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Bioavailability of insect neuropeptides: the PK/PBAN family as a case study.

机译:昆虫神经肽的生物利用度:以PK / PBAN家族为例。

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The ability of unmodified linear peptides to penetrate the insect cuticle and exert bioactivity (e.g., stimulation of sex pheromone biosynthesis) was tested by topical application onto Heliothis peltigera moths of four insect neuropeptides (Nps) of the pyrokinin (PK)/pheromone biosynthesis activating neuropeptide (PBAN) family: Helicoverpa zea PBAN (Hez-PBAN), Pseudaletia (Mythimna) separata pheromonotropin (PT), Leucophaea maderae PK (LPK) and Locusta migratoria myotropin (Lom-MT-II). The time kinetic of the peptides applied in double distilled water (DDW) or dimethylsulfoxide (DMSO) was tested and the activities of topically applied and injected peptides were compared. The results clearly indicated that all four peptides were highly potent but with differing activities in the two solvents: PBAN was most active in water, and PT in DMSO. The activity of PBAN in DDW lasted up to 8h post-application and its activity in this solvent showed a faster onset and a longer persistence than in DMSO. LPK and MT differed less in their kinetics between the two solvents. Topically applied PBAN at 1 nmol exhibited an equivalent or even significantly higher potency than the injected peptide at several different times post-treatment. Similar results were obtained with topically applied and injected LPK. The present results add important information on the bioavailability of unmodified linear peptides in moths, clearly indicate that linear hydrophilic peptides can penetrate the cuticle by contact application in aqueous solutions and in organic solvents very efficiently, reach their target organ and activate it.
机译:未修饰的线性肽穿透昆虫角质层并发挥生物活性(例如,刺激性信息素的生物合成)的能力通过局部应用在腐殖质(PK)/信息素生物合成激活神经肽的四个昆虫神经肽(Nps)的Heliothis peltigera飞蛾上进行测试。 (PBAN)家族:Helicoverpa zea PBAN(Hez-PBAN),Pseudaletia(Mythimna)分离的单原白蛋白(PT),马白草PK(LPK)和Locusta migratoria myotropin(Lom-MT-II)。测试了在双蒸馏水(DDW)或二甲基亚砜(DMSO)中应用的肽的时间动力学,并比较了局部应用和注入的肽的活性。结果清楚地表明,所有四种肽都是高效的,但在两种溶剂中具有不同的活性:PBAN在水中最活跃,而PT在DMSO中最活跃。 PBAN在DDW中的活性持续至施用后8小时,其在该溶剂中的活性比DMSO表现出更快的起效和更长的持久性。 LPK和MT在两种溶剂之间的动力学差异较小。在处理后数次不同的时间,在1 nmol处局部施用的PBAN表现出与注入的肽相当或什至更高的效价。局部施用和注射LPK可获得相似的结果。本研究结果增加了未修饰的线性肽在飞蛾中生物利用度的重要信息,清楚地表明,线性亲水性肽可以通过在水溶液和有机溶剂中接触施用而非常有效地穿透表皮,到达其靶器官并激活它。

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