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Immunological properties and vaccine efficacy of murine dendritic cells simultaneously expressing melanoma-associated antigen and interleukin-12

机译:同时表达黑色素瘤相关抗原和白介素12的鼠树突状细胞的免疫学特性和疫苗功效

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Interleukin (IL)-12 is a key factor for inducing cellular immune responses, which play a central role in the eradication of cancer. In the present study, in order to create a dendritic cell (DC)-based vaccine capable of positively skewing immune response toward a cellular immunity-dominant state, we analyzed immunological characteristics and vaccine efficacy of DCs cotransduced with melanoma-associated antigen (gp100) and IL-12 gene (gp100+IL12/DCs) by using RGD fiber-mutant adenovirus vector (AdRGD), which enables highly efficient gene transduction into DCs. gp100+IL12/DCs could simultaneously express cytoplasmic gp100 and secretory IL-12 at levels comparable to DCs transduced with each gene alone. In comparison with DCs transduced with gp100 alone (gp100/DCs), upregulation of major histocompatibility complex class I, CD40, and CD86 molecules on the cell surface and more potent T-cell-stimulating ability for proliferation and interferon- secretion were observed as characteristic changes in gp100+IL12/DCs. In addition, administration of gp100+IL12/DCs, which were prepared by a relatively low dose of AdRGD-IL12, could induce more potent tumor-specific cellular immunity in the murine B16BL6 melanoma model than vaccination with gp100/DCs. However, antitumor effect and B16BL6-specific cytotoxic T-lymphocyte activity in mice vaccinated with gp100+IL12/DCs diminished with increasing AdRGD-IL12 dose during gene transduction, and paralleled the decrease in presentation levels via MHC class I molecules for antigen transduced with another AdRGD. Collectively, our results suggested that optimization of combined vector dose was required for development of a more efficacious DC-based vaccine for cancer immunotherapy, which relied on genetic engineering to simultaneously express tumor-associated antigen and IL-12.
机译:白细胞介素(IL)-12是诱导细胞免疫反应的关键因素,其在根除癌症中起着核心作用。在本研究中,为了创建能够积极偏向细胞免疫优势状态的免疫应答的基于树突细胞(DC)的疫苗,我们分析了与黑素瘤相关抗原(gp100)共转导的DC的免疫学特征和疫苗功效通过使用RGD纤维突变腺病毒载体(AdRGD)和IL-12基因(gp100 + IL12 / DCs),可以将基因高效转导到DC中。 gp100 + IL12 / DCs可以同时表达细胞质gp100和分泌性IL-12,其水平可与每个基因单独转导的DC相当。与单独用gp100转导的DC(gp100 / DC)相比,特征在于主要的组织相容性复合物I类,CD40和CD86分子在细胞表面上调,并且具有更强的T细胞刺激增殖和干扰素分泌的能力gp100 + IL12 / DC的变化。另外,通过用相对低剂量的AdRGD-IL12制备的gp100 + IL12 / DCs的给药,与用gp100 / DCs接种相比,可以在鼠B16BL6黑素瘤模型中诱导更有效的肿瘤特异性细胞免疫。然而,在基因转导过程中,随着AdRGD-IL12剂量的增加,用gp100 + IL12 / DC接种的小鼠的抗肿瘤作用和B16BL6特异性细胞毒性T淋巴细胞活性降低,并且与通过MHC I类分子对抗原转导的抗原呈递水平的降低相平行。 AdRGD。总体而言,我们的结果表明,开发一种更有效的基于DC的用于癌症免疫疗法的疫苗需要优化组合载体的剂量,该疫苗依赖基因工程来同时表达与肿瘤相关的抗原和IL-12。

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