Tajima Kenichirou, Amakawa Ryuichi, Ito Tomoki, Miyaji Michihiko, Takebayashi Masashi, Fukuhara Shirou
First Department of Internal Medicine, Kansai Medical University, 10-15 Fumizono-cho, Moriguchi City, Osaka 570-8506, Japan.
Immunology. 2003 Mar;108(3):321-8. doi: 10.1046/j.1365-2567.2003.01585.x.
Cyclosporin A (CsA) is a potent immuno-suppressant and is approved for the treatment of various disease conditions. The molecular biological mechanism of CsA has been investigated intensively in T cells and has been shown to involve the intracellular calcineurin pathway. Recently, it was reported that CsA has capacities to affect not only T cells but also antigen-presenting cells such as B cells and dendritic cells (DCs). DCs are a master regulator of immune responses that have an integral capacity to prime naive T cells. In the present study, we investigated the biological effects of CsA on human peripheral blood DC subsets: CD11c+ myeloid and CD11c- lymphoid subsets. CsA inhibited the up-regulation of co-stimulatory molecules induced with or without microbial stimuli and CD40L on both CD11c+ and CD11c- subsets. In addition, CsA negatively regulated the endocytic activity of CD11c+ DC during the immature state. CsA inhibited the interleukin-12 (IL-12) production, but augmented the IL-10 production from the LPS-stimulated CD11c+ subset, whereas CsA reduced the interferon-alpha (IFN-alpha) production from the CD11c- subset infected with Sendai virus (SV). Both the LPS-stimulated CD11c+ subset and SV-infected CD11c- subset preferentially induced the development of IFN-gamma-producing T helper-type 1 (Th1) cells. Pretreatment of these DC subsets with CsA inhibited the Th1 skewing. These findings suggested a DC-mediated mechanism of immunosuppression by CsA.
环孢素A(CsA)是一种强效免疫抑制剂,已被批准用于治疗多种疾病。CsA的分子生物学机制已在T细胞中得到深入研究,并且已证明其涉及细胞内钙调神经磷酸酶途径。最近,有报道称CsA不仅能够影响T细胞,还能影响抗原呈递细胞,如B细胞和树突状细胞(DCs)。DCs是免疫反应的主要调节因子,具有启动初始T细胞的完整能力。在本研究中,我们研究了CsA对人外周血DC亚群(CD11c +髓样亚群和CD11c -淋巴样亚群)的生物学作用。CsA抑制了在有或没有微生物刺激情况下诱导的共刺激分子的上调以及CD11c +和CD11c -亚群上CD40L的表达。此外,CsA在未成熟状态下对CD11c + DC的内吞活性具有负调节作用。CsA抑制白细胞介素-12(IL-12)的产生,但增加了脂多糖刺激的CD11c +亚群中IL-10的产生,而CsA降低了感染仙台病毒(SV)的CD11c -亚群中干扰素-α(IFN-α)的产生。脂多糖刺激的CD11c +亚群和感染SV的CD11c -亚群均优先诱导产生干扰素-γ的T辅助1型(Th1)细胞的发育。用CsA预处理这些DC亚群可抑制Th1偏向。这些发现提示了CsA通过DC介导的免疫抑制机制。