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唑来膦酸,一种氨基双膦酸盐,调节人树突状细胞的分化和成熟。

Zoledronic acid, an aminobisphosphonate, modulates differentiation and maturation of human dendritic cells.

机构信息

Department of Radiation Oncology, Mackay Memorial Hospital, Taipei, Taiwan.

出版信息

Immunopharmacol Immunotoxicol. 2009;31(3):499-508. doi: 10.1080/08923970902814103.

Abstract

Zoledronic acid (ZOL), an effective nitrogen-containing bisphosphonate against excessive bone loss, has been shown affecting the function of cells of both innate and acquired immunity. In this study, we tested the effect of ZOL on differentiation and maturation of human myeloid dendritic cells (DC). When ZOL (1.1 to 10 microM) was added to the culture of starting monocytes, but not to immature DC, the recovery rate of DC was markedly reduced in a concentration-dependent manner. The mature DC differentiated in the presence of ZOL had fewer and shorter cell projections. ZOL treatment affected DC differentiation and maturation in terms of lower expression of CD1a, CD11c, CD83, CD86, DC-SIGN, HLA-DR, and, in contrast, higher expression of CD80. IL-10 production by DC was inhibited by ZOL treatment whereas IL-12p70 secretion remained unchanged. Interestingly, ZOL augmented the allostimulatory activity of DC on naive CD4(++)CD45(+)RA(++) T cells in terms of their proliferation and interferon-gamma production. Addition of geranylgeraniol abrogated the effect of ZOL on DC differentiation and prenylation of Rap1A. It suggests that ZOL redirects DC differentiation toward a state of atypical maturation with allostimulatory function and this effect may go through prevention of Rap1A prenylation.

摘要

唑来膦酸(zoledronic acid,ZOL)是一种有效的含氮双膦酸盐,可抑制过度的骨质流失,其可影响固有免疫和获得性免疫细胞的功能。在本研究中,我们检测了唑来膦酸对人髓系树突状细胞(dendritic cells,DC)分化和成熟的影响。当唑来膦酸(1.1 至 10 μM)添加到起始单核细胞的培养物中时,但不在未成熟的 DC 中添加时,DC 的恢复率呈浓度依赖性显著降低。在唑来膦酸存在的情况下分化的成熟 DC 的细胞突起更少且更短。唑来膦酸处理影响 DC 分化和成熟,表现为 CD1a、CD11c、CD83、CD86、DC-SIGN、HLA-DR 表达降低,而 CD80 表达升高。唑来膦酸处理抑制了 DC 的 IL-10 产生,而 IL-12p70 的分泌保持不变。有趣的是,唑来膦酸增强了 DC 对幼稚 CD4(++)CD45(+)RA(++)T 细胞的同种刺激活性,表现为增殖和干扰素-γ的产生增加。香叶基香叶基焦磷酸的添加消除了唑来膦酸对 DC 分化和 Rap1A 异戊烯基化的影响。这表明唑来膦酸将 DC 分化重定向为具有同种刺激功能的非典型成熟状态,这种作用可能通过阻止 Rap1A 异戊烯基化来实现。

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