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Assessing the re-crystallization behaviour of amorphous lactose using the RH-perfusion cell.
Eur J Pharm Biopharm. 2006 Aug; 64(1):107-14.EJ

Abstract

Many different reports have studied the crystallization behaviour of lactose, e.g., by exposing samples of amorphous lactose to different relative humidity at constant temperatures. However, only few reports are available investigating the formation of alpha-lactose monohydrate and beta-lactose during re-crystallization. Applying the static ampoule method in the microcalorimeter, the enthalpies of amorphous lactose were reported to be constantly 32 and 48 J/g, respectively, considering the mutarotation of lactose at 25 degrees C and 58% RH, 75% RH and 100% RH. In this study, an alternative microcalorimetric technique, the relative humidity-perfusion cell (RH-perfusion cell) was chosen. The RH-perfusion cell is able to deliver a constant and controlled flow of humidified air to the sample. Investigated compounds were purely amorphous lactose and different powder mixtures of lactose. They consisted of alpha-lactose monohydrate (Pharmatose 325M), beta-lactose (Pharmatose DCL21) or a combination (1:1) thereof as carriers, and different concentrations of amorphous lactose. The determination of the enthalpy of desorption of the just re-crystallization lactose by the RH-perfusion cell was used to discriminate whether the monohydrate or the anhydrous form of lactose was produced. Differences in the re-crystallization behaviour of lactose at 25 degrees C and 58-100% RH were found. At 60-80% RH purely amorphous lactose showed a high heat of desorption which can be attributed to a very high content of formed beta-lactose. Powder mixtures containing high contents of amorphous lactose (8% and 15%, respectively) blended with alpha-lactose monohydrate as a carrier resulted in similar results at the same RH ranges. The high amount of beta-lactose can be due to the equilibrium anomeric composition. Whereas powder mixtures containing beta-lactose as a carrier and amorphous lactose in a concentration of 1%, 8% and 15%, respectively, formed less beta-lactose than the mixtures containing alpha-lactose monohydrate as a carrier. At a relative humidity of 90% none of the powder mixtures showed desorption as to the fact that in all cases only alpha-lactose monohydrate was formed at the surface of the re-crystallized lactose. Furthermore, mixtures of alpha-lactose monohydrate and beta-lactose (1:1) and 8% amorphous lactose were investigated. An increase in formed alpha-lactose monohydrate by increasing RH was found. To consolidate the results, the same mixtures were re-crystallized at different RH in desiccators and subsequently investigated in the solution calorimeter. The results of the pre-mix were confirmed by the solution calorimeter. In summary, purely amorphous lactose and mixtures containing alpha-lactose monohydrate as a carrier show different re-crystallization behaviour compared to mixtures containing beta-lactose as a carrier.

Authors+Show Affiliations

Department of Pharmaceutics and Biopharmaceutics, Christian Albrecht University Kiel, Kiel, Germany.No affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

16527465

Citation

Timmermann, Inga-Lis, et al. "Assessing the Re-crystallization Behaviour of Amorphous Lactose Using the RH-perfusion Cell." European Journal of Pharmaceutics and Biopharmaceutics : Official Journal of Arbeitsgemeinschaft Fur Pharmazeutische Verfahrenstechnik E.V, vol. 64, no. 1, 2006, pp. 107-14.
Timmermann IL, Steckel H, Trunk M. Assessing the re-crystallization behaviour of amorphous lactose using the RH-perfusion cell. Eur J Pharm Biopharm. 2006;64(1):107-14.
Timmermann, I. L., Steckel, H., & Trunk, M. (2006). Assessing the re-crystallization behaviour of amorphous lactose using the RH-perfusion cell. European Journal of Pharmaceutics and Biopharmaceutics : Official Journal of Arbeitsgemeinschaft Fur Pharmazeutische Verfahrenstechnik E.V, 64(1), 107-14.
Timmermann IL, Steckel H, Trunk M. Assessing the Re-crystallization Behaviour of Amorphous Lactose Using the RH-perfusion Cell. Eur J Pharm Biopharm. 2006;64(1):107-14. PubMed PMID: 16527465.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Assessing the re-crystallization behaviour of amorphous lactose using the RH-perfusion cell. AU - Timmermann,Inga-Lis, AU - Steckel,Hartwig, AU - Trunk,Michael, Y1 - 2006/03/09/ PY - 2005/02/25/received PY - 2006/01/19/accepted PY - 2006/3/11/pubmed PY - 2007/1/17/medline PY - 2006/3/11/entrez SP - 107 EP - 14 JF - European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V JO - Eur J Pharm Biopharm VL - 64 IS - 1 N2 - Many different reports have studied the crystallization behaviour of lactose, e.g., by exposing samples of amorphous lactose to different relative humidity at constant temperatures. However, only few reports are available investigating the formation of alpha-lactose monohydrate and beta-lactose during re-crystallization. Applying the static ampoule method in the microcalorimeter, the enthalpies of amorphous lactose were reported to be constantly 32 and 48 J/g, respectively, considering the mutarotation of lactose at 25 degrees C and 58% RH, 75% RH and 100% RH. In this study, an alternative microcalorimetric technique, the relative humidity-perfusion cell (RH-perfusion cell) was chosen. The RH-perfusion cell is able to deliver a constant and controlled flow of humidified air to the sample. Investigated compounds were purely amorphous lactose and different powder mixtures of lactose. They consisted of alpha-lactose monohydrate (Pharmatose 325M), beta-lactose (Pharmatose DCL21) or a combination (1:1) thereof as carriers, and different concentrations of amorphous lactose. The determination of the enthalpy of desorption of the just re-crystallization lactose by the RH-perfusion cell was used to discriminate whether the monohydrate or the anhydrous form of lactose was produced. Differences in the re-crystallization behaviour of lactose at 25 degrees C and 58-100% RH were found. At 60-80% RH purely amorphous lactose showed a high heat of desorption which can be attributed to a very high content of formed beta-lactose. Powder mixtures containing high contents of amorphous lactose (8% and 15%, respectively) blended with alpha-lactose monohydrate as a carrier resulted in similar results at the same RH ranges. The high amount of beta-lactose can be due to the equilibrium anomeric composition. Whereas powder mixtures containing beta-lactose as a carrier and amorphous lactose in a concentration of 1%, 8% and 15%, respectively, formed less beta-lactose than the mixtures containing alpha-lactose monohydrate as a carrier. At a relative humidity of 90% none of the powder mixtures showed desorption as to the fact that in all cases only alpha-lactose monohydrate was formed at the surface of the re-crystallized lactose. Furthermore, mixtures of alpha-lactose monohydrate and beta-lactose (1:1) and 8% amorphous lactose were investigated. An increase in formed alpha-lactose monohydrate by increasing RH was found. To consolidate the results, the same mixtures were re-crystallized at different RH in desiccators and subsequently investigated in the solution calorimeter. The results of the pre-mix were confirmed by the solution calorimeter. In summary, purely amorphous lactose and mixtures containing alpha-lactose monohydrate as a carrier show different re-crystallization behaviour compared to mixtures containing beta-lactose as a carrier. SN - 0939-6411 UR - https://www.unboundmedicine.com/medline/citation/16527465/Assessing_the_re_crystallization_behaviour_of_amorphous_lactose_using_the_RH_perfusion_cell_ DB - PRIME DP - Unbound Medicine ER -