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Identification of high-affinity targeting ligands against alpha4 beta1 integrin for lymphoma imaging using the combinatorial chemistry approach.

机译:使用组合化学方法鉴定针对alpha4 beta1整联蛋白的高亲和力靶向配体,用于淋巴瘤成像。

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摘要

Increasing literature suggests that cell adhesion molecule alpha4beta1 integrin plays a pivotal role in autoimmune diseases and cancer development. Noninvasive visualization of alpha4beta1 integrin in vivo will facilitate the understanding of its involvement in disease progression and development of targeted therapies. Due to lack of high-affinity targeting ligands, in vivo imaging of alpha4beta1 integrin is much less explored than that of integrins alphavbeta3 and alphavbeta5. One-bead one-compound (OBOC) library approach offers an important tool to identify novel ligands. Recently, we have developed topologically segregated bilayer bead encoding methods for OBOC libraries, thus the diversity of OBOC combinatorial libraries can now be substantially increased, and there are many more options for library design. These developments enable us to fully use the power of OBOC libraries for the identification of cancer-targeting agents having both peptidic and nonpeptidic features.;Although it is convenient to use streptavidin-fluorochrome as a contrast agent to evaluate in vivo targeting potential of LLP2A, this protein-based imaging probe loses the advantages of LLP2A being small molecule-based imaging probes, such as, fast kinetics and strong tumor penetration ability. We further demonstrated the use of small molecule imaging probe, LLP2A-Cy5.5 conjugate, as an in vivo near infrared optical imaging agent for lymphoma in a xenograft model. The subcutaneous Molt-4 tumor was clearly visualized from 0.5 h to 24 h after tail vein injection of the conjugate LLP2A-Cy5.5. Direct imaging and confocal microscopic examination of excised tumors and organs after probe injection confirmed the accumulation of LLP2A in tumors and revealed very little or no uptake in normal organs except for lymph nodes. Thus LLP2A has been shown great potential as an imaging probe to noninvasively monitor alpha4beta1 expression and activity during tumor progression.;Here we described both the strategy of combining diverse 'initial' and highly 'focused' OBOC combinatorial libraries and the ways this strategy generated a high-affinity and highly specific peptidomimetic ligand to a4bl integrin. In conjunction with a high stringency screening method, we identified a high-affinity (IC50=2 pM) peptidomimetic ligand (LLP2A) against alpha4beta1 integrin using this strategy. LLP2A binds to the activated form of alpha4beta1 integrin preferentially. We demonstrated that, when biotinylated and complexed with near infrared dye Alexa680-streptavidin conjugate to form a tetravalent molecule, LLP2A was able to target human lymphoma xenograft in nude mice with high sensitivity and specificity.
机译:越来越多的文献表明,细胞粘附分子α4beta1整合素在自身免疫性疾病和癌症发展中起着关键作用。体内alpha4beta1整合素的非侵入性可视化将有助于了解其与疾病进展和靶向疗法的发展有关。由于缺乏高亲和力的靶向配体,与整合素alphavbeta3和alphavbeta5相比,alpha4beta1整合素的体内成像研究少得多。单珠一化合物(OBOC)文库方法提供了鉴定新配体的重要工具。最近,我们为OBOC库开发了拓扑隔离的双层磁珠编码方法,因此,现在可以大大增加OBOC组合库的多样性,并且有更多的库设计选项。这些进展使我们能够充分利用OBOC库的功能来鉴定具有肽和非肽特征的癌症靶向药物。尽管使用链霉亲和素荧光染料作为造影剂来评估LLP2A的体内靶向潜力很方便,这种基于蛋白质的成像探针失去了LLP2A作为基于小分子的成像探针的优势,例如快速动力学和强大的肿瘤穿透能力。我们进一步证明了使用小分子成像探针LLP2A-Cy5.5偶联物作为异种移植模型中淋巴瘤的体内近红外光学成像剂。在尾静脉注射缀合物LLP2A-Cy5.5后0.5 h至24 h,皮下Molt-4肿瘤清晰可见。探针注射后,对切除的肿瘤和器官进行直接成像和共聚焦显微镜检查,证实了LLP2A在肿瘤中的积累,并显示除淋巴结外,正常器官几乎没有或没有摄取。因此,LLP2A已显示出巨大的潜力,可作为一种成像探针来无创地监测肿瘤进展过程中的alpha4beta1表达和活性。在这里,我们描述了结合多种``初始''和高度``专注''的OBOC组合文库的策略以及该策略生成抗体的方式。高亲和力和高度特异性的拟肽配体与a4bl整联蛋白。结合高严格性筛选方法,我们使用这种策略鉴定了针对alpha4beta1整联蛋白的高亲和力(IC50 = 2 pM)拟肽配体(LLP2A)。 LLP2A优先与alpha4beta1整联蛋白的激活形式结合。我们证明,当生物素化并与近红外染料Alexa680-链霉亲和素缀合物复合以形成四价分子时,LLP2A能够以高灵敏度和特异性靶向裸鼠中的人淋巴瘤异种移植。

著录项

  • 作者

    Peng, Li.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Chemistry Biochemistry.;Health Sciences Oncology.;Biology Bioinformatics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:39:24

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