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八精氨酸酰化:对细胞内递药载体应用的启示。

Acylation of octaarginine: Implication to the use of intracellular delivery vectors.

机构信息

Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan.

出版信息

J Control Release. 2011 Jan 5;149(1):29-35. doi: 10.1016/j.jconrel.2010.02.004. Epub 2010 Feb 6.

Abstract

Cell-penetrating peptides (CPPs) have the ability to efficiently internalize into cells and thus have been used as a vector for the intracellular delivery of various bioactive molecules. The introduction of a hydrophobic core to CPPs may increase their interaction with membranes and facilitate their translocation into cells. While the usefulness of acylated oligoarginine to gene and siRNA delivery has been largely reported, little information is available about their use for the delivery of small molecular-weight compounds, peptides and proteins. In this report, we employed octaarginine (R8) as a typical arginine-rich CPP and evaluated the effect of acylation using butanoic, hexanoic and decanoic acids on its capacity as a delivery vector. Hexanoyl octaarginine (C6R8-Alexa) showed the highest efficiency of cellular uptake of the studied variants, ten times higher than R8-Alexa. C6R8-Alexa also produced a diffuse cytosolic distribution. On the other hand, a less significant effect of C6R8 over R8 was observed for the delivery of proteins, suggesting that the advantage of C6R8 may be obtained during the delivery of relatively small molecular-weight compounds. Although less prominent than at 37°C, a significant cytosolic distribution of C6R8-Alexa was observed at 4°C, and this suggested the potential ability of the C6R8 peptide for direct penetration through plasma membranes.

摘要

细胞穿透肽(CPPs)能够有效地进入细胞,因此被用作将各种生物活性分子递送到细胞内的载体。在 CPPs 中引入疏水性核心可以增加它们与膜的相互作用,并促进它们向细胞内的转移。虽然酰化寡精氨酸在基因和 siRNA 递送上的用途已经得到了广泛的报道,但关于其在小分子化合物、肽和蛋白质递送上的应用的信息却很少。在本报告中,我们采用八聚精氨酸(R8)作为典型的富含精氨酸的 CPP,并评估了用丁酸、己酸和癸酸酰化对其作为递药载体的能力的影响。己酰化八聚精氨酸(C6R8-Alexa)显示出研究变体中最高的细胞摄取效率,比 R8-Alexa 高十倍。C6R8-Alexa 还产生弥散的细胞质分布。另一方面,对于蛋白质的递送,C6R8 对 R8 的影响较小,这表明在相对小分子化合物的递送上,C6R8 的优势可能会显现出来。尽管在 4°C 时没有 37°C 时那么明显,但在 4°C 时观察到 C6R8-Alexa 的细胞质分布明显,这表明 C6R8 肽具有直接穿透质膜的潜在能力。

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