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Exploration of the carmaphycins as payloads in antibody drug conjugate anticancer agents

机译:探测抗体药物缀合物抗癌剂的有效载荷的探索

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Antibody–drug conjugates (ADCs) represent a new dimension of anticancer chemotherapeutics, with warheads to date generally involving either antitubulin or DNA-directed agents to achieve low-to sub-nanomolar potency. However, other potent cytotoxins working by different pharmacological mechanisms are under investigation, such as α,β-epoxyketone based proteasome inhibitors. These proteasome active agents are an emerging class of anticancer drug that possesses ultra-potent cytotoxicity to some cancer cell lines. The carmaphycins are representatives of this latter class that we isolated and characterized from a marine cyanobacterium, and these as well as several synthetic analogues exhibit this level of potency. In the current work, we investigated the use of these highly potent cytotoxic compounds as warheads in the design of novel ADCs. We designed and synthesized a library of carmaphycin B analogues that contain amine handles, enabling their attachment to an antibody linker. The basicity of these incorporated amine handles was shown to strongly affect their cytotoxic properties. Linear amines resulted in the greatest reduction in cytotoxicity whereas less basic aromatic amines retained potent activity as demonstrated by a 4-sulfonylaniline derivative. These investigations resulted in identifying the P2 residue in the carmaphycins as the most suitable site for linker attachment point, and hence, we synthesized a highly potent analogue of carmaphycin B that contained a 4-sulfonylaniline handle as an attachment point for the linker antibody.
机译:抗体 - 药物缀合物(ADCS)代表抗癌化学治疗剂的新尺寸,迄今为止迄今为止的弹头,通常涉及抗胰岛素或DNA定向剂以实现低至亚纳摩效力。然而,通过不同的药理学机制工作的其他有效的细胞毒素在研究,例如α,β-环氧酮的蛋白酶体抑制剂。这些蛋白酶体活性剂是一种新一类对某些癌细胞系具有超高效细胞毒性的抗癌药物。甘草霉素是我们孤立和特征的后期阶级的代表性,以及这些以及几种合成类似物表现出这种效力水平。在目前的工作中,我们调查了这些高效的细胞毒性化合物作为新型ADC设计中的弹头。我们设计和合成了含有胺处理的尸体霉素B类似物的库,使其与抗体接头的附着。这些掺入胺处理件的碱度显示出强烈影响其细胞毒性特性。线性胺导致细胞毒性的最大减少,而较少的碱性芳族胺保持效率,如4-磺酰基苯胺衍生物所证明的那样。这些研究导致鉴定碳碱中的P2残基作为接头附着点的最合适的部位,因此,合成了含有4-磺酰苯胺手柄作为接头抗体的附着点的高效类似物。

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