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1)  foot-and-mouth disease vaccine
口蹄病疫苗
2)  foot and mouth vaccine
口蹄疫苗
3)  FMD vaccine
口蹄疫疫苗
1.
Virulence detection of challenge virus on guinea pigs used as model animals for potency tests of FMD vaccine and the freeze-drying tests of FMD virus;
口蹄疫疫苗效检模型动物测毒及口蹄疫种毒冻干试验
2.
Immunological stress of swine\'s FMD vaccine is a suffering problem in the pig fanning industry.
猪口蹄疫疫苗的免疫应激一直困扰养猪业的生产难题,为探讨ASAP-1抗免疫应激效果,本研究选取15头仔猪,随机分为3组,分别为生理盐水组(A组)、口蹄疫疫苗组(B组)和口蹄疫疫苗+抗免疫应激组(C组),分别测定其对仔猪生长性能,激素水平(COR)、血液生理生化指标以及抗体水平的影响。
4)  inactivated foot-and-mouth disease vaccine
口蹄疫灭活疫苗
1.
Enhancement of bursin on inactivated foot-and-mouth disease vaccine in piglets To evaluate the effects of inactivated foot-and-mouth disease vaccine co-administrated with natural extracted bursin(10μg/mL) on level of the antibody against foot-and-mouth disease virus(FMDV) and weight of piglets,45-day-old health piglets were randomly divided into groups I,.
囊素对猪口蹄疫O型灭活疫苗的免疫增强效果的影响 天然提取囊素(10μg/mL)和O型口蹄疫灭活疫苗协同免疫45日龄仔猪,研究其对O型口蹄疫灭活疫苗免疫效果及对仔猪增重的影响。
5)  foot and mouth disease vaccine
猪口蹄疫疫苗
1.
In order to effectively prevent and control the occurrence and prevalence of foot and mouth disease(FMD) in swine farms, we studied on the immunization procedure of the foot and mouth disease as well as the feasibility of the simultaneous immunization with the foot and mouth disease vaccines and classical swine fever vaccines.
本实验对规模化养猪场的猪口蹄疫疫苗免疫程序进行研究,同时研究口蹄疫疫苗和猪瘟疫苗的同时免疫的可行性,对于规模化猪场提高口蹄疫疫苗抗体免疫水平,有效预防口蹄疫有重要意义。
6)  foot and mouth disease virus
口蹄疫病毒
1.
Progress on Structure and Function of Leader Proteinase of Foot and mouth disease virus;
口蹄疫病毒前导蛋白结构及功能研究进展
2.
Construction and Expression of Enhanced Green Fluorescent Protein with Gene of 3ABC of Foot and mouth disease virus;
口蹄疫病毒3ABC绿色荧光蛋白载体构建及表达
3.
Construction of Recombinant Adenovirus Expression Multiple Epitopes of Foot and Mouth Disease Virus
表达口蹄疫病毒多表位基因重组腺病毒的构建
补充资料:口蹄疫苗
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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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