhibition of both the IL-4- and anti-CD40-induced IL-4 receptor mRNA levels, while protein kinase C (PKC) inhibitors had no effects. These results suggest that IL-4 and CD40 ligation generate B cell signals, which via PTK-dependent pathways, lead to the synergistic induction of IL-4 receptor gene expression. The rapid induction of IL-4 receptor gene expression through the tyrosine kinase-mediated signal transduction by B cell activating stimuli, would provide cells capacity for an efficient response to IL-4 in the early phase of IL-4action, and may in part constitute the molecular basis of the reported anti-CD40 co-stimulatory effect on the IL-4-induced response.

      • KCI등재

        Evaluation of ‘TNF-α, IL-6, and MMP-9’ Test Kit for Screening of Meibomian Dysfunction in Patients with Inflammatory Dry Eye Syndrome

        Min-Hye Park,Jung-Eun Park,Jang-Won Byun,Min-Ji Choi,Il-Hoon Cho,Myeong-Jin Jeong,Yoon-Jung Choy,Koon-Ja Lee 대한시과학회 2020 대한시과학회지 Vol.22 No.1

        목적 : 마이봄샘기능저하증(meibomian gland dysfunction, MGD)을 수반하는 염증성 건성안의 감별진단에 대한 ‘TNF-α, IL-6, MMP-9’ 검사키트의 유용성을 평가하였다. 방법 : 건성안 이외의 안질환이 없는 20~30대 중 OSDI 설문 검사에 따른 건성안 총 118안을 대상하였고, 결막낭 메니스커스로부터 소량의 눈물을 채취하여 TNF-α, IL-6 및 MMP-9 검사를 하였다. 각막염색과 결막충혈 이 모두 Grade 1 이상인 경우는 염증성 건성안으로, 마이봄샘폐쇄와 마이봄샘구멍막힘이 모두 grade 1 이상인 경우는 MGD 관련 건성안으로 평가하였다. 염증성 건성안 및 MGD와 TNF-α, IL-6, MMP-9과의 상관성은 카 이제곱검정(Chi-square test)으로 분석하였고, ‘TNF-α, IL-6, MMP-9’ 검사키트의 염증성 건성안과 MGD를 수반하는 염증성 건성안 감별능력은 ROC 커브를 이용하여 민감도, 특이도 및 AUC(Area under the curve)를 구하고 정확도를 평가하였다. 결과 : 염증성 건성안은 TNF-α와 IL-6와 유의한 상관성을 보였고(p<.050), ‘TNF-α, IL-6, MMP-9’ 검사 키트는 MMP-9 검사키트와 80.20%의 높은 일치도를 나타냈으나(p<.050), 염증성 건성안 감별에 대한 민감도, 특이도, 정확도는 MMP-9 검사키트보다 낮았다. MGD는 MMP-9 검사와 상관성을 보이지 않았고, TNF-α와 IL-6 검사와는 유의한 상관성을 보였으며, MGD 감별에 대한 민감도, 특이도, 정확도는 각각 85.50%, 34.70%, 0.601, 85.50%, 32.70%, 0.591로 나타났다. MGD 수반한 염증성 건성안 감별에 대한 ‘TNF-α, IL-6, MMP-9’ 검사키트의 민감도, 특이도 및 정확도는 100.00%, 34.10%, 0.670로 MMP-9 검사키트보다 더 높았다. 결론 : MGD 진단에는 TNF-α, IL-6 검사가 유용하며, ‘TNF-α, IL-6, MMP-9’ 검사키트는 MGD를 수반한 염증성 건성안 평가에 유용할 것으로 사료된다. Purpose : To evaluated the ‘TNF-α, IL-6, MMP-9’ test kit for screening of inflammatory dry eye and IDE (inflammatory dry eye) with MGD (meibomian gland dysfunction). Methods : A total of 118 dry eyes were selected using OSDI (ocular surface disease index) questionnaire among participated 20~30s without ophthalmologic diseases except for dry eye. Small amount of tear obtained from meniscus of the conjunctiva were tested with TNF-α, IL-6, and MMP-9 kit. IDE refers to the criteria which specifies the corneal staining and conjunctival hyperemia more than grade 1 and MGD refers to the criteria which specifies meibomian gland blockage and meibomian orifice obstruction with more than grade 1. Chi-square test was performed to analyze the correlation between the IDE, MGD and the results of ‘TNF-α, IL-6, MMP-9’ tests. and ROC (receiver operate characteristics) curve was used for the sensitivity, specificity and AUC (area under the curve) for the accuracy of ‘TNF-α, IL-6, MMP-9’ tests. Results : TNF-α and IL-6 were significantly correlated with IDE (p<.050) and ‘TNF-α, IL-6, MMP-9’ test kit showed a high agreement of 80.20% with MMP-9 test kit(p<.050) although the accuracy was lower than MMP-9 test kit. The MMP-9 showed no correlation with MGD, however TNF-α, IL-6 were significantly correlated with MGD (p<.050). sensitivity, specificity, and AUC of TNF-α, IL-6 tests for MGD were 85.50%, 34.70%, 0.601, 85.50%, 32.70%, and 0.591. The sensitivity, specificity, and AUC of ‘TNF-α, IL-6, MMP-9’ test kit for IDE with MGD were 100.00%, 34.10%, and 0.670, respectively, which shows higher accuracy than MMP-9. Conclusion : TNF-α and IL-6 tests are useful for the diagnosis of MGD, and ‘TNF-α, IL-6, MMP-9’ test kit is useful for screening IDE with MGD.

      • Up-Regulation of Interleukin-4 Receptor Expression by Interleukin-4 and CD40 Ligation via Tyrosine Kinase-Dependent Pathway

        Kim, Hyun-Il,So, Eui-Young,Yoon, Suk-Ran,Han, Mi-Young,Lee, Choong-Eun Korean Society for Biochemistry and Molecular Biol 1998 Journal of biochemistry and molecular biology Vol.31 No.1

        Recently a B cell surface molecule, CD40, has emerged as a receptor mediating a co-stimulatory signal for B cell proliferation and differentiation. To investigate the mechanism of synergy between interleukin-4 (IL-4) and CD40 ligation in B cell activation, we have examined the effect of CE40 cross-linking on the IL-4 receptor expression in human B cells using anti-CE40 antibody. We observed that IL-4 and anti-CD40 both induce IL-4 receptor gene expression with a rapid kinetics resulting in a noticeable accumulation of IL-4 receptor mRNA within 4 h. While IL-4 caused a dose-dependent induction of surface IL-4 receptor expression, the inclusion of anti-CD40 in the IL-4-treated culture, further up-regulated the IL-4-induced IL-4 receptor expression as analyzed by flow cytometry. Pretreatment of B cells with inhibitors of protein tyrosine kinase (PTK) resulted in a significant inhibition of both the IL-4- and anti-CD40-induced IL-4 receptor mRNA levels, while protein kinase C (PKC) inhibitors had no effects. These results suggest that IL-4 and CD40 ligation generate B cell signals, which via PTK-dependent pathways, lead to the synergistic induction of IL-4 receptor gene expression. The rapid induction of IL-4 receptor gene expression through the tyrosine kinase-mediated signal transduction by B cell activating stimuli, would provide cells capacity for an efficient response to IL-4 in the early phase of IL-4 action, and may in part constitute the molecular basis of the reported anti-CD40 co-stimulatory effect on the IL-4-induced response.

      • KCI등재

        Up-Regulation of Interleukin-4 Receptor Expression by Interleukin-4 and CD40 Ligation via Tyrosine Kinase-Dependent Pathway

        Lee, Choong-Eun,Kim, Hyun-Il,So, Eui-Young,Yoon, Suk-Ran,Han, Mi-Young The Korea Science and Technology Center 1998 BMB Reports Vol.31 No.1

        Recently a B cell surface molecule, CD40, has emerged as a receptor mediating a co-stimulatory signal for B cell proliferation and differentiation. To investigate the mechanism of synergy between interleukin-4(IL-4) and CD40 ligation in B cell activation we have examined the effect of CD40 cross-linking on the IL-40 receptor expression in human B cells using anti-CD40 antibody. We observed that IL-4 and anti-CD40 both induce IL-40 receptor gene expression with a rapid kinetics resulting in a noticeable accumulation of IL-4 receptor mRNA within 4 h. While IL-4 caused a dose-dependent induction of surface IL-4 receptor expression, the inclusion of anti-CD40 in the IL-4-treated culture, further up-regulated the IL-4-induced IL-4 receptor expression as analyzed by flow cytometry. Pretreatment of B cells with inhibitors of protein tyrosine kinase (PTK) resulted in asignificant inhibition of both the IL-4- and anti-CD40-induced IL-4 receptor mRNA levels, while protein kinase C (PKC) inhibitors had no effects. These results suggest that IL-4 and CD40 ligation generate B cell signals, which via PTK-dependent pathways, lead to the synergistic induction of IL-4 receptor gene expression. The rapid induction of IL-4 receptor gene expression through the tyrosine kinase-mediated signal transduction by B cell activating stimuli, would provide cells capacity for an efficient response to IL-4 in the early phase of IL-4action, and may in part constitute the molecular basis of the reported anti-CD40 co-stimulatory effect on the IL-4-induced response.

      • 인간 재조합 인터루긴-32 면역조절작용에 대한 유세포 분석

        이광수,김영관,채정일,심정현,김은미,강형식,김수현,윤도영,명평근 충남대학교 생물공학연구소 2006 생물공학연구지 Vol.12 No.-

        Xenotransplantation of porcine organs has the potential to overcome the severe shortage of human tissues and organ available for human transplantation. however, it remains various hurdles for clinical xenotransplantation. In pig and mouse xenotransplantation, porcine xenograft evoke a strong cellular rejection response in immunocompetent host and grafts are destroyed within a week. This cellular immune response could involved both T cells and NK cells. A number of groups have shown that human NK cells can recognize and damage porcine endothelial cells. In addition, human T cells can respond to porcine endothelial cells through both direct and indirect mechanisms. Cellular rejection of porcine tissues requires T cells, particularly CD4^(+) cells. A new cytokine recombinant human interleukin-32α,β(IL-32α,β) has a role innate and acquired immune system. In order to investigate the role of recombinant mouse IL-18 and recombinant human IL-32α,β in xenograft rejection, we transplanted the PK(15) cells to C57BL/6 mice with or without intraperitoneal injection of recombinant mouse IL-18 or recombinant human IL-32 α,β. It was analyzed the population of NK cell, T cell and B cell in the C57BL/6 mice transplanted with PK(15) cells and recombinant mouse IL-18 or recombinant human IL-32α,β by flow cytometry analysis. As a result, lymph node and thymus of PK15/IL18, PK15/IL32α and PK15/IL32β injected group were increased to T cell activation population than normal injected groups. CD8^(+) T cells were decreased in lymph node of PK15/IL18, PK15/IL32α and PK15/IL32β injected groups. CD4^(+) T cells were increased in lymph node cell of PK15/IL32α and PK15/IL32β injected group and also, B cell population were increased in lymph node cell and spleen of PK15/IL18, PK15/IL32α and PK15/IL32β injected group. Therefore, we suggest that recombinant mouse IL-18 and recombinant human IL-32α,β suppress xenograft rejection in cellular xenotransplantation.

      • SCIESCOPUSKCI등재

        Two-Track Medical Treatment Strategy According to the Clinical Scoring System for Chronic Rhinosinusitis

        Kim, Dong-Kyu,Kang, Seong Il,Kong, Il Gyu,Cho, Young Hoon,Song, Seul Ki,Hyun, Se Jin,Cho, Sung Dong,Han, Sang-Yoon,Cho, Seong-Ho,Kim, Dae Woo The Korean Academy of Asthma, Allergy and Clinical 2018 Allergy, Asthma & Immunology Research Vol.10 No.5

        <P><B>Purpose</B></P><P>The previously reported Japanese clinical scoring study (JESREC) suggests that chronic rhinosinusitis (CRS) can be divided into 4 subtypes according to the degree of eosinophilic CRS (ECRS) and offers the information regarding the prognosis of CRS to clinicians. However, this scoring system has not yet been validated by an immunological study and needs to provide treatment guidelines based on underlying immunologic profiles. We investigated the immunologic profile of each CRS subgroup according to the JESREC classification and suggest its clinical application.</P><P><B>Methods</B></P><P>A total of 140 CRS patients and 20 control subjects were enrolled. All patients were classified into 4 groups according to the JESREC (non-, mild, moderate and severe ECRS). Nasal tissues were analyzed for mRNA expression of major cytokines (IL-5, IL-10, IL-13, IL-17A, IL-22, IL-23p19, IFN-γ, periostin, thymic stromal lymphopoietin [TSLP] and ST2), major chemokines (CCL11, CCL24, CXCL1 and CXCL2), transcription factors (T-bet, GATA3, RORC and FOXP3) and COL1A1 for type I collagen. Protein levels of 3 major cytokines (IL-5, IL-17A and IFN-γ) were also measured by multiplex immunoassay. Principal component analysis (PCA) was conducted to investigate the overall profile of multiple mediators.</P><P><B>Results</B></P><P>The moderate/severe ECRS showed up-regulation of type 2-related mediators (IL-5, IL-13, periostin, TSLP and ST-2), whereas INF-γ (type 1 cytokine) and CXCL1 (neutrophil chemokine) expressions were increased in non-/mild ECRS compared with moderate/severe ECRS. The JESREC classification reflected an immunological endotype. In PCA data, PCA1 indicates a relative type 2 profile, whereas PCA2 represents a type 1/type 17-related profile. In this analysis, mild ECRS was indistinguishable from non-ECRS, whereas moderate to severe ECRS showed a distinct distribution compared with non-ECRS. The JESREC classification could be divided into 2 categories, non-/mild vs. moderate/severe ECRS based on underlying immunological analyses.</P><P><B>Conclusions</B></P><P>The CRS clinical scoring system from the JESREC study reflects an inflammatory endotype. However, the immunologic profile of mild ECRS was similar to that of non-ECRS. Therefore, we propose type 2-targeted medical treatment for moderate to severe ECRS and type 1/type 17-targeted for non-ECRS and mild ECRS as the first treatment option.</P>

      • SCISCIESCOPUS

        Gene therapy of intracranial glioma using interleukin 12-secreting human umbilical cord blood-derived mesenchymal stem cells.

        Ryu, Chung Heon,Park, Sang-Hoon,Park, Soon A,Kim, Seong Muk,Lim, Jung Yeon,Jeong, Chang Hyun,Yoon, Wan-Soo,Oh, Won-il,Sung, Young Chul,Jeun, Sin-Soo Mary Ann Liebert 2011 Human gene therapy Vol.22 No.6

        <P>Clinical trials of gene therapy using a viral delivery system for glioma have been limited. Recently, gene therapy using stem cells as the vehicles for delivery of therapeutic agents has emerged as a new treatment strategy for malignant brain tumors. In this study, we used human umbilical cord blood-derived mesenchymal stem cells (UCB-MSCs) as delivery vehicles with glioma-targeting capabilities, and modified interleukin-12 (IL-12p40N220Q; IL-12M) as a novel therapeutic gene. We also engineered UCB-MSCs to secret IL-12M (UCB-MSC-IL12M) via tetrameric cell-permeable peptide (4HP4)-mediated adenoviral transduction. We confirmed the migratory capacity of UCB-MSC-IL12M toward GL26 mouse glioma cells by an in vitro migration assay and in vivo injection of UCB-MSC-IL12M into the ipsilateral hemisphere of implanted gliomas in C57BL/6 mice. In vivo efficacy experiments showed that intratumoral injection of UCB-MSC-IL12M significantly inhibited tumor growth and prolonged the survival of glioma-bearing mice compared with control mice. Antitumor effects were associated with increased local IL-12M levels, followed by interferon-γ secretion and T-cell infiltration in intracranial gliomas, as well as antiangiogenesis. Interestingly, tumor-free mice after UCB-MSC-IL12M treatment were resistant to ipsilateral and contralateral tumor rechallenge, which was closely associated with tumor-specific long-term T-cell immunity. Thus, our results provide the rationale for designing novel experimental protocols to induce long-term antitumor immunity against intracranial gliomas using UCB-MSCs as an effective delivery vehicle for therapeutic cytokines including IL-12M.</P>

      • KCI등재

        Selective addition of CXCR3+CCR4-CD4+ Th1 cells enhances generation of cytotoxic T cells by dendritic cells in vitro

        Sung Hee Yoon,Sun Ok Yun,Jung Yong Park,Hee Yeun Won,Eun-Kyung Kim,Hyun-Jung Sohn,Hyun-Il Cho,김태규 생화학분자생물학회 2009 Experimental and molecular medicine Vol.41 No.3

        Increasing importance is being given to the stimulation of Th1 response in cancer immunotherapy because its presence can shift the direction of adaptive immune responses toward protective immunity. Based on chemokine receptor expression, CXCR3+CCR4-CD4+ T cells as Th1-type cells were investigated its capacity in monocyte-derived dendritic cell (DC) maturation and polarization, and induction of antigen specific cytotoxic T lymphocytes (CTL) in vitro. The levels of IL-4, IL-5 and IL-10 were decreased to the basal level compared with high production of IFN-γ, TNF-α, and IL-2 in CXCR3+CCR4-CD4+ T cells stimulated with anti-CD3 and anti-CD28 antibodies. Co-incubation of activated CD4+ or CXCR3+CCR4-CD4+ T cells with DC (CD4+/DC or CXCR3+CD4+/DC, respectively) particularly up-regulated IL-12 and CD80 expression compared with DC matured with TNF-α and LPS (mDC). Although there was no significant difference between the effects of the CXCR3+CCR4-CD4+ and CD4+ T cells on DC phenotype expression, CXCR3+CD4+/DC in CTL culture were able to expand number of CD8+ T cells and increased frequencies of IFN-γ secreting cells and overall cytolytic activity against tumor antigen WT-1. These results demonstrated that the selective addition of CXCR3+ CCR4- CD4+ T cells to CTL cultures could enhance the induction of CTLs by DC in vitro, and implicated on a novel strategy for adoptive T cell therapy. Increasing importance is being given to the stimulation of Th1 response in cancer immunotherapy because its presence can shift the direction of adaptive immune responses toward protective immunity. Based on chemokine receptor expression, CXCR3+CCR4-CD4+ T cells as Th1-type cells were investigated its capacity in monocyte-derived dendritic cell (DC) maturation and polarization, and induction of antigen specific cytotoxic T lymphocytes (CTL) in vitro. The levels of IL-4, IL-5 and IL-10 were decreased to the basal level compared with high production of IFN-γ, TNF-α, and IL-2 in CXCR3+CCR4-CD4+ T cells stimulated with anti-CD3 and anti-CD28 antibodies. Co-incubation of activated CD4+ or CXCR3+CCR4-CD4+ T cells with DC (CD4+/DC or CXCR3+CD4+/DC, respectively) particularly up-regulated IL-12 and CD80 expression compared with DC matured with TNF-α and LPS (mDC). Although there was no significant difference between the effects of the CXCR3+CCR4-CD4+ and CD4+ T cells on DC phenotype expression, CXCR3+CD4+/DC in CTL culture were able to expand number of CD8+ T cells and increased frequencies of IFN-γ secreting cells and overall cytolytic activity against tumor antigen WT-1. These results demonstrated that the selective addition of CXCR3+ CCR4- CD4+ T cells to CTL cultures could enhance the induction of CTLs by DC in vitro, and implicated on a novel strategy for adoptive T cell therapy.

      • SCOPUSKCI등재

        복막 중피 세포에서 IL-1β 자극에 의한 MCP-1과 RANTES의 생성

        송인숙,이상구,박정식,양원석,김순배,윤견일 대한신장학회 2000 Kidney Research and Clinical Practice Vol.19 No.5

        Human peritoneal mesothelial cells may have a great potential to secrete chemokines, growth factors, adhesion molecules, and various cytokines stimulated with proinflammatory cytokines during peritoneal infection. In the course of peritonitis, rapid neutrophil cell influx and subsequent monocytic cell influx can be observed. It has been demonstrated that human peritoneal mesothelial cells secrete a C-X-C chemokine, IL-8, which contributes to the recruitment of neutrophil influx during peritoneal infection. However, the production and role of C-C chemokines have not been fully defined in human peritoneal mesothelial cells. This study was performed to evaluate the production of MCP-1 and RANTES and their influence on the chemotaxis of monocytes when human peritoneal mesothelial cells were stimulated with IL-1β. Mesothelial cells obtained by enzymatic digestion of pieces of human omentum and stimulated with a various doses and times of IL-1β. The expression of MCP-1 and RANTES mRNA was measured by Northern bloassay and the expression of their proteins was analyzed by ELISA. To evaluate their function, monocytes chemotaxis assay was performed using a 48-well chemotactic chamber. Cultured human peritoneal mesothelial cells appeared to be polygonal at confluence using phase contrast microscope. Indirect immunofluorescent staining demonstrated that the mesothelial cells reacted positively with anti-cytokeratin antibody and anti-vimentin antibody. The expression of MCP-1 and RANTES mRNA increased in response to IL-1β in time and dose dependent manner. The protein levels of MCP-1 and RANTES with stimulation of 1.0ng/mL of IL-1β for 24 hours were higher than those without(30.0±2.22 vs 3.55±0.74ng/105cells and 1.53±0.41 vs 0.11±0.02ng/105cells respectively, p$lt;0.05, n=6). Chemotaxis assay showed that the supernatants from human peritoneal mesothelial cells with stimulation of IL-1β for 24 hours had significantly higher chemotaxis of monocytes than those without(71±3.4% vs 50±2.9%, p$lt;0.05, n=6). Coincubation of sup with stimulation and antibodies to MCP-1 or RANTES(20μL/mL, lOμL/mL, respectively) resulted in a significant inhibition of chemotaxis of monocytes by 33% and 12%(47±3.1% and 62±3.0% respectively, p$lt;0.05, n=6). Human peritoneal mesothelial cells are capable of the expression of MCP-1 and RANTES mRNA and the production of their proteins in response to IL-1β. Functionally, mesothelial cells derived Mand RANTES may contribute to the recruitment of monocytes and amplify the inflammatory process. Thus, human peritoneal mesothelial cells play an important role during peritoneal infection.

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