Murata Yukie, Amao Michiko, Yoneda Junya, Hamuro Junji
Basic Research Institute, Ajinomoto Central Research Laboratories, Ajinomoto Co. Inc., 1-1 Suzuki-cho, Kawasaki-ku, 210-0861, Kawasaki, Japan.
Mol Immunol. 2002 Feb;38(10):747-57. doi: 10.1016/s0161-5890(01)00111-0.
We have been proposing the functional distinction of two classes of macrophages (Mp), namely the reductive macrophages (RMp) with high intracellular content of glutathione (GSH) and the oxidative macrophages (OMp) with reduced content. At the same time we have been investigating the variation of RMp/OMp balance during aging of mice, especially in relation to the age related onset of autoimmune diseases. In this paper we have investigated the Th1/Th2 balance of thioredoxin (TRX) transgenic (Tg) mice, with prolonged life longevity, during aging in the context of the intracellular redox status of Mp, which has been hypothesized to be crucial in regulating the Th1/Th2 balance. It was confirmed that peritoneal resident Mp of Tg mice showed the higher GSH/GSSG ratios compared with that of age matched wild type (WT) mice. The predominance of RMp was associated with the sustained maintenance of Th1 prevalence during aging until 2 years in Tg mice, whereas WT littermates showed rapid polarization to Th2 around the age of 8 months. The Tg mice showed elevation of IFN-gamma and reduction of IL-10 with moderate change of IL-4 produced by CD4+ T cells. The WT mice showed inverse changes of IFN-gamma/IL-4 and IFN-gamma/IL-10 ratios during aging. In addition, IL-10 production by Mp was dramatically reduced in aged Tg mice. Thus, TRX Tg mice may be useful to investigate the contribution of the anti-oxidant defense mechanism during aging accompanied with increasing oxidative stress.
我们一直主张区分两类巨噬细胞(Mp)的功能,即细胞内谷胱甘肽(GSH)含量高的还原性巨噬细胞(RMp)和含量降低的氧化性巨噬细胞(OMp)。同时,我们一直在研究小鼠衰老过程中RMp/OMp平衡的变化,特别是与自身免疫性疾病的年龄相关性发病有关。在本文中,我们研究了硫氧还蛋白(TRX)转基因(Tg)小鼠在衰老过程中的Th1/Th2平衡,这些小鼠寿命延长,研究背景是Mp的细胞内氧化还原状态,据推测这对调节Th1/Th2平衡至关重要。已证实,与年龄匹配的野生型(WT)小鼠相比,Tg小鼠的腹膜驻留Mp显示出更高的GSH/GSSG比率。RMp的优势与Tg小鼠衰老至2岁期间Th1优势的持续维持有关,而WT同窝小鼠在8个月龄左右迅速向Th2极化。Tg小鼠中,CD4+T细胞产生的IL-4有适度变化,IFN-γ升高而IL-10降低。WT小鼠在衰老过程中IFN-γ/IL-4和IFN-γ/IL-10比率呈相反变化。此外,老年Tg小鼠中Mp产生的IL-10显著减少。因此,TRX Tg小鼠可能有助于研究在衰老过程中伴随着氧化应激增加时抗氧化防御机制的作用。