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肽衍生化的壳交联纳米颗粒。1. 合成与表征。

Peptide-derivatized shell-cross-linked nanoparticles. 1. Synthesis and characterization.

作者信息

Becker Matthew L, Remsen Edward E, Pan Dipanjan, Wooley Karen L

机构信息

Center for Materials Innovation, Washington University, One Brookings Drive, Saint Louis, Missouri 63130, USA.

出版信息

Bioconjug Chem. 2004 Jul-Aug;15(4):699-709. doi: 10.1021/bc049946e.

Abstract

The conjugation of the protein transduction domain (PTD) from the HIV-1 Tat protein to shell-cross-linked (SCK) nanoparticles is reported as a method to facilitate cell surface binding and transduction of SCK nanoparticles. Attaching increasing numbers of peptide sequences to SCK nanoparticles in a global solution-state functionalization strategy has been devised as a method for increasing the efficiency of the cell-penetrating process. The numbers of peptides per SCK were controlled through stoichiometric balance and measured experimentally by two independent methods, UV-visible spectroscopy and phenylglyoxal analysis. PTD was conjugated in (0.005, 0.01, and 0.02) molar ratios, relative to the acrylic acid residues in the shell, to the SCK nanoparticles resulting in SCK populations possessing nominally 52, 104, and 210 (41, 83, and 202 as measured by phenylglyoxal analysis) PTD peptides per particle, respectively. The methodologies for the block copolymer and nanoparticle syntheses, peptide derivatization, and characterization of peptide-functionalized SCK nanoparticles are reported and the feasibility and efficiency of intracellular internalization of the respective SCKs were quantified.

摘要

据报道,将来自HIV-1 Tat蛋白的蛋白质转导结构域(PTD)与壳交联(SCK)纳米颗粒偶联,是促进SCK纳米颗粒细胞表面结合和转导的一种方法。已设计出一种在全局溶液状态功能化策略中将越来越多的肽序列连接到SCK纳米颗粒上的方法,以提高细胞穿透过程的效率。通过化学计量平衡控制每个SCK的肽数量,并通过两种独立方法(紫外可见光谱法和苯乙二醛分析)进行实验测量。相对于壳中的丙烯酸残基,以(0.005、0.01和0.02)的摩尔比将PTD与SCK纳米颗粒偶联,导致每个颗粒分别具有名义上52、104和210个(通过苯乙二醛分析测量分别为41、83和202个)PTD肽的SCK群体。报道了嵌段共聚物和纳米颗粒合成、肽衍生化以及肽功能化SCK纳米颗粒表征的方法,并对相应SCK细胞内内化的可行性和效率进行了量化。

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