Kim Su-Mi, Park Jong-Hyeon, Lee Kwang-Nyeong, Kim Se-Kyung, You Su-Hwa, Kim Taeseong, Tark Dongseob, Lee Hyang-Sim, Seo Min-Goo, Kim Byounghan
Foot-and-Mouth Disease Division, Animal and Plant Quarantine Agency, Ministry of Agriculture, Food and Rural Affairs, Anyang, Gyeonggi-do, Republic of Korea
Foot-and-Mouth Disease Division, Animal and Plant Quarantine Agency, Ministry of Agriculture, Food and Rural Affairs, Anyang, Gyeonggi-do, Republic of Korea.
J Virol. 2015 Aug;89(16):8267-79. doi: 10.1128/JVI.00766-15. Epub 2015 Jun 3.
Because the currently available vaccines against foot-and-mouth disease (FMD) provide no protection until 4 to 7 days postvaccination, the only alternative method to halt the spread of the FMD virus (FMDV) during outbreaks is the application of antiviral agents. Combination treatment strategies have been used to enhance the efficacy of antiviral agents, and such strategies may be advantageous in overcoming viral mechanisms of resistance to antiviral treatments. We have developed recombinant adenoviruses (Ads) for the simultaneous expression of porcine alpha and gamma interferons (Ad-porcine IFN-αγ) as well as 3 small interfering RNAs (Ad-3siRNA) targeting FMDV mRNAs encoding nonstructural proteins. The antiviral effects of Ad-porcine IFN-αγ and Ad-3siRNA expression were tested in combination in porcine cells, suckling mice, and swine. We observed enhanced antiviral effects in porcine cells and mice as well as robust protection against the highly pathogenic strain O/Andong/SKR/2010 and increased expression of cytokines in swine following combination treatment. In addition, we showed that combination treatment was effective against all serotypes of FMDV. Therefore, we suggest that the combined treatment with Ad-porcine IFN-αγ and Ad-3siRNA may offer fast-acting antiviral protection and be used with a vaccine during the period that the vaccine does not provide protection against FMD.
The use of current foot-and-mouth disease (FMD) vaccines to induce rapid protection provides limited effectiveness because the protection does not become effective until a minimum of 4 days after vaccination. Therefore, during outbreaks antiviral agents remain the only available treatment to confer rapid protection and reduce the spread of foot-and-mouth disease virus (FMDV) in livestock until vaccine-induced protective immunity can become effective. Interferons (IFNs) and small interfering RNAs (siRNAs) have been reported to be effective antiviral agents against FMDV, although the virus has associated mechanisms of resistance to type I interferons and siRNAs. We have developed recombinant adenoviruses for the simultaneous expression of porcine alpha and gamma interferons (Ad-porcine IFN-αγ) as well as 3 small interfering RNAs (Ad-3siRNA) to enhance the inhibitory effects of these antiviral agents observed in previous studies. Here, we show enhanced antiviral effects against FMDV by combination treatment with Ad-porcine IFN-αγ and Ad-3siRNA to overcome the mechanisms of resistance of FMDV in swine.
由于目前可用的口蹄疫(FMD)疫苗在接种后4至7天内没有保护作用,在疫情爆发期间阻止口蹄疫病毒(FMDV)传播的唯一替代方法是使用抗病毒药物。联合治疗策略已被用于提高抗病毒药物的疗效,这种策略可能有利于克服病毒对抗病毒治疗的耐药机制。我们开发了重组腺病毒(Ads),用于同时表达猪α和γ干扰素(Ad-猪IFN-αγ)以及3种靶向编码非结构蛋白的FMDV mRNA的小干扰RNA(Ad-3siRNA)。在猪细胞、乳鼠和猪中联合测试了Ad-猪IFN-αγ和Ad-3siRNA表达的抗病毒效果。我们观察到在联合治疗后,猪细胞和小鼠中的抗病毒效果增强,对高致病性O/安东/SKR/2010毒株有强大的保护作用,猪体内细胞因子的表达增加。此外,我们表明联合治疗对所有血清型的FMDV均有效。因此,我们建议Ad-猪IFN-αγ和Ad-3siRNA联合治疗可能提供快速起效的抗病毒保护,并在疫苗对口蹄疫无保护作用的期间与疫苗一起使用。
使用当前的口蹄疫(FMD)疫苗诱导快速保护的效果有限,因为保护作用在接种后至少4天才会生效。因此,在疫情爆发期间,抗病毒药物仍然是唯一可用于提供快速保护并减少口蹄疫病毒(FMDV)在牲畜中传播的治疗方法,直到疫苗诱导的保护性免疫生效。据报道,干扰素(IFNs)和小干扰RNA(siRNAs)是对抗FMDV的有效抗病毒药物,尽管该病毒具有对I型干扰素和siRNAs的相关耐药机制。我们开发了用于同时表达猪α和γ干扰素(Ad-猪IFN-αγ)以及3种小干扰RNA(Ad-3siRNA)的重组腺病毒,以增强在先前研究中观察到的这些抗病毒药物的抑制作用。在这里,我们展示了通过Ad-猪IFN-αγ和Ad-3siRNA联合治疗对FMDV的增强抗病毒效果,以克服FMDV在猪体内的耐药机制。