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首页> 外文期刊>Vaccine >Enhancing therapy of B16F10 melanoma efficacy through tumor vaccine expressing GPI-anchored IL-21 and secreting GM-CSF in mouse model.
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Enhancing therapy of B16F10 melanoma efficacy through tumor vaccine expressing GPI-anchored IL-21 and secreting GM-CSF in mouse model.

机译:通过在小鼠模型中表达GPI锚定的IL-21和分泌GM-CSF的肿瘤疫苗来增强B16F10黑色素瘤的疗效。

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摘要

In the present study, we developed the tumor vaccine expressing IL-21 in the GPI-anchored form together with secreting GM-CSFs and investigated its antitumor efficacy in C57BL/6 mouse model. The fusion genes containing IL-21 and the GPI anchor signal sequence were acquired by overlaping PCR, inserted into the downstream of two multi-clone sites in recombinant plasmid pRSC/GM-CSFs to form pRSC/IL-21-gpi-GM-CSFs that was transfected into the B16F10 cells. The tumor cell vaccine B16F10/IL-21-gpi-GM-CSFs was identified by reverse transcription PCR, IFA and FCM, respectively. The results showed that the pRSC/IL-21-gpi-GM-CSFs had no cell cycle and proliferative state impact on the B16F10 cells after transfected, and that the tumor vaccine B16F10/IL-21-gpi-GM-CSFs increased the cytotoxicities of NK cells and CD8+CTL, enhanced the level of serum IFN- gamma , augmented therapy of tumor effect and prolonged survival time in the tumor-bearing mice immunized with the tumor vaccine B16F10/IL-21-gpi-GM-CSFs. The data that we presented here provided a rationale and practical platform for clinical testing of enhancing cell therapy of B16F10 melanoma efficacy by modified tumor vaccine expressing GPI-anchored IL-21 and secreting GM-CSF.
机译:在本研究中,我们开发了以GPI锚定形式与分泌GM-CSF一起表达IL-21的肿瘤疫苗,并研究了其在C57BL / 6小鼠模型中的抗肿瘤功效。通过重叠PCR获得包含IL-21和GPI锚定信号序列的融合基因,将其插入重组质粒pRSC / GM-CSFs的两个多克隆位点的下游以形成pRSC / IL-21-gpi-GM-CSFs被转染到B16F10细胞中。通过逆转录PCR,IFA和FCM分别鉴定了肿瘤细胞疫苗B16F10 / IL-21-gpi-GM-CSF。结果表明,pRSC / IL-21-gpi-GM-CSFs转染后对B16F10细胞无细胞周期和增殖状态的影响,肿瘤疫苗B16F10 / IL-21-gpi-GM-CSFs增加了细胞毒性。 B16F10 / IL-21-免疫的荷瘤小鼠NK细胞和CD8 + CTL的表达增强了血清IFN-γ的水平,增强了肿瘤的治疗作用,延长了存活时间gpi-GM-CSF。我们在此提供的数据为通过表达GPI锚定的IL-21和分泌GM-CSF的改良肿瘤疫苗增强B16F10黑色素瘤细胞治疗疗效的临床试验提供了理论基础和实用平台。

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