, Poznań, Poland.
Faculty of Chemistry, University in Wrocław, F. Joliot-Curie Str. 14, 50-383, Wrocław, Poland.
Sci Rep. 2021 May 4;11(1):9459. doi: 10.1038/s41598-021-87878-5.
This work continues our studies on the pleiotropic activity of the insect peptide Neb-colloostatin in insects. In vivo immunological bioassays demonstrated that hemocytotoxic analogs of Neb-colloostatin injected into Tenebrio molitor significantly reduced the number of hemocytes in the hemolymph and impaired phagocytosis, nodulation and phenoloxidase activities in the insects. Among the analogs tested, [Ala]-,[Val]-, [Hyp]- and [Ach]-colloostatin were particularly potent in disrupting cellular immunity in larvae, pupae and adult insects. This result suggests that the most effective analogs showed increases in the bioactivity period in the hemolymph of insects when compared to Neb-colloostatin. Recently, we demonstrated that it is possible to introduce Neb-colloostatin through the cuticle of an insect into the hemolymph when the peptide is coupled with nanodiamonds. In this study, we showed that [Ala]-, [Val]-, [Hyp]- and [Ach]-colloostatin, when complexed with nanodiamonds, may also pass through the cuticle into the hemolymph and induce long-term impairments of immunity in T. molitor at all developmental stages. Studies on the tissue selectivity and effectiveness of Neb-colloostatin analogs and efficient methods for their introduction into insects may contribute to the development of eco-friendly pest control methods based on bioactive peptidomimetics.
这项工作是我们对昆虫肽 Neb-colloostatin 的多功能性的研究的延续。体内免疫生物测定表明,注射到黄粉虫体内的 Neb-colloostatin 具有细胞毒性的类似物显著降低了血液中的血细胞数量,并损害了昆虫的吞噬作用、结节形成和酚氧化酶活性。在测试的类似物中,[Ala]-,[Val]-, [Hyp]-和[Ach]-colloostatin 在幼虫、蛹和成虫中破坏细胞免疫的作用特别强。这一结果表明,与 Neb-colloostatin 相比,最有效的类似物在昆虫血液中的生物活性期更长。最近,我们证明了当肽与纳米金刚石偶联时,可以通过昆虫的表皮将 Neb-colloostatin 引入血液中。在这项研究中,我们表明,[Ala]-, [Val]-, [Hyp]-和[Ach]-colloostatin 与纳米金刚石复合后,也可能穿过表皮进入血液,并在所有发育阶段长期损害黄粉虫的免疫力。对 Neb-colloostatin 类似物的组织选择性和有效性的研究以及将其有效引入昆虫的方法可能有助于开发基于生物活性肽模拟物的环保型害虫防治方法。