Screening for quality with process analytical technology in a health-system pharmacy: A primer

Author:

Almeter Philip J12,Isaacs James T1,Hunter Aaron N1,Lyman Thomas A1,Zapata Stephanie P1,Henderson Bradley S1,Larkin Seth A12,Long Lindsey M12,Bossle Megan N12,Bhaktawara Smaran A12,Warren Matthew F12,Lozier Austin M12,Melson Joshua D12,Fraley Savannah R12,Relucio Eunice Hazzel L12,Felix Margaret A1,Reynolds Jeffrey W3,Naseman Ryan W12,Platt Thomas L12,Lodder Robert A4

Affiliation:

1. Department of Pharmacy Services, University of Kentucky HealthCare , Lexington, KY , USA

2. Pharmacy Practice & Sciences, College of Pharmacy, University of Kentucky , Lexington, KY , USA

3. Department of Finance, University of Kentucky HealthCare , Lexington, KY , USA

4. Pharmaceutical Sciences Department, College of Pharmacy, University of Kentucky , Lexington, KY , USA

Abstract

Abstract Purpose The University of Kentucky Drug Quality Study team briefly reviews the growing concerns over pharmaceutical manufacturing quality in the globalized environment, reviews the historical approach by the US Food and Drug Administration (FDA) that prioritizes process over product in enforcing quality with manufacturers, reviews the science of process analytical technology (PAT) such as near-infrared (NIR) spectroscopy, illustrates the use of PAT methods for assessing uniformity and quality in injectable pharmaceuticals, and demonstrates the application of NIR spectroscopy in a health-system pharmacy setting while maintaining current good practice quality guidelines and regulations (cGxP). Summary Given that the current approach to monitoring quality in pharmaceutical manufacturing was developed in the late 1960s at a time when manufacturing was mostly domestic, the current approach prioritizes process over product, and the global footprint of manufacturing is straining federal resources to fulfill their task of monitoring quality, an approach to augment the quality monitoring process has been developed. PAT methodologies are supported by FDA for monitoring quality and offer a fast, low-cost, nondestructive solution. Given that the Accreditation Council for Pharmacy Education has not required qualitative/quantitative analysis and drug assaying in the pharmacy curriculum for several decades, the authors spend time explaining the science behind one of these PAT methodologies, NIR spectroscopy. This primer reviews the application of this technology in the health-system pharmacy setting and the relevant clinical applications. Conclusion Utilizing PAT methodologies such as NIR spectroscopy, health-system pharmacies can gain insights about whether process controls are in place or lacking in FDA-approved formulations.

Publisher

Oxford University Press (OUP)

Subject

Health Policy,Pharmacology

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