首页> 外文期刊>Folia histochemica et cytobiologica >Tissue localization of tumor antigen-loaded mouse dendritic cells applied as an anti-tumor vaccine and their influence on immune response.
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Tissue localization of tumor antigen-loaded mouse dendritic cells applied as an anti-tumor vaccine and their influence on immune response.

机译:载有肿瘤抗原的小鼠树突状细胞的组织定位用作抗肿瘤疫苗及其对免疫反应的影响。

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The recognition, internalization and intracellular processing of antigen are the main functions of dendritic cells (DCs). In the course of these processes, DCs differentiate and acquire the ability to produce cytokines responsible for polarization of the immunological response. Therefore, vaccination with tumor antigen-loaded DCs is one of the most promising approaches to induce tumor-specific immune response. The purpose of this study was to analyze the migratory abilities, from an injection site to tumor-draining lymph nodes (tLN), of DCs applied as an anti-tumor vaccine and their capacity for immune response activation. Mouse DCs of the established JAWS II cell line transduced with EGFP gene or ex vivo bone marrow-isolated DCs (BM-DCs) stained with intravital CFDA dye were loaded with MC38 colon carcinoma tumor lysate (TAg) and then administered peritumorally to MC38 tumor-bearing C57BL/6 mice. On the first, third, fifth and seventh days after injection the tumors, tLNs and spleens were examined. The TAg-loaded DCs migrated more effectively to the tLNs than did the unloaded control DCs; however, the majority of them remained in the tumor vicinity. Immunohistological analysis of the tumor tissues demonstrated that only TAg-loaded DCs activated an immune response. Seven days after DCs vaccine administration, numerous necrotic areas and some apoptotic bodies were observed in the tumor tissue. However, the anti-MC38 tumor cytotoxic activity of spleen and tLN cells from mice treated with both TAg-loaded and unloaded DCs reached a maximum on the fifth day after DC injection. Concluding, TAg-loaded DCs migrated more efficiently to tLNs and were more effective activators of local (but not systemic) cellular immune response than were unloaded DCs. We hypothesize that only the application of TAg-loaded DCs to tumor-bearing mice as an adjuvant supporting chemotherapy may activate a more effective anti-tumor response.
机译:抗原的识别,内化和细胞内加工是树突细胞(DC)的主要功能。在这些过程中,DC分化并获得了产生负责免疫反应极化的细胞因子的能力。因此,用负载肿瘤抗原的DC进行疫苗接种是诱导肿瘤特异性免疫反应的最有希望的方法之一。这项研究的目的是分析用作抗肿瘤疫苗的DC从注射部位到肿瘤引流淋巴结(tLN)的迁移能力及其激活免疫应答的能力。将用EGFP基因转导的已建立JAWS II细胞系的小鼠DC或用活体CFDA染料染色的离体骨髓分离的DC(BM-DC)加载MC38结肠癌肿瘤裂解液(TAg),然后对MC38肿瘤经皮携带C57BL / 6小鼠。注射后的第一天,第三天,第五天和第七天,检查肿瘤,tLN和脾脏。加载了TAg的DC比未加载的控制DC更有效地迁移到了tLN。但是,大多数仍留在肿瘤附近。肿瘤组织的免疫组织学分析表明,只有TAg负载的DC激活免疫反应。接种DC疫苗后7天,在肿瘤组织中观察到许多坏死区域和一些凋亡小体。但是,在注射DC的第5天,接受TAg加载和未加载DC的小鼠的脾脏和tLN细胞的抗MC38肿瘤细胞毒性活性达到最大值。结论是,与未加载的DC相比,加载TAg的DC更有效地迁移到tLNs,并且是局部(而非全身)细胞免疫应答的更有效激活剂。我们假设只有将载有TAg的DC用作荷瘤小鼠作为辅助化疗的佐剂才能激活更有效的抗肿瘤反应。

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