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Heteromultivalent ligands directed targeting of cell-surface receptors---Implications in cancer diagnostics & therapeutics.

机译:靶向细胞表面受体的杂多价配体---在癌症诊断和治疗中的意义。

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摘要

Effective detection and treatment of tumor malignancies depends upon identifying targets - molecular markers that differentiate cancer cells from healthy cells. Current cancer therapies involve targeting overexpressed specific gene products. An alternative approach is proposed here: to specifically target combinations of cell-surface receptors using heteromultivalent ligands (htMVLs). There are about 2500 genes encoding for cellsurface proteins in the human genome that can potentially be targeted. Taken as sets, there can be ∼ 106 two-receptor combinations and ∼ 10 9 three-receptor combinations available. Our group envisions that using cell-surface protein combinations that are expressed on a cancer cell but not on a normal cell, multivalent constructs displaying complementary ligands of weak affinities can be assembled. These multivalent ligands should bind with high avidity to cancer populations in vivo, and provide a degree of specificity not seen with current approaches. As a proof-of-concept, a series of multivalent ligands were designed and synthesized for a model system consisting of the human Melanocortin subtype 4 receptor (hMC4R) and the Cholecystokinin subtype 2 receptor (CCK-2R). Modeling studies on GPCR dimers predicted that a minimum linker span of 20–50 Å would be required to non-covalently crosslink these two receptors. The multivalent ligands were assembled using a modular parallel synthesis approach and using solid-phase chemistries. A variety of linkers were explored ranging from highly rigid to highly flexible, and using natural and/or synthetic building blocks. Ligand binding affinities were evaluated using a lanthanide based competitive binding assay in cells that expressed both receptors (bivalent binding) vs those that expressed only one of the receptors (monovalent binding), and were demonstrated to have enhanced binding affinities of up to nearly two orders of magnitude. The promising ligands were further explored by synthesizing fluorescently labeled and/or lanthanide chelate labeled monovalent and heterobivalent ligands designed for in vitro and in vivo studies. More explorative work using these labeled constructs is in progress. To the best of our knowledge, the author believes this is the first such demonstration of a ‘synthetic htMVL’ directed recruitment and crosslinking of two heterologous cell-surface receptors. This receptor combination approach opens up new possibilities for single cell imaging, cancer detection and therapeutic intervention, and can provide a revolutionary new platform technology with which to direct therapeutics to defined cell populations.
机译:有效检测和治疗肿瘤恶性肿瘤取决于确定靶标-区分癌细胞与健康细胞的分子标记。当前的癌症疗法涉及靶向过度表达的特定基因产物。本文提出了一种替代方法:使用杂多价配体(htMVL)特异性靶向细胞表面受体的组合。人类基因组中大约有2500个编码细胞表面蛋白的基因可能被靶向。作为一组,可以有〜106个两受体组合和〜10 9个三受体组合。我们的小组设想,使用在癌细胞而非正常细胞上表达的细胞表面蛋白组合,可以组装显示出弱亲和力互补配体的多价构建体。这些多价配体应以高亲和力结合到体内的癌症人群中,并提供目前方法未见的特异性程度。作为概念验证,针对模型系统设计并合成了一系列多价配体,该模型系统包含人黑皮质素亚型4受体(hMC4R)和胆囊收缩素亚型2受体(CCK-2R)。对GPCR二聚体的建模研究预测,非共价交联这两种受体需要最小的连接子跨度为20–50Å。使用模块化平行合成方法和固相化学方法组装多价配体。探索了各种连接物,从高刚性到高柔性,以及使用天然和/或合成构件。使用基于镧系元素的竞争结合试验在表达两种受体(二价结合)与仅表达一种受体(单价结合)的细胞中评估了配体结合亲和力,并证明其结合亲和力提高了近两个数量级数量级。通过合成设计用于体外和体内研究的荧光标记和/或镧系元素螯合标记的单价和杂二价配体,进一步探索了有前途的配体。使用这些标记结构的更多探索性工作正在进行中。据我们所知,作者认为这是“合成htMVL”定向募集和交联两种异源细胞表面受体的首次证明。这种受体组合方法为单细胞成像,癌症检测和治疗干预开辟了新的可能性,并且可以提供一种革命性的新平台技术,利用该技术将治疗剂定向到确定的细胞群。

著录项

  • 作者

    Josan, Jatinder Singh.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Chemistry Organic.;Health Sciences Oncology.;Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 399 p.
  • 总页数 399
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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