Effect of the organoselenium compound 974zh on the TLR2 and TLR4 gene expression in blood and spleen cells of experimental animals when co-administered with Yersinia pestis EV

A. B. Pyatidesyatnikova, V. I. Dubrovina, O. Yurieva, K. Korytov, T. I. Ivanova, V. A. Potapov, M. V. Musalov, S. V. Balakhonov
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Abstract

One of the important directions for increasing the immunogenic properties of vaccine strains against highly dangerous infections is the search for adjuvants that not only stimulate the immunological effectiveness of vaccination, but can also provide a metabolic correction of the vaccination process. Organoselenium compounds have immunotropic properties and an antioxidant effect, and therefore, the study of the effect of the organoselenium compound 2,6-dipyridinium-9-selenabicyclo[3.3.1]nonane dibromide (974zh) on the activity of the TLR2 and TLR4 gene expression by macroorganism cells of experimental animals immunized with Yersinia pestis EV NIIEG vaccine strain, is a current area of research.The aim of the work. To assess the TLR2 and TLR4 gene expression by cells of the immune phagocyte system of experimental animals immunized with the Y. pestis EV vaccine strain against the background of immunomodulation with the organoselenium compound 974zh.Materials and methods. The study was carried out on 125 certified outbred white mice. Biological material (blood, spleen) was disinfected, and the spleen was homogenized. RNA isolation and reverse transcription were performed using commercial reagent kits. The expression level of the TLR2 and TLR4 genes was determined using real-time polymerase chain reaction with specific primers.Results. When assessing innate immunity using the example of blood and spleen cells of animal models, features of the TLR2 and TLR4 gene expression were revealed in response to the introduction of the Y. pestis EV vaccine strain against the background of immunomodulation with the 974zh. It was found that 974zh induces a statistically significant increase in TLR2 gene expression when co-administered with Y. pestis EV at a dose of both 104 CFU and 103 CFU.Conclusion. Y. pestis EV against the background of immunomodulation with 974zh, stimulates the expression of the TLR2 and TLR4 genes, which may indicate an increase in the immunogenic properties of the Y. pestis EV vaccine strain under the influence of this preparation.
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有机硒化合物 974zh 与鼠疫耶尔森菌 EV 同服对实验动物血液和脾脏细胞中 TLR2 和 TLR4 基因表达的影响
提高疫苗株对高危感染的免疫原性的重要方向之一是寻找佐剂,这种佐剂不仅能刺激疫苗接种的免疫效果,还能对疫苗接种过程进行代谢校正。有机硒化合物具有免疫增强特性和抗氧化作用,因此,研究有机硒化合物 2,6-二吡啶鎓-9-硒二环[3.3.1]壬烷二溴化物(974zh)对用鼠疫耶尔森氏菌 EV NIIEG 疫苗株免疫的实验动物大机体细胞的 TLR2 和 TLR4 基因表达活性的影响是当前的一个研究领域。在使用有机硒化合物 974zh 进行免疫调节的背景下,评估免疫鼠疫耶尔森氏菌 EV 疫苗株的实验动物吞噬细胞系统细胞的 TLR2 和 TLR4 基因表达。本研究以 125 只经过认证的纯种白鼠为对象。对生物材料(血液、脾脏)进行消毒,并将脾脏匀浆。使用商业试剂盒进行 RNA 分离和逆转录。使用特定引物进行实时聚合酶链反应,测定 TLR2 和 TLR4 基因的表达水平。在以动物模型的血液和脾脏细胞为例评估先天性免疫时,发现在用 974zh 进行免疫调节的背景下,TLR2 和 TLR4 基因的表达对引入鼠疫 Y. EV 疫苗株有反应。研究发现,当与鼠疫伊蚊EV以104 CFU和103 CFU的剂量共同给药时,974zh会诱导TLR2基因表达的统计学显著增加。在使用 974zh 进行免疫调节的背景下,鼠疫 Y. EV 可刺激 TLR2 和 TLR4 基因的表达,这可能表明在该制剂的影响下,鼠疫 Y. EV 疫苗株的免疫原性有所提高。
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