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The development of fluorescence probes for cancer cell lines and research on catalytic reactions.

机译:用于癌细胞系的荧光探针的开发和催化反应的研究。

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摘要

Fluorescence imaging is a powerful tool that permits visualization of specific cell states with a population; however existing methods for fluorescence labeling cannot be easily applied in many biological systems. Unlike antibodies, small molecule probes can be cell permeable and therefore useful in live-cell and in vivo imaging experiments; moreover, small molecule probes do not require genetic manipulation of cells.;Protein kinases are ideal targets for the development of selective fluorescent small molecule probes in many ways. This is because protein kinases are involved in most cellular processes and changes in their localization, accessibility, and abundance are associated with changes in cellular state. In addition, drug discovery and chemical biology efforts have produced many selective, cell permeable small molecule ligands of specific cellular kinases.;Here we describe our initial attempts to leverage existing, well characterized kinase inhibitors to develop fluorescent small molecule probes for their usage as imaging tools in cancer biology. BODIPY conjugated kinase inhibitors of parent compounds, such as Mps-IN-1, Dasatinib, and BI2536, were synthesized; their inhibition ability and immunofluorescence staining were tested.;The N-O bond cleavage of isoxazole can produce multiple functional groups in one step and involves in the metabolism of isoxazole containing drugs. Herein, we report a new, simple and efficient method, palladium-catalyzed reaction under the closed system microwave irradiation in protic solvents, to cleave the N-O bond of isoxazole. It is also applied to a mimic metabolism process of Leflunomide®. Occasionally, N-N-benzyl rearrangement products were obtained instead of the produce of isoxazole ring opening in aprotic solvents.;One pot reaction of β-ketoesters, Selectfluor®, and various Michael acceptors including nitroolefins, chalcones, and maleimides, catalyzed by a novel cinchona alkaloid-based thiourea bifunctional organocatalyst generated fluorinated quaternary stereogenic centers adjacent to tertiary stereocenters. The catalyst could be recovered from the reaction mixture by fluorous solid-phase extraction (F-SPE) with excellent purity for direct reuse.
机译:荧光成像是一种功能强大的工具,可以显示特定细胞群的状态。然而,现有的荧光标记方法不能轻易地应用于许多生物系统中。与抗体不同,小分子探针可以穿透细胞,因此可用于活细胞和体内成像实验;此外,小分子探针不需要对细胞进行遗传操作。蛋白激酶在许多方面都是开发选择性荧光小分子探针的理想靶标。这是因为蛋白激酶参与大多数细胞过程,其定位,可及性和丰度的变化与细胞状态的变化有关。此外,药物发现和化学生物学的努力已经产生了许多特定细胞激酶的选择性,细胞可渗透性小分子配体。癌症生物学中的工具。合成了母体化合物(如Mps-IN-1,Dasatinib和BI2536)的BODIPY偶联激酶抑制剂;异恶唑的N-O键裂解可一步产生多个官能团,并参与含异恶唑药物的代谢。在本文中,我们报道了一种新的,简单而有效的方法,在质子溶剂中,在密闭系统微波辐射下,钯催化的反应可裂解异恶唑的N-O键。它也可用于来氟米特的模拟代谢过程。有时会获得NN-苄基重排产物,而不是在非质子传递溶剂中产生异恶唑开环产物;;β-酮酸酯,Selectfluor®和各种Michael受体(包括硝基烯烃,查耳酮和马来酰亚胺)的一锅反应,是由新型金鸡纳催化的基于生物碱的硫脲双功能有机催化剂可生成与叔立体中心相邻的氟化季立体中心。可以通过氟固相萃取(F-SPE)从反应混合物中回收具有优异纯度的催化剂,以直接使用。

著录项

  • 作者

    Zhang, Zijuan.;

  • 作者单位

    University of Massachusetts Boston.;

  • 授予单位 University of Massachusetts Boston.;
  • 学科 Biology Cell.;Chemistry General.;Chemistry Biochemistry.;Chemistry Organic.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 417 p.
  • 总页数 417
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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