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Oral Delivery of a DNA Vaccine Expressing the PrM and E Genes: A Promising Vaccine Strategy against Flavivirus in Ducks

机译:口服递送表达PrM和E基因的DNA疫苗:鸭黄病毒的有前途的疫苗策略。

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摘要

A flavivirus, named duck tembusu virus (DTMUV), emerged in China in 2010. This virus has caused great economic losses in the poultry industry in China and may pose a threat to public health. As a safe, efficient and convenient vaccine development strategy, DNA-based vaccines have become a popular approach for both human and veterinary applications. Attenuated bacteria have been widely used as vehicles to deliver heterologous antigens to the immune system. Thus, an efficient and low-cost oral delivery DNA vaccine SL7207 (pVAX1-SME) based on envelope proteins (prM and E) of DTMUV and attenuated Salmonella typhimurium aroA- strain SL7207 was developed and evaluated in this study. The prM and E antigen proteins were successfully expressed from the vaccine SL7207 (pVAX1-SME) both in vitro and in vivo. High titers of the specific antibody against the DTMUV-E protein and the neutralizing antibody against the DTMUV virus were both detected after vaccination with SL7207 (pVAX1-SME). Ducks orally vaccinated with the SL7207 (pVAX-SME) vaccine were efficiently protected from lethal DTMUV infection in this study. Taken together, we demonstrated that prM and E proteins of DTMUV possess strong immunogenicity against the DTMUV infection. Moreover, an oral delivery of the DNA vaccine SL7207 (pVAX1-SME) utilizing Salmonella SL7207 was an efficient way to protect the ducks against DTMUV infection and provides an economic and fast vaccine delivery strategy for a large-scale clinical use.
机译:2010年,在中国出现了一种黄病毒,称为鸭瘟病毒(DTMUV)。这种病毒在中国的家禽业造成了巨大的经济损失,并可能对公众健康构成威胁。作为一种安全,有效和方便的疫苗开发策略,基于DNA的疫苗已成为人类和兽医应用的流行方法。减毒细菌已被广泛用作将异源抗原递送至免疫系统的载体。因此,开发并评估了一种基于DTMUV包膜蛋白(prM和E)和减毒鼠伤寒沙门氏菌aroA -菌株SL7207的高效低成本口服口服DNA疫苗SL7207(pVAX1-SME),并对此进行了评估。研究。从疫苗SL7207(pVAX1-SME)体内和体外成功表达了prM和E抗原蛋白。用SL7207(pVAX1-SME)疫苗接种后,都检测到高滴度的DTMUV-E蛋白特异性抗体和DTMUV病毒中和抗体。在这项研究中,口服SL7207(pVAX-SME)疫苗的鸭子得到了有效的保护,免受致命的DTMUV感染。两者合计,我们证明DTMUV的prM和E蛋白具有强大的针对DTMUV感染的免疫原性。此外,利用沙门氏菌SL7207口服递送DNA疫苗SL7207(pVAX1-SME)是保护鸭子免受DTMUV感染的有效方法,并为大规模临床应用提供了经济且快速的疫苗递送策略。

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