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February 19, 2026Scientific Reports0 citationsOpen Access

Structural stability of symmetric bispecific antibodies: a case study showing potential compromise near linker regions

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NINattha IngavatYKYee Jiun KokNDNuruljannah Dzulkiflie

Key Points

  • This research focuses on the structural stability of bispecific antibodies and the impact of linker regions. The aim is to understand how these factors influence their performance and safety.
  • Investigated symmetric bispecific antibodies (Sym-bsAb) under forced degradation conditions.
  • Assessed fragmentation profiles related to thermal stress, high pH, and salt presence.
  • Performed intact mass analysis to identify degradation events.
  • Sym-bsAb exhibited pronounced fragmentation due to prolonged thermal stress.
  • Key degradation observed at G4S and G4 linkers under specific conditions.
  • Identified critical vulnerabilities at interchain cystinyl residues and C-terminal asparagine cleavage.

Abstract

Over recent decades, bispecific antibodies (bsAbs) have garnered significant attention for their superior therapeutic efficacy compared to progenitor monoclonal antibodies, enabling innovative treatment strategies. Despite their potential, the development of bsAbs presents significant challenges, with structural stability playing a pivotal role in manufacturability, therapeutic performance, and safety. Among the factors influencing stability, the design and incorporation of molecular linkers are particularly critical. In this study, we investigated the structural stability and fragmentation profiles of a symmetric bispecific antibody (Sym-bsAb), targeting HER2 and CD3, under forced degradation conditions. The Sym-bsAb exhibited pronounced fragmentation under prolonged thermal stress, particularly when combined with high pH and salt conditions. Intact mass analysis identified key degradation events, including sequential clipping along G4S and G4 linkers, fragmentations at interchain cystinyl residues and cleavage at the C-terminal of asparagine residues. The identification of G4S and G4 linkers as vulnerable regions prone to clipping in Sym-bsAb provided valuable insights into the stability and manufacturability of bsAbs incorporating linker sequences, underscoring critical considerations for their development.

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Cite This Study

Ingavat et al. (2026) studied this question.

synapsesocial.com/papers/6996712d80e1323b05ec037bhttps://doi.org/10.1038/s41598-026-40607-2
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