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首页> 外文期刊>Journal of Immunological Methods >Centrifugation enhances integrin-mediated transduction of dendritic cells by conventional and RGD-modified adenoviral vectors.
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Centrifugation enhances integrin-mediated transduction of dendritic cells by conventional and RGD-modified adenoviral vectors.

机译:离心作用增强了常规和RGD修饰的腺病毒载体对整联蛋白介导的树突状细胞的转导。

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The level of antigen loading can impact on the capacity for dendritic cells (DC) to activate T cell responses. Several different approaches to adenoviral (Ad)-based transduction were therefore assessed for their effect on both transgene expression and T cell activation. While a conventional E1(-)/E3Delta Ad vector (Ad/GFP) produced a concentration-dependent expression of GFP, a modified vector expressing Arginine-Glycine-Aspartic Acid (RGD) sequence on its fiber knob (Ad-RGD/GFP) enhanced transgene expression by 9-20-fold at each MOI. The addition of centrifugal force (2000xg) during DC transduction with Ad/GFP also increased expression up to 20-fold. However, combining centrifugation with the Ad-RGD/GFP vector produced no effect on transduction rate and only a 1.5- to 2-fold increase in GFP expression, suggesting overlapping mechanisms of action. Consistent with this, exogenous RGD peptide blocked transduction regardless of the vector used, or the addition of centrifugal force, and transduction was primarily limited to DC expressing the CD51 integrin receptor. Ad vectors expressing ovalbumin (OVA) were used to assess transduced DC for their capacity to activate OVA-specific T cells. We observed a significant relationship between transgene expression and the capacity for T cell activation regardless of whether transgene expression was increased by using a higher MOI, an RGD-modified vector, or by employing centrifugal force. Furthermore, combining these approaches produced synergistic effects on T cell activation. We conclude that RGD-modified vectors and centrifugation both enhance DC transduction by increasing entry via integrin receptors and that the capacity for T cell activation can be optimized by combining approaches to achieve the highest possible level of transgene expression.
机译:抗原负载水平会影响树突状细胞(DC)激活T细胞反应的能力。因此,评估了几种不同的基于腺病毒(Ad)的转导方法对转基因表达和T细胞活化的影响。传统的E1(-)/ E3Delta Ad载体(Ad / GFP)产生GFP的浓度依赖性表达,而修饰的载体在其纤维瘤上表达精氨酸-甘氨酸-天冬氨酸(RGD)序列(Ad-RGD / GFP)在每个MOI中,转基因表达水平提高了9-20倍。在用Ad / GFP进行DC转导过程中增加离心力(2000xg)也使表达增加了20倍。但是,将离心与Ad-RGD / GFP载体结合使用对转导率没有影响,GFP表达仅增加1.5到2倍,表明作用机制重叠。与此相一致,无论使用何种载体,或外加离心力,外源RGD肽均会阻止转导,并且转导主要限于表达CD51整联蛋白受体的DC。表达卵清蛋白(OVA)的广告载体用于评估转导的DC激活OVA特异性T细胞的能力。我们观察到转基因表达与T细胞活化能力之间存在显着的关系,无论转基因表达是否通过使用更高的MOI,RGD修饰的载体或通过离心力而增加。此外,将这些方法结合起来可对T细胞活化产生协同作用。我们得出的结论是,RGD修饰的载体和离心都通过增加通过整联蛋白受体的进入来增强DC转导,并且可以通过组合实现最高水平的转基因表达的方法来优化T细胞活化的能力。

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