首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Cell-Penetrating Peptides Enhance the Activity of Human Fibroblast Growth Factor 2 by Prolonging the Retention Time: A New Vision for Drug-Delivery Systems
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Cell-Penetrating Peptides Enhance the Activity of Human Fibroblast Growth Factor 2 by Prolonging the Retention Time: A New Vision for Drug-Delivery Systems

机译:细胞穿透肽通过延长保留时间来增强人类成纤维细胞生长因子2的活性:药物输送系统的新视野。

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摘要

Cell-penetrating peptides (CPPs) are defined by their ability to deliver cargo into cells and have been studied and developed as a promising drug-delivery system (DDS). However, the issue of whether the CPPs that have already entered the cells can be re-released or reused has not been studied. The purpose of this research was to construct CPP-conjugated human fibroblast growth factor 2 (hFGF2) and investigate whether they can be re-released from the cell membrane for reuse. This study combined hFGF2 with Tat or Ara27, a newly developed CPP derived from the zinc knuckle (CCHC-type) family protein of . Human dermal fibroblast (HDF) was treated with Tat-conjugated hFGF2 (tFGF2) and Ara27-conjugated hFGF2 (NR-FGF2) for both long and short durations, and the effects on cell growth were compared. Furthermore, tFGF2 and NR-FGF2 re-released from the cells were quantified and the effects were evaluated by culturing HDF in a conditioned medium. Interestingly, the proliferation of HDF increased only when NR-FGF2 was treated for 1 h in endocytosis-independent manner. After 1 h, NR-FGF2 was significantly re-released, reaching a maximum concentration at 5 h. Furthermore, increased proliferation of HDF cultured in the conditioned medium containing re-released NR-FGF2 was discovered. While previous studies have focused on the delivery of cargo and its associated applications, this study has revealed that combinations of superior CPPs and therapeutics can be expected to prolong both the retention time and the cell-penetrating capacity, even in the presence of external factors. Therefore, CPPs can be applied in the context of topical drugs and cosmetics as a new DDS approach.
机译:细胞穿透肽(CPPs)由其将货物递送到细胞中的能力来定义,并且已经被研究和开发为有前途的药物递送系统(DDS)。但是,尚未研究已经进入小区的CPP是否可以重新释放或重新使用的问题。这项研究的目的是构建与CPP结合的人成纤维细胞生长因子2(hFGF2),并研究它们是否可以从细胞膜中重新释放出来以供再利用。这项研究将hFGF2与Tat或Ara27结合,Tat或Ara27是一种新开发的CPP,它是从CGF的锌指(CCHC型)家族蛋白衍生而来的。将人类皮肤成纤维细胞(HDF)分别用Tat偶联的hFGF2(tFGF2)和Ara27偶联的hFGF2(NR-FGF2)进行长期和短期治疗,并比较其对细胞生长的影响。此外,对从细胞中重新释放的tFGF2和NR-FGF2进行定量,并且通过在条件培养基中培养HDF来评估效果。有趣的是,仅当以内吞不依赖方式处理NR-FGF2 1 h时,HDF的增殖才增加。 1小时后,NR-FGF2显着释放,在5小时达到最大浓度。此外,发现在含有再释放的NR-FGF2的条件培养基中培养的HDF的增殖增加。尽管先前的研究集中在货物的运输及其相关应用上,但这项研究表明,即使存在外部因素,也可以期望将优良的CPP与治疗药物组合使用,以延长保留时间和细胞穿透能力。因此,CPP可以作为新的DDS方法应用于局部药物和化妆品中。

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