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首页> 外文期刊>Amino acids >Integrin alpha(v)beta(3) targeting activity study of different retro-inverso sequences of RGD and their potentiality in the designing of tumor targeting peptides
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Integrin alpha(v)beta(3) targeting activity study of different retro-inverso sequences of RGD and their potentiality in the designing of tumor targeting peptides

机译:RGD的不同逆反序列的整合素α(v)beta(3)靶向活性研究及其在设计肿瘤靶向肽中的潜力

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摘要

Retro-inverso peptide represented the isomer of a parent peptide in which the direction of the sequence was reversed and the chirality of each amino acid residue was inverted. Generally, retro-inverso peptides possessed equal or even higher activities compared to the original peptide. RGD was a commonly used ligand for tumor and vascular targeting due to its affinity to integrin alpha(v)beta(3) receptors. The biological activity study of the isomers of RGD would indeed provide useful suggestions for the design of tumor targeting peptides. Therefore, the tumor targeting activities of octa-arginine which was modified with different retro-inverso sequences of RGD peptide were investigated in this study. Three different tandem peptides (R8-GDGR, R8-GdGr and R8-GdGR) were designed on the basis of R8-GRGD. The tumor targeting activities of these tandem peptides were evaluated both in vitro and in vivo. Finally, R8-GdGR displayed selective binding affinity to integrin alpha(v)beta(3) at the cellular level, and exhibited efficient tumor homing and penetrating capabilities in vivo. Meanwhile, R8-GdGR also showed stronger neovessel targeting ability compared to the others. In conclusion, all the results demonstrated that dGR possessed similar biological activity to RGD and was a potential ligand for further designing of tumor targeting peptides.
机译:逆反肽代表亲本肽的异构体,其中序列的方向被颠倒并且每个氨基酸残基的手性被颠倒。通常,逆反肽具有与原始肽相同或什至更高的活性。由于RGD对整联蛋白α(v)beta(3)受体的亲和力,它是肿瘤和血管靶向的常用配体。 RGD异构体的生物学活性研究确实将为肿瘤靶向肽的设计提供有用的建议。因此,本研究研究了八-精氨酸的肿瘤靶向活性,八-精氨酸被RGD肽的不同逆反序列修饰。在R8-GRGD的基础上设计了三种不同的串联肽(R8-GDGR,R8-GdGr和R8-GdGR)。在体外和体内均评估了这些串联肽的肿瘤靶向活性。最后,R8 GdGR在细胞水平上显示对整联蛋白alpha(v)beta(3)的选择性结合亲和力,并在体内表现出有效的肿瘤归巢和穿透能力。同时,与其他R8-GdGR相比,R8-GdGR还显示出更强的新血管靶向能力。总之,所有结果表明,dGR具有与RGD相似的生物学活性,并且是进一步设计肿瘤靶向肽的潜在配体。

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