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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Effects of N-terminal and C-terminal modification on cytotoxicity and cellular uptake of amphiphilic cell penetrating peptides
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Effects of N-terminal and C-terminal modification on cytotoxicity and cellular uptake of amphiphilic cell penetrating peptides

机译:N末端和C末端修饰对两亲性细胞穿透肽的细胞毒性和细胞摄取的影响

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Purpose: To assess the effect of “N-Acetylation and C-Amidation” on the cellular uptake, cytotoxicity and performance of amphiphilic cell penetrating peptides (CPP) loaded with methotrexate (MTX). Methods: Several CPPs were synthesized by solid phase peptide synthesis method. Some of these sequences were modified with pyroglutamic acid at N-terminus and benzylamine or memantine at C-terminus. The resultant nanomaterials were prepared due to the physical linkage between CPPs and MTX. The internalization and cytotoxicity of both CPP-MTX bioconjugates and unmodified CPPs against MCF-7 human breast adenocarcinoma cells was evaluated. Results: N-l and C-terminal modification did not alter the toxicity of CPPs. Physical linkage of CPPs with MTX resulted in a lower drug loading efficiency in comparison with chemically conjugated CPP-MTX bio-conjugates. Both nano-complexes increase the toxic effect of MTX on MCF-7 cells. Furthermore, N- and C-terminal modification may cause a tangible reduction in cellular uptake of CPPs. Conclusion: In conclusion, it was shown that cytotoxicity of modified peptides which were physically linked with MTX, considerably higher than both physically loaded unmodified peptides and chemically conjugated peptides with MTX. Also, cell internalization was reduced after peptide end-protection. These findings confirmed the effectiveness of N- and C-terminal modifications on cell viability and CPPs internalization.
机译:目的:评估“ N-乙酰化和C-酰胺化”对负载甲氨蝶呤(MTX)的两亲性细胞穿透肽(CPP)的细胞摄取,细胞毒性和性能的影响。方法:采用固相肽合成法合成了几种CPP。这些序列中的一些在N端被焦谷氨酸修饰,在C端被苄胺或美金刚修饰。由于CPP和MTX之间存在物理联系,因此制备了纳米材料。评估了CPP-MTX生物缀合物和未修饰的CPP对MCF-7人乳腺腺癌细胞的内在化和细胞毒性。结果:N-1和C末端修饰没有改变CPP的毒性。与化学偶联的CPP-MTX生物偶联物相比,CPP与MTX的物理连接导致较低的药物装载效率。两种纳米复合物均增加了MTX对MCF-7细胞的毒性作用。此外,N和C末端修饰可能会导致细胞对CPP摄取的明显减少。结论:总之,结果表明,与MTX物理连接的修饰肽的细胞毒性远高于物理负载的未修饰肽和与MTX化学偶联的肽。同样,肽末端保护后细胞内在化减少。这些发现证实了N端和C端修饰对细胞活力和CPPs内在化的有效性。

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