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用 N-芳基马来酰亚胺稳定半胱氨酸连接的抗体药物偶联物。

Stabilization of cysteine-linked antibody drug conjugates with N-aryl maleimides.

机构信息

Antibody Discovery and Protein Engineering, MedImmune, Gaithersburg, MD 20878, USA.

Antibody Discovery and Protein Engineering, MedImmune, Gaithersburg, MD 20878, USA.

出版信息

J Control Release. 2015 Dec 28;220(Pt B):660-70. doi: 10.1016/j.jconrel.2015.09.032. Epub 2015 Sep 24.

Abstract

Maleimides are often used to covalently attach drugs to cysteine thiols for production of antibody-drug conjugates (ADCs). However, ADCs formed with traditional N-alkyl maleimides have variable stability in the bloodstream leading to loss of drug. Here, we report that N-aryl maleimides form stable antibody conjugates under very mild conditions while also maintaining high conjugation efficiency. Thiol-maleimide coupling and ADC stabilization via thiosuccinimide hydrolysis were accelerated by addition of N-phenyl or N-fluorophenyl groups to the ring-head nitrogen. Cysteine-linked ADCs prepared with N-aryl maleimides exhibited less than 20% deconjugation in both thiol-containing buffer and serum when incubated at 37 °C over a period of 7 days, whereas the analogous ADCs prepared with N-alkyl maleimides showed 35-67% deconjugation under the same conditions. ADCs prepared with the anticancer drug N-phenyl maleimide monomethyl-auristatin-E (MMAE) maintained high cytotoxicity following long-term exposure to serum whereas the N-alkyl maleimide MMAE ADC lost potency over time. These data demonstrate that N-aryl maleimides are a convenient and flexible platform to improve the stability of ADCs through manipulation of functional groups attached to the maleimide ring-head nitrogen.

摘要

马来酰亚胺常用于将药物共价连接到半胱氨酸巯基上,以制备抗体药物偶联物(ADC)。然而,传统的 N-烷基马来酰亚胺形成的 ADC 在血液中稳定性较差,导致药物丢失。在这里,我们报告说,N-芳基马来酰亚胺在非常温和的条件下形成稳定的抗体缀合物,同时保持高的缀合效率。通过在环端氮上添加 N-苯基或 N-氟苯基,硫醇-马来酰亚胺偶联和通过硫代琥珀酰亚胺水解的 ADC 稳定化得到加速。当在 37°C 下孵育 7 天时,在含有巯基的缓冲液和血清中,用 N-芳基马来酰亚胺制备的半胱氨酸连接的 ADC 表现出小于 20%的去缀合,而在相同条件下用 N-烷基马来酰亚胺制备的类似 ADC 表现出 35-67%的去缀合。用抗癌药物 N-苯基马来酰亚胺单甲基奥瑞他汀 E(MMAE)制备的 ADC 在长期暴露于血清后仍保持高细胞毒性,而 N-烷基 MMAE ADC 随时间推移失去效力。这些数据表明,N-芳基马来酰亚胺是一种方便且灵活的平台,可以通过修饰连接到马来酰亚胺环端氮上的官能团来提高 ADC 的稳定性。

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