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热灭活轮状病毒疫苗在小鼠中的免疫原性

Immunogenicity of a thermally inactivated rotavirus vaccine in mice.

作者信息

Jiang Baoming, Wang Yuhuan, Saluzzo Jean-Francois, Bargeron Kristina, Frachette Marie-Joelle, Glass Roger I

机构信息

Gastroenteritis and Respiratory Virus Laboratory Branch, Division of Viral Diseases, Centers for Disease Control and Prevention, Atlanta, Georgia 30333, USA.

出版信息

Hum Vaccin. 2008 Mar-Apr;4(2):143-7. doi: 10.4161/hv.4.2.5263. Epub 2007 Nov 4.

Abstract

Current approaches to the prevention of severe rotavirus diarrhea and deaths in children have all been through the use of live oral vaccines. To develop a safe and effective inactivated rotavirus vaccine (IRV), a new simple, rapid and robust method for the inactivation is critical and essential because chemical inactivation commonly used for a number of killed vaccines has been a challenge and problematic for rotavirus. We have examined an array of thermal conditions and demonstrated that purified YK-1 rotavirus in diluent buffer can be completely inactivated by heat treatment, as evidenced by the lack of virus growth in two successive passages in cell culture. Unlike chemical treatment that often causes physical and biochemical damages to viruses, thermally inactivated rotavirus particles maintained their structural, biochemical and antigenic integrity. A two-dose intramuscular administration of thermally inactivated YK-1 rotavirus without adjuvant resulted in high titers of total and neutralizing antibody in serum of mice. Adjuvant Al(OH)(3) further led to enhanced antibody titers and also dramatically lowered the amount of antigens in the vaccine formulation. Our results demonstrate the potential of heat inactivation as a novel approach to the manufacture of a safe and efficacious parenteral rotavirus vaccine, which should serve as an important addition to and back up for live oral rotavirus vaccine in children.

摘要

目前预防儿童严重轮状病毒腹泻和死亡的方法均通过使用口服活疫苗。要开发一种安全有效的灭活轮状病毒疫苗(IRV),一种新的简单、快速且可靠的灭活方法至关重要,因为常用于多种灭活疫苗的化学灭活对轮状病毒而言一直是个挑战且存在问题。我们研究了一系列热条件,并证明稀释缓冲液中的纯化YK-1轮状病毒可通过热处理完全灭活,细胞培养中连续两代无病毒生长即为证明。与经常对病毒造成物理和生化损伤的化学处理不同,热灭活的轮状病毒颗粒保持了其结构、生化和抗原完整性。无佐剂的热灭活YK-1轮状病毒两剂肌肉注射可使小鼠血清中产生高滴度的总抗体和中和抗体。佐剂氢氧化铝进一步提高了抗体滴度,还显著降低了疫苗制剂中的抗原量。我们的结果证明了热灭活作为一种制造安全有效非口服轮状病毒疫苗的新方法的潜力,它应成为儿童口服活轮状病毒疫苗的重要补充和后备。

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