EuCode Technology, Ambrx, Inc., La Jolla, CA 92037.
Proc Natl Acad Sci U S A. 2014 Feb 4;111(5):1766-71. doi: 10.1073/pnas.1321237111. Epub 2014 Jan 17.
Using an expanded genetic code, antibodies with site-specifically incorporated nonnative amino acids were produced in stable cell lines derived from a CHO cell line with titers over 1 g/L. Using anti-5T4 and anti-Her2 antibodies as model systems, site-specific antibody drug conjugates (NDCs) were produced, via oxime bond formation between ketones on the side chain of the incorporated nonnative amino acid and hydroxylamine functionalized monomethyl auristatin D with either protease-cleavable or noncleavable linkers. When noncleavable linkers were used, these conjugates were highly stable and displayed improved in vitro efficacy as well as in vivo efficacy and pharmacokinetic stability in rodent models relative to conventional antibody drug conjugates conjugated through either engineered surface-exposed or reduced interchain disulfide bond cysteine residues. The advantages of the oxime-bonded, site-specific NDCs were even more apparent when low-antigen-expressing (2+) target cell lines were used in the comparative studies. NDCs generated with protease-cleavable linkers demonstrated that the site of conjugation had a significant impact on the stability of these rationally designed prodrug linkers. In a single-dose rat toxicology study, a site-specific anti-Her2 NDC was well tolerated at dose levels up to 90 mg/kg. These experiments support the notion that chemically defined antibody conjugates can be synthesized in commercially relevant yields and can lead to antibody drug conjugates with improved properties relative to the heterogeneous conjugates formed by nonspecific chemical modification.
利用扩展的遗传密码,在源自 CHO 细胞系的稳定细胞系中生产了具有特异性掺入的非天然氨基酸的抗体,其滴度超过 1 g/L。使用抗 5T4 和抗 Her2 抗体作为模型系统,通过掺入的非天然氨基酸侧链上的酮与羟基胺功能化的单甲基奥瑞他汀 D 之间的肟键形成,产生了具有特异性抗体药物偶联物(NDC),其中使用的连接子为蛋白酶可切割或不可切割的连接子。当使用不可切割的连接子时,与通过工程化的表面暴露或减少的链间二硫键半胱氨酸残基偶联的常规抗体药物偶联物相比,这些缀合物具有高度的稳定性,并显示出改善的体外功效以及在啮齿动物模型中的体内功效和药代动力学稳定性。当在比较研究中使用低抗原表达(2+)靶细胞系时,肟键合的、特异性的 NDC 的优势更加明显。具有蛋白酶可切割连接子的 NDC 表明,缀合部位对这些合理设计的前药连接子的稳定性有重大影响。在单次剂量大鼠毒理学研究中,高达 90 mg/kg 的剂量水平下,特异性抗 Her2 NDC 可耐受良好。这些实验支持这样一种观点,即化学定义的抗体偶联物可以以商业相关的产率合成,并可以导致与通过非特异性化学修饰形成的异质偶联物相比具有改善的性质的抗体药物偶联物。