Petronio Petronio Giulio, Pietrangelo Laura, Cutuli Marco Alfio, Magnifico Irene, Venditti Noemi, Guarnieri Antonio, Abate Getnet Atinafu, Yewhalaw Delenasaw, Davinelli Sergio, Di Marco Roberto
Department of Medicine and Health Science "V. Tiberio", Università degli Studi del Molise, 8600 Campobasso, Italy.
Department of Biology, College of Natural Sciences, Debre Markos University, Debre Markos P.O. Box 269, Ethiopia.
Microorganisms. 2022 Oct 7;10(10):1983. doi: 10.3390/microorganisms10101983.
In recent years, the scientific community's interest in as an insect model to investigate immunity and host-pathogen interactions has considerably increased. The reasons for this growing interest could be explained by the peculiar features of this beetle, which offers various advantages compared to other invertebrates models commonly used in laboratory studies. Thus, this review aimed at providing a broad view of the immune system in light of the new scientific evidence on the developmental/tissue-specific gene expression studies related to microbial infection. In addition to the well-known cellular component and humoral response process, several studies investigating the factors associated with immune response or deepening of those already known have been reported. However, various aspects remain still less understood, namely the possible crosstalk between the immune deficiency protein and Toll pathways and the role exerted by apolipoprotein III in the expression of the antimicrobial peptides. Therefore, further research is required for to be recommended as an alternative insect model for pathogen-host interaction and immunity studies.
近年来,科学界对将[昆虫名称]作为研究免疫和宿主-病原体相互作用的昆虫模型的兴趣显著增加。这种兴趣日益增长的原因可以用这种甲虫的独特特征来解释,与实验室研究中常用的其他无脊椎动物模型相比,它具有各种优势。因此,本综述旨在根据与微生物感染相关的发育/组织特异性基因表达研究的新科学证据,对[昆虫名称]的免疫系统提供一个全面的概述。除了众所周知的细胞成分和体液反应过程外,还报道了几项研究,这些研究调查了与[昆虫名称]免疫反应相关的因素,或对那些已知因素进行了深入研究。然而,仍有许多方面了解较少,即免疫缺陷蛋白和Toll途径之间可能的相互作用以及[昆虫名称]载脂蛋白III在抗菌肽表达中所起的作用。因此,要将[昆虫名称]推荐为病原体-宿主相互作用和免疫研究的替代昆虫模型,还需要进一步的研究。