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Shear-induced variability in the United States Pharmacopeia Apparatus 2: modifications to the existing system.
AAPS J. 2006 Jan 03; 7(4):E857-64.AJ

Abstract

The hydrodynamics within the United States Pharmacopeia Apparatus 2 have been shown to be highly non-uniform with a potential to yield substantial variability in dissolution rate measurements. Through the use of readily available engineering tools, several geometric modifications to the device were evaluated in this study. Specifically, we examined the influence of impeller clearance, agitator type (radial and axial), and vessel geometry (PEAK vessel) on the fluid flow properties and their relation to measured dissolution rates. Increasing the impeller clearance was observed to exacerbate the heterogeneity in shear and would likely result in greater variability in dissolution measurements. Altering the impeller type was shown to yield changes in the hydrodynamic behavior; however, the overall properties and problems with the test remain the same. Use of the PEAK vessel was observed to reduce shear heterogeneity in the regions where tablets are most likely to visit during testing; however, higher shear rates may result in the inability to discriminate between true differences in dissolution rates.

Authors+Show Affiliations

Department of Chemical and Biochemical Engineering, Rutgers University, Piscataway, NJ 08854, USA.No affiliation info availableNo affiliation info available

Pub Type(s)

Evaluation Study
Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

16594638

Citation

Baxter, Jennifer L., et al. "Shear-induced Variability in the United States Pharmacopeia Apparatus 2: Modifications to the Existing System." The AAPS Journal, vol. 7, no. 4, 2006, pp. E857-64.
Baxter JL, Kukura J, Muzzio FJ. Shear-induced variability in the United States Pharmacopeia Apparatus 2: modifications to the existing system. AAPS J. 2006;7(4):E857-64.
Baxter, J. L., Kukura, J., & Muzzio, F. J. (2006). Shear-induced variability in the United States Pharmacopeia Apparatus 2: modifications to the existing system. The AAPS Journal, 7(4), E857-64.
Baxter JL, Kukura J, Muzzio FJ. Shear-induced Variability in the United States Pharmacopeia Apparatus 2: Modifications to the Existing System. AAPS J. 2006 Jan 3;7(4):E857-64. PubMed PMID: 16594638.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Shear-induced variability in the United States Pharmacopeia Apparatus 2: modifications to the existing system. AU - Baxter,Jennifer L, AU - Kukura,Joseph, AU - Muzzio,Fernando J, Y1 - 2006/01/03/ PY - 2006/4/6/pubmed PY - 2006/8/17/medline PY - 2006/4/6/entrez SP - E857 EP - 64 JF - The AAPS journal JO - AAPS J VL - 7 IS - 4 N2 - The hydrodynamics within the United States Pharmacopeia Apparatus 2 have been shown to be highly non-uniform with a potential to yield substantial variability in dissolution rate measurements. Through the use of readily available engineering tools, several geometric modifications to the device were evaluated in this study. Specifically, we examined the influence of impeller clearance, agitator type (radial and axial), and vessel geometry (PEAK vessel) on the fluid flow properties and their relation to measured dissolution rates. Increasing the impeller clearance was observed to exacerbate the heterogeneity in shear and would likely result in greater variability in dissolution measurements. Altering the impeller type was shown to yield changes in the hydrodynamic behavior; however, the overall properties and problems with the test remain the same. Use of the PEAK vessel was observed to reduce shear heterogeneity in the regions where tablets are most likely to visit during testing; however, higher shear rates may result in the inability to discriminate between true differences in dissolution rates. SN - 1550-7416 UR - https://www.unboundmedicine.com/medline/citation/16594638/Shear_induced_variability_in_the_United_States_Pharmacopeia_Apparatus_2:_modifications_to_the_existing_system_ DB - PRIME DP - Unbound Medicine ER -