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首页> 外文期刊>Journal of feline medicine and surgery >Feline coronavirus with and without spike gene mutations detected by real-time RT-PCRs in cats with feline infectious peritonitis
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Feline coronavirus with and without spike gene mutations detected by real-time RT-PCRs in cats with feline infectious peritonitis

机译:猫冠状病病毒,没有通过猫类传染性腹膜炎的猫实时RT-PCR检测到的尖锐基因突变

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Objectives Feline infectious peritonitis (FIP) emerges when feline coronaviruses (FCoVs) mutate within their host to a highly virulent biotype and the immune response is not able to control the infection. FCoV spike (S) gene mutations are considered to contribute to the change in virulence by enabling FCoV infection of and replication in macrophages. This study investigated the presence of FCoV with and without S gene mutations in cats with FIP using two different real-time RT-PCRs on different samples obtained under clinical conditions. Methods Fine-needle aspirates (FNAs) and incisional biopsies (IBs) of popliteal and mesenteric lymph nodes, liver, spleen, omentum and kidneys (each n = 20), EDTA blood (n = 13), buffy coat smears (n = 13), serum (n = 11), effusion (n = 14), cerebrospinal fluid (n = 16), aqueous humour (n = 20) and peritoneal lavage (n = 6) were obtained from 20 cats with FIP diagnosed by immunohistochemistry. Samples were examined by RT-PCR targeting the FCoV 7b gene, detecting all FCoV, and S gene mutation RT-PCR targeting mutations in nucleotides 23531 and 23537. The prevalence of FCoV detected in each sample type was calculated. Results In 20/20 cats, FCoV with S gene mutations was present in at least one sample, but there was variation in which sample was positive. FCoV with mutations in the S gene were most frequently found in effusion (64%, 95% confidence interval [CI] 39-89), followed by spleen, omentum and kidney IBs (50%, 95% CI 28-72), mesenteric lymph node IBs and FNAs (45%, 95% CI 23-67), and FNAs of spleen and liver and liver IBs (40%, 95% CI 19-62). Conclusions and relevance In these 20 cats with FIP, FCoVs with S gene mutations were found in every cat in at least one tissue or fluid sample. This highlights the association between mutated S gene and systemic FCoV spread. Examining a combination of different samples increased the probability of finding FCoV with the mutated S gene.
机译:目标猫科动物传染性腹膜炎(FIP)在其宿主内突变到高毒性的生物型和免疫应答时不能控制感染。通过在巨噬细胞中实现FCOV感染和复制,认为FCOV峰值突变被认为是有助于毒力的变化。本研究研究了使用在临床条件下获得的不同样品上的两种不同的实时RT-PCR与FCOV的存在和没有S的基因突变。方法Pop表发和肠系膜淋巴结的细针吸气(FNA)和切口活组织检查(IBS),肝脏,脾,全膜和肾脏(每个N = 20),EDTA血液(n = 13),Buffy涂层涂抹(n = 13 ),血清(n = 11),脑脊液(n = 16),液压液(n = 20),从免疫组织化学诊断的20只猫获得20只猫,获得腹膜液(n = 20)和腹膜灌洗(n = 6)。通过RT-PCR检查样品,靶向FCOV 7B基因,检测所有FCOV和核苷酸中的S基因突变RT-PCR靶向突变,计算每个样品类型中检测到的FCoV的患病率。结果20/20猫,具有S基因突变的FCOV存在于至少一个样品中,但存在样品阳性的变化。在SENE中具有突变的FCOV在积液中最常见(64%,95%置信区间[CI] 39-89),其次是脾脏,网膜和肾脏IBS(50%,95%CI 28-72),肠系膜淋巴结IBS和FNA(45%,95%CI 23-67)和脾脏和肝脏和肝脏的FNA(40%,95%CI 19-62)。结论和相关性在这些20猫的FIP中,在至少一个组织或流体样品中的每只猫中发现了具有S基因突变的FCOV。这突出了突变的S基因与系统性FCOV之间的关联。检查不同样品的组合增加了用突变的S基因找到FCOV的概率。

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