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February 5, 2026Separation Science Plus0 citations

Acidic Hydrolytic Stability of the Lifitegrast: Degradation, Method Development, Validation, Synthesis, LC–MS/NMR Characterization, In Silico and In Vitro Cytotoxicity

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KSK Jony SusannaMGMahendar GantalaANAnkita Nishad

Key Points

  • The aim is to evaluate the stability and cytotoxicity of degradation products of lifitegrast.
  • Developed a stability-indicating HPLC method using aqueous formic acid and acetonitrile
  • Characterized degradation products using LC–MS and NMR techniques
  • Conducted toxicity testing on human corneal epithelial cells
  • Identified two major degradation products, DP1 and DP2, under acidic stress conditions
  • DP2 showed cytotoxicity at 8 µg/mL, whereas DP1 was only toxic at 1280 µg/mL
  • Validated the method in accordance with International Conference on Harmonization guidelines

Abstract

ABSTRACT Degradation products (DPs) in ophthalmic medications pose significant risks to ocular safety, necessitating comprehensive profiling and toxicological evaluation. This study presents a mass spectrometry‐compatible, stability‐indicating high performance liquid chromatography (HPLC) method for lifitegrast (LFT), utilizing 0.10% aqueous formic acid (A) and acetonitrile (B) with a gradient program: 0/30, 10/90, 15/90, 15.10/30, and 20/30 (time/%B). Acidic stress conditions yielded two major DPs: ( S )‐2‐(5,7‐dichloro‐1,2,3,4‐tetrahydroisoquinoline‐6‐carboxamido)‐3‐(3‐(methylsulfonyl)phenyl)propanoic acid (DP1) and benzofuran‐6‐carboxylic acid (DP2). The method was validated per International Conference on Harmonization (ICH) guidelines and is suitable for routine quality assessment of LFT. Quantum chemical calculations at the Becke, 3‐parameter, Lee–Yang–Parr (B3LYP)/6‐31+G(d) level evaluated the enthalpy of amide hydrolysis. DP1 was synthesized and confirmed by nuclear magnetic resonance spectrometry (NMR) (20 H, 20 C) and FT‐infrared (IR) spectroscopy (N─H: 3340.04 cm −1 , C─H: 3022.49 cm −1 , C═O: 1648.83 cm −1 ). DP2, procured and identified, showed six hydrogen and nine carbon atoms, with FT‐IR bands at 3435.45 cm −1 (O─H), 2925.75 cm −1 (C─H), and 1680.10 cm −1 (C═O). DEREK Nexus‐based toxicity predictions indicated structural alerts, and human corneal epithelial cell assays revealed cytotoxicity for DP2 at 8 µg/mL, whereas DP1 was toxic only at 1280 µg/mL. These findings highlight the importance of integrating degradation profiling with toxicological assessment to ensure ophthalmic drug safety.

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Cite This Study

Susanna et al. (2026) studied this question.

synapsesocial.com/papers/69843574f1d9ada3c1fb43cdhttps://doi.org/10.1002/sscp.70189
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