出版國家:United States
出版周期:月刊
影響因子:3.136
研究領(lǐng)域:疫苗
5年影響因子:3.309
國外數(shù)據(jù)庫收錄:IM,3.136" />
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您現(xiàn)在的位置: 醫(yī)學(xué)全在線 > 醫(yī)學(xué)論文 > SCI期刊 > 正文:Human vaccines & immunotherapeutics if:3.136
    

Human vaccines & immunotherapeutics


Human vaccines & immunotherapeutics
影響因子: 3.136
I S S N: 1554-8600
出 版 社: Landes Bioscience
出 版 地: Georgetown, Tex
出版國家: United States
刊  期: 月刊
創(chuàng)刊時間: 2005
語  種: 英文
審稿周期: 平均2月
中科院分區(qū):
投稿命中率: 約50%
國外數(shù)據(jù)庫收錄: IM
中國收錄文章數(shù): 24
5年影響因子: 3.309
研究領(lǐng)域: 疫苗
官方鏈接: http://www.landesbioscience.com/journals/vaccines/
投稿須知: http://www.landesbioscience.com/journals/vaccines/

期刊介紹:

Since the introduction of DNA vaccines two decades ago, this attractive strategy has been hampered by its low immunogenicity in humans. Studies conducted to improve the immunogenicity of DNA vaccines have shown that understanding the mechanism of action of DNA vaccines might be the key to successfully improving their immunogenicity. Our current understanding is that DNA vaccines induce innate and adaptive immune responses in two ways: (1) encoded protein (or polypeptide) antigen(s) by the DNA plasmid can be expressed in stromal cells (i.e., muscle cells) as well as DCs, where these antigens are processed and presented to na?ve CD4 or CD8 T cells either by direct or cross presentation, respectively; and (2) the transfected DNA plasmid itself may bind to an un-identified cytosolic DNA sensor and activate the TBK1-STING pathway and the production of type I interferons (IFNs) which function as an adjuvant. Recent studies investigating double-stranded cytosolic DNA sensor(s) have highlighted new mechanisms in which cytosolic DNA may release secondary metabolites, which are in turn recognized by a novel DNA sensing machinery. Here, we discuss these new metabolites and the possibilities of translating this knowledge into improved immunogenicity for DNA vaccines.
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