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1.
Chinese Journal of Pharmacology and Toxicology ; (6): 969-970, 2017.
Article in Chinese | WPRIM | ID: wpr-666588

ABSTRACT

OBJECTIVE To investigated the regulatory effect of paeoniflorin-6'-O-benzene sulfonate (CP-25) on B cell activating factor (BAFF)/BAFF receptor-nuclear factor of kappa B (NF-κB) signaling in B cell of collagen induced-arthritis (CIA) mice. METHODS Mice CIA was induced by injection of typeⅡcollagen (CⅡ). The arthritis index (AI) and swollen joint count (SJC) were assessed, and histopathology of spleen and joints were observed. The percentage of B cells subsets, BAFF receptor expressions were analyzed by flow cytometry. BAFF and immunoglobulin (Ig) levels were measured by protein antibody array. The expressions of TRAF2, MKK3, MKK6, p-P38, and p-NF-κB65 in NF-κB signaling mediated by BAFF were analyzed by western blot. RESULTS CP-25 decreased AI and SJC, restored abnormal weights, reduced thymus index and spleen index, inhibited T/B cells proliferation, alleviated the histopathology of spleen and joints in CIA mice. CP-25 also reduced high levels of serum BAFF and immunoglobulin, decreased CD19+B cells, CD19+CD27+B cells, and CD19-CD27+CD138+ plasma cells, inhibited BAFFR and TACI expressions, decreased the expressions of TRAF2, MKK3, MKK6, p-P38, and p-NF-κB65. Compared with biological agents etanercept and rituximab, CP-25 restored high T cells proliferation and percentages of B subsets to normal level, and recovered the high levels of IgA, IgD, IgG1, IgG2a and high expressions molecules in NF- κB signaling to normal levels. The action intensity of rituximab and etanercept was more strong than CP- 25. The inhibitor effects of rituximab and etanercept on AI and SJC, thymus index, proliferation of T cells and B cells subsets were strong, and down-regulated the indexes to under normal levels. CONCLUSION CP-25 might be a promising anti- inflammatory immune and regulation drug, which alleviated CIA and regulated the functions of B cells through BAFF/BAFF receptor-NF-κB signaling.

2.
Chinese Journal of Pharmacology and Toxicology ; (6): 986-987, 2017.
Article in Chinese | WPRIM | ID: wpr-666557

ABSTRACT

OBJECTIVE Ginsenoside metabolite compound K (CK) is a degradation product of ginsenoside in the intestine by bacteria. The anti-inflammatory and immunomodulatory activities of CK have been reported. This study investigated whether CK exerted its immunoregulatory effect through modulation of dendritic cells (DCs) function. METHODS In vivo, severity of collegen-induced arthritis (CIA), T cells and DCs subsets, phenotype of DC were assayed by flow cytometry, CCL19 and CCL21 level in lymph nodes assayed by ELISA. In vitro, bone marrow-derived DCs from normal mice were matured with lipopolysaccharide and treated with CK for 48 h. In vivo, bone marrow-derived DCs were generated from CIA mice before and 2 weeks into CK treatment. DCs were analyzed for migration, phenotype and T- cell stimulatory capacity. RESULTS CK alleviated the severity of CIA, decreased pDCs and mo-DCs, increased na?ve T cells in CIA mice lymph nodes, and suppressed CCL21 expression in lymph nodes. CK suppressed DCs migration induced by CCL21 and T cells-stimulatory capability of DC, down-regulated LPS-induced expression of CD80, CD86, MHCII and CCR7 on DCs. CONCLUSION This study elucidated the novel immunomodulatory property of CK via impairing function of DCs in priming T cells activation. These results provide an interesting novel insight into the potential mechanism by which CK contribute to the restoration of immunoregulation in autoimmune conditions.

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