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通过用呼吸道合胞病毒对小鼠进行鼻内免疫诱导黏膜B细胞记忆

Induction of mucosal B-cell memory by intranasal immunization of mice with respiratory syncytial virus.

作者信息

Valosky Janine, Hishiki Haruka, Zaoutis Theoklis E, Coffin Susan E

机构信息

Division of Infectious Diseases, The Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.

出版信息

Clin Diagn Lab Immunol. 2005 Jan;12(1):171-9. doi: 10.1128/CDLI.12.1.171-179.2005.

Abstract

The capacity of live or inactivated respiratory syncytial virus (RSV) to induce B-cell memory in respiratory-associated lymphoid tissues of mice was examined. Eight weeks after primary inoculation with either live or inactivated RSV, adult BALB/c mice were challenged with 4x10(5) PFU of RSV. Protection from viral shedding and mucosal production of RSV-specific antibodies were examined at various time points after challenge. We found that primary immunization with live, but not inactivated, RSV induced complete and durable protection upon challenge within the upper and lower respiratory tract. Also, primary immunization with live, but not inactivated, RSV enhanced the production of mucosal RSV-specific immunoglobulin A (IgA) upon challenge. Secondary mucosal IgA responses were characterized by (i) the early production of mucosal IgA by B cells that reside in organized nasal-associated lymphoid tissues, cervical lymph nodes, and bronchial lymph nodes, and (ii) the subsequent production of RSV-specific IgA by mucosal effector tissues, such as the tracheal lamina propria and lung. These findings suggest that primary infection of mice with live RSV might induce mucosal IgA-committed memory B cells. A greater understanding of the characteristics of RSA-specific mucosal memory B cells may facilitate the development of an RSV vaccine.

摘要

研究了活的或灭活的呼吸道合胞病毒(RSV)在小鼠呼吸道相关淋巴组织中诱导B细胞记忆的能力。在用活的或灭活的RSV进行初次接种8周后,用4×10⁵ PFU的RSV对成年BALB/c小鼠进行攻击。在攻击后的不同时间点检测对病毒排出的保护作用以及RSV特异性抗体的黏膜产生情况。我们发现,用活的而非灭活的RSV进行初次免疫可在攻击后对上、下呼吸道诱导出完全且持久的保护作用。此外,用活的而非灭活的RSV进行初次免疫可在攻击后增强黏膜RSV特异性免疫球蛋白A(IgA)的产生。二次黏膜IgA反应的特征为:(i)存在于有组织的鼻相关淋巴组织、颈淋巴结和支气管淋巴结中的B细胞早期产生黏膜IgA,以及(ii)随后由黏膜效应组织(如气管固有层和肺)产生RSV特异性IgA。这些发现表明,用活的RSV初次感染小鼠可能会诱导黏膜IgA定向记忆B细胞。对RSV特异性黏膜记忆B细胞特征的更深入了解可能会促进RSV疫苗的研发。

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