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Synthesis and cellular penetration properties of new phosphonium based cationic amphiphilic peptides

机译:新型phospho类阳离子两亲肽的合成及细胞渗透特性

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摘要

A new category of phosphonium based cationic amphiphilic peptides has been developed and evaluated as potential antimicrobial peptides and cell penetrating peptides. The required building blocks were conveniently accessible from cysteine and could be applied in a solid phase peptide synthesis protocol for incorporation into peptide sequences. Evaluation of the antimicrobial properties and cellular toxicity of these phosphonium based peptides showed that these “soft” cationic side-chain containing peptides have poor antimicrobial properties and most of them were virtually non toxic (on HEK cells tested at 256 and 512 μM) and non-haemolytic (on horse erythrocytes tested at 512 μM), hinting at an interesting potential application as cell penetrating peptides. This possibility was evaluated using fluorescent peptide derivatives and showed that these phosphonium based peptide derivatives were capable of entering HEK cells and depending on the sequence confined to specific cellular areas.
机译:已经开发出一种新的基于based的阳离子两亲肽,并将其评估为潜在的抗菌肽和细胞穿透肽。所需的结构单元可从半胱氨酸方便地获得,并可应用于固相肽合成方案中以掺入肽序列中。对这些基于based的肽的抗菌性能和细胞毒性的评估表明,这些“柔软的”阳离子侧链肽具有较差的抗菌性能,并且大多数实际上无毒(对以256和512μM测试的HEK细胞而言),并且无毒。 -溶血(在512μM的马红细胞上测试),暗示了作为细胞穿透肽的潜在潜在应用。使用荧光肽衍生物评估了这种可能性,结果表明这些基于磷鎓的肽衍生物能够进入HEK细胞,并取决于限于特定细胞区域的序列。

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