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Novel Approaches to the Prevention and Treatment of Rabies 预防和治疗狂犬病的新方法
Pub Date : 2015-04-01 DOI: 10.19070/2330-0027-150002
Z. Fu, Gnanadurai Cw, Huang Ct, Kumar D
Rabies is a highly lethal disease caused by the neurotropic rabies virus (RABV), and it remains an important public health problem globally. Effective vaccines have been developed for pre- and post-exposure prophylaxis (PEP). PEP is only effective if it is initiated promptly after recognizing exposure. Once neurological symptoms develop, however, it is widely accepted that there is no effective treatment available. Recent studies indicate that the presence of RABV-specific immunity (i.e. Virus neutralizing antibodies, VNA) and the transient enhancement of the BBB permeability are absolutely required for effective virus clearance from the CNS. In principle, it has been shown in mice using various live-attenuated RABVs or recombinant RABVs expressing three copies of the G or expressing chemokine/cytokines, which can induce high levels of VNA in the serum and also capable of transiently enhancing the BBB permeability that it is possible to clear the virus from CNS. Also, it has been demonstrated that, intravenous administration of VNA together with MCP-1 (shown to transiently open up BBB) can clear RABV from the CNS in both immunocompetent and immunocompromised mice, as late as 5 days after lethal challenge. Novel therapeutic approaches aimed at allowing the peripheral VNA to cross the BBB by administration of the VNA in combination with biological or chemical agents that can transiently open up the BBB would be useful to establish an effective therapy for rabies in humans. In this review, we focus on the some of the approaches that can be used to meet the challenges in the field of rabies treatment.
狂犬病是由嗜神经性狂犬病毒(RABV)引起的一种高致死率疾病,是全球性的重大公共卫生问题。有效的疫苗已经开发出来用于暴露前和暴露后预防。PEP只有在发现暴露后立即开始才有效。然而,一旦出现神经系统症状,人们普遍认为没有有效的治疗方法。最近的研究表明,rabv特异性免疫(即病毒中和抗体,VNA)的存在和血脑屏障通透性的短暂增强是有效清除中枢神经系统病毒的绝对必要条件。原则上,在小鼠中使用各种减毒活rabv或表达三拷贝G或表达趋化因子/细胞因子的重组rabv,可以在血清中诱导高水平的VNA,也能够短暂地增强血脑屏障的渗透性,从而有可能从中枢神经系统清除病毒。此外,研究表明,静脉注射VNA和MCP-1(显示可短暂打开血脑屏障)可在致死性攻击后5天内清除免疫功能正常和免疫功能低下小鼠的中枢神经系统中的RABV。新的治疗方法旨在让外周VNA通过血脑屏障,通过与生物或化学药物联合使用,可以瞬间打开血脑屏障,这将有助于建立一种有效的治疗人类狂犬病的方法。在这篇综述中,我们重点介绍了一些可以用来应对狂犬病治疗领域挑战的方法。
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引用次数: 9
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International journal of virology studies & research
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