Pharmaceutical Residual Solvent Analysis: A Comparison of GC-FID and SIFT-MS Performance

Author:

Perkins Mark J.1,Hastie Colin1,Whitlock Sophia E.2,Langford Vaughan S.2ORCID

Affiliation:

1. Element Materials Technology, Girton, Cambridge CB3 0NA, UK

2. Syft Technologies Limited, Christchurch 8011, New Zealand

Abstract

Residual solvents in pharmaceutical excipients, active pharmaceutical ingredients (APIs), and finished products are usually analyzed using gas chromatography (GC)-based techniques according to a pharmacopeial monograph, such as the United States Pharmacopeia’s (USP) chapter <467>. GC analyses are often slow, which limits sample throughput. Selected ion flow tube mass spectrometry (SIFT-MS) removes the rate-limiting chromatographic separation step, potentially offering faster sample analyses. This approach was demonstrated recently with the publication of an alternative SIFT-MS procedure which was successfully validated against the performance criteria in USP chapter <1467>. The present study expands upon the previous work by conducting a head-to-head comparison of GC-flame ionization detection (GC-FID) and SIFT-MS procedures. The results obtained in this cross-platform study demonstrated similar performance for the GC-FID and SIFT-MS procedures for linearity (R2 > 0.94 and 0.97, respectively) and repeatability (<17%RSD and <10%RSD). For accuracy and recovery, acceptance criteria (within 20%) were achieved for most compounds across the two drug products (SIFT-MS suffered fewer failures, possibly due to shorter wait times prior to analysis). Additionally, SIFT-MS analyzed samples over 11-fold faster than GC-FID, increasing daily sample throughput and reducing the time taken to determine the result. This study therefore suggests that residual solvent analysis using SIFT-MS may support workflow improvements for pharmaceutical manufacturers.

Publisher

MDPI AG

Reference32 articles.

1. International Council for Harmonization of Technical Requirements for Pharmaceuticals for Human Use (ICH) (2023, March 23). Impurities: Guideline for Residual Solvents Q3C(R8). Available online: https://database.ich.org/sites/default/files/ICH_Q3C-R8_Guideline_Step4_2021_0422_1.pdf.

2. United States Pharmacopeia (2007). Residual Solvents 〈467〉, United States Pharmacopeia.

3. (2019). Residual Solvents—Verification of Compendial Procedures and Validation of Alternative Procedures 〈1467〉, United States Pharmacopeia.

4. A Generic Headspace GC Method for Residual Solvents in Pharmaceuticals: Benefits, Rationale, and Adaptations for New Chemical Entities;Dai;LCGC N. Am.,2010

5. Fujii, T. (2015). Ion Molecule Attachment Reactions: Mass Spectrometry, Springer.

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