Oberholzer Andreas, Oberholzer Caroline, Efron Philip A, Scumpia Philip O, Uchida Takefumi, Bahjat Keith, Ungaro Ricardo, Tannahill Cynthia L, Murday Michelle, Bahjat Frances R, Tsai Van, Hutchins Beth, Moldawer Lyle L, Laface Drake, Clare-Salzler Michael J
Department of Surgery, University of Florida College of Medicine, Gainesville, Florida 32610, USA.
Shock. 2005 Jun;23(6):507-15.
Control of dendritic cell (DC) function is critical for strategies to modulate innate and acquired immune responses. We examined whether transduction of murine DCs with adenoviral vectors (Adv) expressing interleukin (IL)-10 could alter their phenotype and T cell stimulatory function. Murine bone marrow-derived DCs were transduced with AdV encoding human IL-10 or green fluorescent protein (GFP). Whereas transduction of immature DCs with AdV/GFP resulted in dose-dependent maturation, DCs transduced with Adv/IL-10 maintained an immature state with low major histocompatibility complex (MHC) class II, CD86, and IL-12 expression. The Adv/IL-10 transduced DCs were phenotypically unique, characterized by suppression of IL-12 expression, failure to stimulate Th1 or Th2 cytokine responses, and retained capacity to endocytose antigen. Importantly, Adv/IL-10-transduced DCs were biologically active in vivo, in that administration of these DCs into mice before a generalized peritonitis significantly improved survival. We conclude that Adv/IL-10 transduction of DCs provides an efficient means to modulate DC function. The capacity to modify DCs by adenoviral expression of IL-10 may provide a novel ex vivo or in vivo approach to mitigate acute and chronic inflammatory diseases like sepsis.
控制树突状细胞(DC)功能对于调节先天性和获得性免疫反应的策略至关重要。我们研究了用表达白细胞介素(IL)-10的腺病毒载体(Adv)转导小鼠DC是否会改变其表型和T细胞刺激功能。用编码人IL-10或绿色荧光蛋白(GFP)的AdV转导小鼠骨髓来源的DC。用AdV/GFP转导未成熟DC会导致剂量依赖性成熟,而用Adv/IL-10转导的DC则维持未成熟状态,主要组织相容性复合体(MHC)II类、CD86和IL-12表达较低。Adv/IL-10转导的DC在表型上是独特的,其特征在于抑制IL-12表达、未能刺激Th1或Th2细胞因子反应以及保留内吞抗原的能力。重要的是,Adv/IL-10转导的DC在体内具有生物活性,因为在全身性腹膜炎之前将这些DC给予小鼠可显著提高存活率。我们得出结论,Adv/IL-10转导DC提供了一种调节DC功能的有效手段。通过腺病毒表达IL-10来修饰DC的能力可能为减轻败血症等急性和慢性炎症性疾病提供一种新的体外或体内方法。