Authors
Mithun M Gharat, Pallavi T Roy, Amit N Gosar, Tabrez A Shaikh, Suresh S Shendage, Nitin A Mirgane
Published in
Biomedical chromatography : BMC. Volume 40. Issue 9. Pages e70578.
Abstract
For many years, it is known as Nitrosamines are responsible for carcinogenicity in human. These nitroso-impurities were found detected in plastics, food items, cigarette, insect killer, water and alcoholic beverages. In 2018 EMA and USFDA claimed the presence of N-nitrosodimethylamine in valsartan used for the treatment of hypertension. Consequently, to assess the adverse effects of nitrosamine generation during storage, in the course of production, or through contaminated supply chains, regulators have issued many guidelines. Hence, there is a crucial need for accurate evaluation technique to measure nitroso-impurities in pharmaceutical products. According to the Carcinogenic Potency Categorization Approach, the allowable intake is 400 ng/day, which translates to an allowable limit of 16 ppm for a 25 mg daily dose. A study was then performed at 1.5 ppm relative to sample concentration, which is less than 10% of this limit. The main aim of this development to optimize and prove suitability of a new liquid chromatography-tandem mass spectrometry method for quantitatively analyzing 3-amino-N-nitrosopiperidine (NTPA) in Alogliptin Benzoate (AGP), achieving detectable response of 0.03 ppm and quantifiable response value of 0.1 ppm relative to sample concentration. Current method was found to be linear with the coefficient of regression of 0.9979. Also, spiking study was performed by the calculating percentage spiked NTPA in the drug, which ranged from 96.67% to 100.14%. The results confirmed that the methodology was reliable, precise, robust and reproducible to quantify NTPA at 1.5 ppm in samples of 2.75 mg/mL concentration.
PMID:
42538849
Bibliographic data and abstract were imported from PubMed on 01 Aug 2026.
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