Literature DB >> 19426791

Non-destructive determination of anisotropic mechanical properties of pharmaceutical solid dosage forms.

I Akseli1, B C Hancock, C Cetinkaya.   

Abstract

The mechanical property anisotropy of compacts made from four commercially available pharmaceutical excipient powders (microcrystalline cellulose, lactose monohydrate, ascorbic acid, and aspartame) was evaluated. The speed of pressure (longitudinal) waves in the uni-axially compressed cubic compacts of each excipient in the three principle directions was determined using a contact ultrasonic method. Average Young's moduli of each compact in the axial (x) and radial (y and z) directions were characterized. The contact ultrasonic measurements revealed that average Young's modulus values vary with different testing orientations which indicate Young's modulus anisotropy in the compacts. The extent of Young's modulus anisotropy was quantified by using a dimensionless ratio and was found to be significantly different for each material (microcrystalline cellulose>lactose>aspartame>ascorbic acid). It is also observed that using the presented contact method, compacts at high solid fraction (0.857-0.859) could be differentiated than those at the solid fraction of 0.85 in their groups. The presented contact ultrasonic method is an attractive tool since it has the advantages of being sensitive to solid fraction ratio, non-destructive, requiring small amount of material and rapid. It is noteworthy that, since the approach provides insight into the performance of common pharmaceutical materials and fosters increased process knowledge, it can be applied to broaden the understanding of the effect of the mechanical properties on the performance (e.g., disintegration profiles) of solid oral dosage forms.

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Year:  2009        PMID: 19426791     DOI: 10.1016/j.ijpharm.2009.04.040

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  5 in total

1.  A quantitative correlation of the effect of density distributions in roller-compacted ribbons on the mechanical properties of tablets using ultrasonics and X-ray tomography.

Authors:  Ilgaz Akseli; Srinivas Iyer; Hwahsiung P Lee; Alberto M Cuitiño
Journal:  AAPS PharmSciTech       Date:  2011-06-28       Impact factor: 3.246

2.  A Multi-variate Mathematical Model for Simulating the Granule Size Distribution in Roller Compaction-Milling Process.

Authors:  Hossein Amini; Ilgaz Akseli
Journal:  AAPS PharmSciTech       Date:  2021-03-10       Impact factor: 3.246

3.  Anisotropic porous structure of pharmaceutical compacts evaluated by PGSTE-NMR in relation to mechanical property anisotropy.

Authors:  Patrice Porion; Virginie Busignies; Vincent Mazel; Bernard Leclerc; Pierre Evesque; Pierre Tchoreloff
Journal:  Pharm Res       Date:  2010-08-10       Impact factor: 4.200

4.  On Identification of Critical Material Attributes for Compression Behaviour of Pharmaceutical Diluent Powders.

Authors:  Jianyi Zhang; Chuan-Yu Wu; Xin Pan; Chuanbin Wu
Journal:  Materials (Basel)       Date:  2017-07-23       Impact factor: 3.623

Review 5.  A Review of Disintegration Mechanisms and Measurement Techniques.

Authors:  Daniel Markl; J Axel Zeitler
Journal:  Pharm Res       Date:  2017-03-01       Impact factor: 4.200

  5 in total

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