课题基金 / 基金详情

Development of an RSV Vaccine by Molecular Manipulation of the Viral Matrix Prot

Development of an RSV Vaccine by Molecular Manipulation of the Viral Matrix Prot
通过病毒基质蛋白的分子操作开发 RSV 疫苗
批准号:
8465563
负责人:
Antonius G Oomens
金额:
$24.74万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:

项目摘要

项目成果

Antonius G Oomens的其他基金

相似基金

相关文献

中文摘要
翻译
点击翻译按钮获取中文摘要
英文摘要
Human Respiratory Syncytial Virus (HRSV) is the single largest viral cause of pediatric bronchiolitis and pneumonia. With an estimated mortality of >100,000 children per year woridwide, development of an anti- HRSV vaccine is a priority. Among the current approaches, live-attenuation is attractive because, unlike inactivated vaccines, it promises to induce a broad and balanced immune response. However, live HRSV vaccines have so far been unable to fully prevent potentially dangerous side-effects in infants and children. The long-term objectives of this research are to overcome the safety challenges of live-attenuated HRSV vaccines and to contribute fundamental knowledge ofthe HRSV life cycle to design alternative anti-HRSV approaches. To meet these objectives, this proposal focusses on molecular manipulation of the viral matrix (M) protein to enhance safety of live-attenuated vaccines. The M protein is essential for replication and plays a prominent role in virion-assembly processes, many of which are highly relevant for the production, composition, release, and perhaps stability of virus particles. A better understanding of M functions therefore offers significant potential for vaccine advancements. A novel system was developed based on an infectious virus lacking the M gene (M-null) which allows rapid screening and manipulation of M functions. By providing plasmids expressing M mutants to cells infected with the M-null virus, a preliminary screen identified M mutations with potential to regulate the level of infectious progeny production of a live virus. This proposal utilizes the M-null based system to likewise identify and manipulate assembly-relevant M functions and test the translational potential in vivo, through the following Specific Aims (abbreviated): 1) Identify M functions and mutations, and the underlying mechanisms, that regulate virus assembly, composition, and release. 2) Determine the quality ofthe immune response to live viruses with transmission-deficiencies based on M mutations, in vitro and in vivo. 3) Test promising M mutant viruses for ability to protect mice after challenge with wildtype HRSV. Together these aims will raise our fundamental understanding of HRSV replication and test the potential of M protein manipulation to contribute to the generation of a safe live-attenuated vaccine.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
An authentic RSV virus-like particle vaccine to achieve broad and long-lasting protection
Development of an RSV Vaccine by Molecular Manipulation of the Viral Matrix Prot
Development of an RSV Vaccine by Molecular Manipulation of the Viral Matrix Prot
Development of an RSV Vaccine by Molecular Manipulation of the Viral Matrix Prot
海外基金