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编码小鼠粒细胞-巨噬细胞集落刺激因子的质粒可增强疟疾DNA疫苗的保护作用。

A plasmid encoding murine granulocyte-macrophage colony-stimulating factor increases protection conferred by a malaria DNA vaccine.

作者信息

Weiss W R, Ishii K J, Hedstrom R C, Sedegah M, Ichino M, Barnhart K, Klinman D M, Hoffman S L

机构信息

Malaria Program, Naval Medical Research Institute, Bethesda, MD 20889, USA.

出版信息

J Immunol. 1998 Sep 1;161(5):2325-32.

PMID:9725227
Abstract

Using the murine parasite Plasmodium yoelii (Py) as a model for malaria vaccine development, we have previously shown that a DNA plasmid encoding the Py circumsporozoite protein (PyCSP) can protect mice against sporozoite infection. We now report that mixing a new plasmid PyCSP1012 with a plasmid encoding murine granulocyte-macrophage colony-stimulating factor (GM-CSF) increases protection against malaria, and we have characterized in detail the increased immune responses due to GM-CSF. PyCSP1012 plasmid alone protected 28% of mice, and protection increased to 58% when GM-CSF was added (p < 0.0001). GM-CSF plasmid alone did not protect, and control plasmid expressing inactive GM-CSF did not enhance protection. GM-CSF plasmid increased Abs to PyCSP of IgG1, IgG2a, and IgG2b isotypes, but not IgG3 or IgM. IFN-gamma responses of CD8+ T cells to the PyCSP 280-288 amino acid epitope increased but CTL activity did not change. The most dramatic changes after adding GM-CSF plasmid were increases in Ag-specific IL-2 production and CD4+ T cell proliferation. We hypothesize that GM-CSF may act on dendritic cells to enhance presentation of the PyCSP Ag, with enhanced IL-2 production and CD4+ T cell activation driving the increases in Abs and CD8+ T cell function. Recombinant GM-CSF is already used in humans for medical purposes, and GM-CSF protein or plasmids may be useful as enhancers of DNA vaccines.

摘要

以鼠疟原虫约氏疟原虫(Py)作为疟疾疫苗研发的模型,我们之前已经表明,编码Py环子孢子蛋白(PyCSP)的DNA质粒可保护小鼠免受子孢子感染。我们现在报告,将新质粒PyCSP1012与编码鼠粒细胞-巨噬细胞集落刺激因子(GM-CSF)的质粒混合可增强对疟疾的保护作用,并且我们已经详细表征了由于GM-CSF导致的免疫反应增强。单独的PyCSP1012质粒可保护28%的小鼠,添加GM-CSF后保护率提高到58%(p<0.0001)。单独的GM-CSF质粒没有保护作用,表达无活性GM-CSF的对照质粒也没有增强保护作用。GM-CSF质粒增加了IgG1、IgG2a和IgG2b同种型针对PyCSP的抗体,但没有增加IgG3或IgM。CD8+T细胞对PyCSP 280-288氨基酸表位的IFN-γ反应增加,但CTL活性没有变化。添加GM-CSF质粒后最显著的变化是抗原特异性IL-2产生增加和CD4+T细胞增殖增加。我们推测GM-CSF可能作用于树突状细胞以增强PyCSP抗原的呈递,IL-2产生增加和CD4+T细胞活化驱动抗体和CD8+T细胞功能增加。重组GM-CSF已在人类医学中使用,GM-CSF蛋白或质粒可能作为DNA疫苗的增强剂有用。

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