AbbVie, 1 North Waukegan Rd, North Chicago, IL, USA.
Biologics Discovery, Janssen Research & Development, LLC, Spring House, PA, USA.
MAbs. 2023 Jan-Dec;15(1):2195517. doi: 10.1080/19420862.2023.2195517.
Single-chain fragment variable (scFv) domains play an important role in antibody-based therapeutic modalities, such as bispecifics, multispecifics and chimeric antigen receptor T cells or natural killer cells. However, scFv domains exhibit lower stability and increased risk of aggregation due to transient dissociation ("breathing") and inter-molecular reassociation of the two domains (VL and VH). We designed a novel strategy, referred to as stapling, that introduces two disulfide bonds between the scFv linker and the two variable domains to minimize scFv breathing. We named the resulting molecules stapled scFv (spFv). Stapling increased thermal stability (Tm) by an average of 10°C. In multiple scFv/spFv multispecifics, the spFv molecules display significantly improved stability, minimal aggregation and superior product quality. These spFv multispecifics retain binding affinity and functionality. Our stapling design was compatible with all antibody variable regions we evaluated and may be widely applicable to stabilize scFv molecules for designing biotherapeutics with superior biophysical properties.
单链片段可变区 (scFv) 结构域在抗体为基础的治疗方式中发挥着重要作用,例如双特异性抗体、多特异性抗体以及嵌合抗原受体 T 细胞或自然杀伤细胞。然而,scFv 结构域由于两个结构域(VL 和 VH)的瞬时解离(“呼吸”)和分子间再结合,表现出较低的稳定性和增加的聚集风险。我们设计了一种新的策略,称为交联,即在 scFv 连接子和两个可变结构域之间引入两个二硫键,以最小化 scFv 的呼吸作用。我们将得到的分子命名为交联 scFv (spFv)。交联使热稳定性 (Tm) 平均提高了 10°C。在多个 scFv/spFv 多特异性抗体中,spFv 分子表现出显著改善的稳定性、最小的聚集和更高的产品质量。这些 spFv 多特异性抗体保留了结合亲和力和功能。我们的交联设计与我们评估的所有抗体可变区都兼容,并且可能广泛适用于稳定 scFv 分子,以设计具有优越生物物理特性的生物疗法。