Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, AB, Canada.
J Pharm Pharm Sci. 2010 Feb 2;13(1):21-6. doi: 10.18433/j37598.
Tumors can escape immune eradication by harnessing dendritic cell (DC) maturation. However, DC types used as in vitro models to study tumor-mediated immunosuppression possess fundamental variability that could influence research outcomes. Therefore, we assessed the behavior of two distinct murine DC models upon exposure to tumor-conditioned medium of B16.F10 melanoma (B16-CM).
Using primary bone-marrow derived dendritic cells (BMDCs) or immortalized DC2.4 cell line, we evaluated the level of signal transducer and activator of transcription 3 (STAT3) phosphorylation by Western blot as a molecular parameter. We also examined the surface expression of co-stimulatory molecules on DCs by flow cytometry as a phenotypic parameter.
Our results revealed critical discrepancies between the two models in response to tumor-conditioned medium. While conditioned medium was able to induce STAT3 phosphorylation in BMDCs, it did not significantly induce STAT3 phosphorylation in DC2.4 cell line. Moreover, only in BMDCs, the expression of CD86 and CD40 was remarkably downregulated by B16-CM and was not totally recovered after LPS stimulation. In contrast, DC2.4 cells did not show any signs of harnessed maturation upon exposure to B16-CM.
In order to study the effect of tumor-mediated immunosuppression on DC maturation in vitro via tumor-induction of STAT3 activation, primary BMDCs are more reliable as a model than DC2.4.
肿瘤可以利用树突状细胞 (DC) 的成熟来逃避免疫清除。然而,用于研究肿瘤介导的免疫抑制的 DC 类型具有基本的可变性,这可能会影响研究结果。因此,我们评估了两种不同的小鼠 DC 模型在暴露于 B16.F10 黑色素瘤 (B16-CM) 肿瘤条件培养基时的行为。
使用原代骨髓来源的树突状细胞 (BMDCs) 或永生化的 DC2.4 细胞系,我们通过 Western blot 评估信号转导和转录激活因子 3 (STAT3) 磷酸化的水平作为分子参数。我们还通过流式细胞术检查了 DC 表面共刺激分子的表达作为表型参数。
我们的结果揭示了两种模型对肿瘤条件培养基的反应存在关键差异。虽然条件培养基能够诱导 BMDCs 中的 STAT3 磷酸化,但它不能显著诱导 DC2.4 细胞系中的 STAT3 磷酸化。此外,只有在 BMDCs 中,B16-CM 可显著下调 CD86 和 CD40 的表达,且在 LPS 刺激后不能完全恢复。相比之下,暴露于 B16-CM 的 DC2.4 细胞没有表现出任何成熟的迹象。
为了通过肿瘤诱导的 STAT3 激活在体外研究肿瘤介导的免疫抑制对 DC 成熟的影响,原代 BMDCs 比 DC2.4 更可靠作为模型。