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Cell Penetration Herbicidal Activity and in-vivo-Toxicity of Oligo-Arginine Derivatives and of Novel Guanidinium-Rich Compounds Derived from the Biopolymer Cyanophycin

机译:寡精氨酸衍生物和衍生自生物聚合物蓝藻的富含胍的新型化合物的细胞渗透除草活性和体内毒性

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摘要

Oligo-arginines are thoroughly studied cell-penetrating peptides (CPPs, and ). Previous in-vitro investigations with the octaarginine salt of the phosphonate fosmidomycin (herbicide and anti-malaria drug) have shown a 40-fold parasitaemia inhibition with P. falciparum, compared to fosmidomycin alone (). We have now tested this salt, as well as the corresponding phosphinate salt of the herbicide glufosinate, for herbicidal activity with whole plants by spray application, hoping for increased activities, i.e. decreased doses. However, both salts showed low herbicidal activity, indicating poor foliar uptake (). Another pronounced difference between in-vitro and in-vivo activity was demonstrated with various cell-penetrating octaarginine salts of fosmidomycin: intravenous injection to mice caused exitus of the animals within minutes, even at doses as low as 1.4 μmol/kg (). The results show that use of CPPs for drug delivery, for instance to cancer cells and tissues, must be considered with due care. The biopolymer cyanophycin is a poly-aspartic acid containing argininylated side chains (); its building block is the dipeptide H-βAsp-αArg-OH (H-Adp-OH). To test and compare the biological properties with those of octaarginines we synthesized Adp8-derivatives (). Intravenouse injection of H-Adp8-NH2 into the tail vein of mice with doses as high as 45 μmol/kg causes no symptoms whatsoever (), but H-Adp8-NH2 is not cell penetrating (HEK293 and MCF-7 cells, ). On the other hand, the fluorescently labeled octamers FAM-(Adp(OMe))8-NH2 and FAM-(Adp(NMe2))8-NH2 with ester and amide groups in the side chains exhibit mediocre to high cell-wall permeability (), and are toxic (). Possible reasons for this behavior are discussed () and corresponding NMR spectra are presented ().Guanidinium-rich structures. a) The guanidinium groups (GGs) are attached to various backbones, mostly oligo-peptides. The rate of cell penetration and the peptidolytic stability depend upon the nature of the backbone (>a), the length and flexibility of the connecting units (>b), the distance (>c) between the GGs, and the number (n) of GG-bearing units. Cargoes (>d), such as fluorescent groups or bioactive moieties to be delivered into cells are attached to the backbone. >b) A cell-penetrating oligomer, in which GGs are part of the backbone.[href="#R15" rid="R15" class=" bibr popnode tag_hotlink tag_tooltip" id="__tag_753163773">15]
机译:寡精氨酸是经过深入研究的细胞穿透肽(CPPs和)。先前使用膦酸酯磷恶唑霉素的八精氨酸盐(除草剂和抗疟疾药物)进行的体外研究显示,与单独使用磷恶霉素相比,恶性疟原虫对寄生虫血症的抑制作用是其40倍。现在我们已经测试了该盐以及除草剂草铵膦的相应次膦酸盐,以通过喷雾施用对整株植物进行除草活性,希望增加活性,即降低剂量。但是,这两种盐均显示出较低的除草活性,表明叶吸收差。磷霉素的多种细胞渗透性八精氨酸盐证明了体外和体内活性之间的另一个显着差异:向小鼠静脉内注射即使在低至1.4μmol/ kg的剂量下,也能在几分钟之内使动物退出。结果表明,必须仔细考虑使用CPP进行药物递送(例如,递送至癌细胞和组织)。生物聚合物蓝霉素是一种含有天冬氨酸的侧链的聚天冬氨酸。它的结构单元是二肽H-βAsp-αArg-OH(H-Adp-OH)。为了测试和比较八精氨酸的生物学特性,我们合成了Adp8-衍生物。最高剂量为45μmol/ kg的小鼠尾静脉静脉注射H-Adp8-NH2不会引起任何症状(),但是H-Adp8-NH2不能穿透细胞(HEK293和MCF-7细胞)。另一方面,荧光标记的八聚物FAM-(Adp(OMe))8-NH2和FAM-(Adp(NMe2))8-NH2在侧链中具有酯和酰胺基,表现出中等至高的细胞壁通透性( ),并且有毒()。讨论了这种现象的可能原因,并给出了相应的NMR光谱。<!-fig ft0-> <!-fig mode = article f1-> <!-说明a7- ->富含胍的结构。 a)胍基团(GGs)连接到各种主链,主要是寡肽。细胞渗透率和肽水解稳定性取决于骨架的性质(> a ),连接单元的长度和柔性(> b ),距离(< GG之间的“ strong> c ”,以及GG单位的数量(n)。货物(> d ),例如要传递到细胞中的荧光基团或生物活性部分,都附着在骨架上。 > b )一种可穿透细胞的低聚物,其中GGs是骨干的一部分。[href =“#R15” rid =“ R15” class =“ bibr popnode tag_hotlink tag_tooltip” id =“ __ tag_753163773 “> 15 ]

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