Efficacy of ultraviolet irradiation of pharmaceutical excipients in mitigating N-nitrosamine generation-Pub

The team in Sawai Pharmaceuticals demonstrated in this paper that UV irradiation reduces NOx in excipients. While it remains unclear whether this method can be practically applied to the manufacturing processes of various pharmaceutical products, it is an interesting initiative.

https://www.sciencedirect.com/science/article/abs/pii/S0022354926002844

ABSTRACT

The generation of N-nitrosamine compounds (NOCs) in drugs presents a critical regulatory challenge owing to their potential mutagenicity and exceptionally strict acceptable intake limits required for patient safety. These impurities arise primarily from the reaction between amine-containing active pharmaceutical ingredients and trace amounts of nitrosating agents (reactive NOx), which contribute to N-nitrosation. Reactive NOx species are frequently found in pharmaceutical excipients. Therefore, efficiently reducing reactive NOx is essential for robust management of the risk posed by NOCs. In this study, we employed ultraviolet (UV) irradiation of excipients as a novel preemptive strategy to reduce reactive NOx levels. Desloratadine was used as a secondary amine model to evaluate the generation of N-nitrosamine in physical mixtures with various excipients. The excipients were exposed to different UV wavelengths (248, 313, and 365 nm), and N-nitrosodesloratadine (NDLRT) generation was quantified after storage under stress conditions. We found that 365 nm UV irradiation was the most effective in reducing reactive NOx under all conditions. In a formulation study, 365 nm UV irradiation successfully reduced NDLRT generation in the tablet by 54–68% compared with the control. Overall, the novel strategy described herein should be useful for reducing NOCs without affecting the quality of drugs.

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really interesting article,

thanks a lot Yosuke!!

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I feel that I saw something about this technique previously, but that it was ruled out as being a feasible solution due to the scale of batches of excipients and achieving the results uniformly throughout a batch. Or maybe I think about nitrosamine reduction too much?

These seems like it is a solution to a problem that could in reality be prevented from happening in the first place. I think it has been shown that the nitrite levels in many solid dose excipients come from the drying process. If reducing the levels of NOx in the gases of fluid bed dryers can work in the finished product manufacture then use of scrubbers in the drying of the excipients could also reduce the levels in the excipients, and so no need for UV treatment. Maybe this is what is actually being done in the production of low nitrite excipient grades?

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Here is our previous discussion(link).

A manufacturer of a low-nitrite grade excipient told me that their manufacturing process inherently produces very low nitrite levels. They said it was difficult to carry out further investigations because they were unable to increase the nitrite level, even after changing the processing conditions. I suspect that the best approach to reducing nitrite levels depends on the excipient.

It would be interesting to know whether excipient manufacturers are actually using scrubbers to produce low-nitrite grades.