1)  foot and mouth vaccine
口蹄疫苗
2)  vaccine of foot-and-mouth disease
口蹄疫苗
1.
This paper expounds the application of low temperature biology,introduces the progress of modern biological technology research in the world,expounds the new breakthroughs of assistant reproduction technology(ART)in China and the new changes of traditional flowers caused by adopting modern biological technology,and introduces the research progress of vaccine of foot-and-mouth disease in China.
论述了低温生物学的应用,介绍了世界各国在现代生物技术研究方面的进展,阐述了我国在辅助生殖医学技术上的新突破和采用现代生物技术对传统花卉带来的变化,介绍了我国猪口蹄疫苗的研究进展。
3)  FMD
口蹄疫
1.
Transformation and expression of P12A-3C gene of foot and mouth disease virus(FMDV) into transgenic plant Birdsfoot trefoil;
口蹄疫病毒P12A-3C免疫原基因在百脉根中的遗传转化与表达
2.
Immune reaction of two guinea pig strains to FMD vaccine;
2个品系豚鼠对口蹄疫疫苗的免疫反应
3.
Investigation of Immune Antibody Titer of Pig FMDV in Guangdong Province;
广东省猪群口蹄疫免疫抗体水平调查
4)  Foot-and-Mouth disease
口蹄疫
1.
With Kozak similar sequences of triple codon AAA:specifically enhancing the immunological results of Foot-and-Mouth disease DNA vaccine;
含三联密码AAA的Kozak类似序列特异性增强口蹄疫DNA疫苗的免疫效果
2.
Application of liquid-phase blocking ELISA in the detection of antibody levels against foot-and-mouth disease virus;
液相阻断ELISA在口蹄疫病毒抗体水平检测中的应用
3.
Advance in Transgenic Plant Edible Vaccine against Foot-and-mouth disease;
口蹄疫转基因植物可饲疫苗研究进展
5)  FMDV vp1
口蹄疫vp1
6)  FMDV
口蹄疫
1.
Establishment of solid-phase competition ELISA for measuring antibodies to Foot-and-Mouth disease (FMDV) type O;
O型口蹄疫病毒固相竞争ELISA抗体检测方法的建立
2.
The Preparation of Monoclonal Antibody against FMDV Type O/PanAsia and Differential Recognition of Antigenic Epitopes;
O型口蹄疫泛亚毒株单克隆抗体的制备及抗原表位差异分析
3.
Gene Cloning and Expression of the VP1 and 2VP1 Gene of FMDV;
口蹄疫病毒VP1基因C末端串连表达及其抗体ELISA方法的初步建立
参考词条
补充资料:口蹄疫苗
分子式:
CAS号:

性质:口蹄疫是一种高度传染的疾病,使世界各地的大约三十种偶蹄类动物受到威胁,对牛、羊、猪的威胁尤甚。预防口蹄疫的疫苗,由在幼仓鼠的肾细胞中生长的病毒失活制取。由于病毒存在多种型及亚型,所以要求疫苗具多价性,或要求疫苗能适用于某一特定疫区或突然蔓延的特定疫情。当前口蹄疫苗存在的问题是疫苗缺乏稳定性,需要冷藏保存,而且存在着因使用活疫苗反而导致暴发性疾病蔓延的可能性。因此,用分子生物学技术生产更稳定、安全的疫苗是很有吸引力的。用胰蛋白酶处理病毒可分解出一种称为VPI的蛋白质,用作疫苗后,其传染性显著降低。大剂量VPI能使猪获得一定的免疫力。现在通过基因工程技术已获得工程疫苗。

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