A Review on Dissolution Method Development for Drug Products: Current Regulations and Prospects

Author:

Gupta Prashant1,H. Patel Dipti1,Dhameliya Nilesh2,Modh Pratik2,Joshi Vishvesh3

Affiliation:

1. Department of Pharmaceutics, Institute of Pharmaceutical Sciences, Faculty of Pharmacy, Parul University, P.O. Limda, Tal. Waghodia - 391760 Dist. Vadodara, Gujarat (India)

2. Formulation and Development, Alembic Research Centre, Alembic Road, Subhanpura - 390003 Dist. Vadodara, Gujarat (India)

3. Research and Development, Chartwell Pharmaceuticals LLC, 77 Brenner Dr, Congers, NY 10920, United States.

Abstract

Dissolution (in vitro release) testing has been the subject of intense scientific and regulatory interest over the past several decades. As an analytical methodology, in vitro dissolution testing measures drug release into the dissolution media. The U. S. Food and Drug Administration (USFDA) Dissolution Database was reviewed and screened regarding the type of dosage forms, apparatus type, agitation speed, media volume, and recommended time points for the dissolution profile. The dissolution method requires special laboratory equipment, following a well-defined protocol. Basic information is available in the United States Pharmacopeia general chapters<711> Dissolution, <724> Drug Release, and <1092> The Dissolution Procedure – Development and Validation and these chapters were used as a starting point for this revision. The article describes current regulatory expectations for establishing a suitable dissolution method for implementing quality control tools, a way to maintain lot quality and consistency between development batches and post-approval commercial batches. Dissolution methods draw offers some advantages as a possible surrogate for extensive clinical studies in certain cases required after scale-up and post-approval changes in the product's life cycle and serves as an essential tool for establishing waivers for filing of lower strengths of the drug product. The step-by-step dissolution method development plan as per current regulatory perspectives and the factors to be considered are explained with examples. Scientist requires detailed insights on the selection of media and volumes, physicochemical properties of active substance, sink condition, type of enzymes, selection of apparatus, deaeration, sinkers, agitation speed, and time point’s measures. The advanced dissolution method is evaluated against its discriminatory power by intentionally varying formulation and process variables

Publisher

A and V Publications

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference38 articles.

1. Sirisha, S; A Review on IVIVC in The Development of Oral Drug Formulation: Data Obtained from Past Two Decades. Res. J. Pharma. Dosage Forms and Tech. 2020; 12(3): 198-204. DOI: 10.5958/0975-4377.2020.00034.8.

2. Om, A.; Lawrence, X. Y.; Dale, P. C.; Barbara, M. D. Dissolution testing for generic drugs: An FDA perspective. AAPS J. 2011; 13 (3): 328-335.DOI: 10.1208/s12248-011-9272-y

3. Dissolution methods database. U.S. Food and Drug Administration website. https://www.accessdata.fda.gov/scripts/cder/dissolution/dsp_getallData.cfm (accessed on Feb 08, 2022).

4. The United States Pharmacopoeia. https://online.uspnf.com/uspnf (accessed on Feb 08, 2022)

5. United States pharmacopoeia and National Formulary USP-NF 2022, Chapter <1092>, The dissolution procedure: Development and validation. The United States Pharmacopoeial Convention, Rockville, MD, 2022.

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