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用于在活细胞中筛选小分子混合物的全合成噬菌体样系统。

Fully synthetic phage-like system for screening mixtures of small molecules in live cells.

作者信息

Byk Gerardo, Partouche Shirly, Weiss Aryeh, Margel Shlomo, Khandadash Raz

机构信息

Deptartment of Chemistry, Bar Ilan University, Ramat Gan 52900, Israel.

出版信息

J Comb Chem. 2010 May 10;12(3):332-45. doi: 10.1021/cc900156z.

Abstract

A synthetic "phage-like" system was designed for screening mixtures of small molecules in live cells. The core of the system consists of 2 mum diameter cross-linked monodispersed microspheres bearing a panel of fluorescent tags and peptides or small molecules either directly synthesized or covalently conjugated to the microspheres. The microsphere mixtures were screened for affinity to cell line PC-3 (prostate cancer model) by incubation with live cells, and as was with phage-display peptide methods, unbound microspheres were removed by repeated washings followed by total lysis of cells and analysis of the bound microspheres by flow-cytometry. Similar to phage-display peptide screening, this method can be applied even in the absence of prior information about the cellular targets of the candidate ligands, which makes the system especially interesting for selection of molecules with high affinity for desired cells, tissues, or tumors. The advantage of the proposed system is the possibility of screening synthetic non-natural peptides or small molecules that cannot be expressed and screened using phage display libraries. A library composed of small molecules synthesized by the Ugi reaction was screened, and a small molecule, Rak-2, which strongly binds to PC-3 cells was found. Rak-2 was then individually synthesized and validated in a complementary whole cell-based binding assay, as well as by live cell microscopy. This new system demonstrates that a mixture of molecules bound to subcellular sized microspheres can be screened on plated cells. Together with other methods using subcellular sized particles for cellular multiplexing, this method represents an important milestone toward high throughput screening of mixtures of small molecules in live cells and in vivo with potential applications in the fields of drug delivery and diagnostic imaging.

摘要

设计了一种合成的“噬菌体样”系统用于在活细胞中筛选小分子混合物。该系统的核心由直径2微米的交联单分散微球组成,这些微球带有一组荧光标签以及直接合成或共价连接到微球上的肽或小分子。通过与活细胞孵育,筛选微球混合物对细胞系PC-3(前列腺癌模型)的亲和力,并且与噬菌体展示肽方法一样,通过反复洗涤去除未结合的微球,随后对细胞进行完全裂解,并通过流式细胞术分析结合的微球。与噬菌体展示肽筛选类似,即使在没有关于候选配体细胞靶点的先验信息的情况下,该方法也可以应用,这使得该系统对于选择对所需细胞、组织或肿瘤具有高亲和力的分子特别有吸引力。所提出系统的优点是能够筛选使用噬菌体展示文库无法表达和筛选的合成非天然肽或小分子。对由Ugi反应合成的小分子组成的文库进行了筛选,发现了一种与PC-3细胞强烈结合的小分子Rak-2。然后单独合成Rak-2,并在基于全细胞的互补结合试验以及活细胞显微镜下进行验证。这个新系统表明,可以在平板细胞上筛选与亚细胞大小微球结合的分子混合物。与其他使用亚细胞大小颗粒进行细胞多重分析的方法一起,该方法代表了在活细胞和体内高通量筛选小分子混合物的一个重要里程碑,在药物递送和诊断成像领域具有潜在应用。

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