Literature DB >> 26729533

Hot Melt Extrusion: Development of an Amorphous Solid Dispersion for an Insoluble Drug from Mini-scale to Clinical Scale.

Anjali M Agrawal1, Mayur S Dudhedia2, Ewa Zimny2.   

Abstract

The objective of the study was to develop an amorphous solid dispersion (ASD) for an insoluble compound X by hot melt extrusion (HME) process. The focus was to identify material-sparing approaches to develop bioavailable and stable ASD including scale up of HME process using minimal drug. Mixtures of compound X and polymers with and without surfactants or pH modifiers were evaluated by hot stage microscopy (HSM), polarized light microscopy (PLM), and modulated differential scanning calorimetry (mDSC), which enabled systematic selection of ASD components. Formulation blends of compound X with PVP K12 and PVP VA64 polymers were extruded through a 9-mm twin screw mini-extruder. Physical characterization of extrudates by PLM, XRPD, and mDSC indicated formation of single-phase ASD's. Accelerated stability testing was performed that allowed rapid selection of stable ASD's and suitable packaging configurations. Dissolution testing by a discriminating two-step non-sink dissolution method showed 70-80% drug release from prototype ASD's, which was around twofold higher compared to crystalline tablet formulations. The in vivo pharmacokinetic study in dogs showed that bioavailability from ASD of compound X with PVP VA64 was four times higher compared to crystalline tablet formulations. The HME process was scaled up from lab scale to clinical scale using volumetric scale up approach and scale-independent-specific energy parameter. The present study demonstrated systematic development of ASD dosage form and scale up of HME process to clinical scale using minimal drug (∼500 g), which allowed successful clinical batch manufacture of enabled formulation within 7 months.

Entities:  

Keywords:  amorphous solid dispersion; bioavailability; dissolution; hot melt extrusion; process scale up

Mesh:

Substances:

Year:  2015        PMID: 26729533      PMCID: PMC4766127          DOI: 10.1208/s12249-015-0425-7

Source DB:  PubMed          Journal:  AAPS PharmSciTech        ISSN: 1530-9932            Impact factor:   3.246


  26 in total

1.  Physicochemical properties of the amorphous drug, cast films, and spray dried powders to predict formulation probability of success for solid dispersions: etravirine.

Authors:  Ilse Weuts; Frederic Van Dycke; Jody Voorspoels; Steve De Cort; Sigrid Stokbroekx; Ruud Leemans; Marcus E Brewster; Dawei Xu; Brigitte Segmuller; Ya Tsz A Turner; Clive J Roberts; Martyn C Davies; Sheng Qi; Duncan Q M Craig; Mike Reading
Journal:  J Pharm Sci       Date:  2010-06-22       Impact factor: 3.534

Review 2.  Pharmaceutical applications of hot-melt extrusion: part I.

Authors:  Michael M Crowley; Feng Zhang; Michael A Repka; Sridhar Thumma; Sampada B Upadhye; Sunil Kumar Battu; James W McGinity; Charles Martin
Journal:  Drug Dev Ind Pharm       Date:  2007-09       Impact factor: 3.225

Review 3.  Evaluation of amorphous solid dispersion properties using thermal analysis techniques.

Authors:  Jared A Baird; Lynne S Taylor
Journal:  Adv Drug Deliv Rev       Date:  2011-08-04       Impact factor: 15.470

Review 4.  Melt extrusion with poorly soluble drugs.

Authors:  Sejal Shah; Sindhuri Maddineni; Jiannan Lu; Michael A Repka
Journal:  Int J Pharm       Date:  2012-11-20       Impact factor: 5.875

5.  The effect of water plasticization on the molecular mobility and crystallization tendency of amorphous disaccharides.

Authors:  Ville Petteri Heljo; Antti Nordberg; Mikko Tenho; Tommi Virtanen; Kirsi Jouppila; Jarno Salonen; Sirkka Liisa Maunu; Anne Mari Juppo
Journal:  Pharm Res       Date:  2011-12-28       Impact factor: 4.200

6.  Physical properties of solid molecular dispersions of indomethacin with poly(vinylpyrrolidone) and poly(vinylpyrrolidone-co-vinyl-acetate) in relation to indomethacin crystallization.

Authors:  T Matsumoto; G Zografi
Journal:  Pharm Res       Date:  1999-11       Impact factor: 4.200

7.  Solubility parameters as predictors of miscibility in solid dispersions.

Authors:  D J Greenhalgh; A C Williams; P Timmins; P York
Journal:  J Pharm Sci       Date:  1999-11       Impact factor: 3.534

8.  Crystallization inhibition in solid dispersions of MK-0591 and poly(vinylpyrrolidone) polymers.

Authors:  K Khougaz; S D Clas
Journal:  J Pharm Sci       Date:  2000-10       Impact factor: 3.534

9.  Molecular mobility of amorphous pharmaceutical solids below their glass transition temperatures.

Authors:  B C Hancock; S L Shamblin; G Zografi
Journal:  Pharm Res       Date:  1995-06       Impact factor: 4.200

10.  Increased dissolution and oral absorption of itraconazole/Soluplus extrudate compared with itraconazole nanosuspension.

Authors:  Keru Zhang; Hongxia Yu; Qing Luo; Shenshen Yang; Xia Lin; Yu Zhang; Bin Tian; Xing Tang
Journal:  Eur J Pharm Biopharm       Date:  2013-04-03       Impact factor: 5.571

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  14 in total

1.  Pharmaceutical Thermal Processing.

Authors:  Feng Zhang; Michael A Repka
Journal:  AAPS PharmSciTech       Date:  2016-02-09       Impact factor: 3.246

2.  Development of Tablet Formulation of Amorphous Solid Dispersions Prepared by Hot Melt Extrusion Using Quality by Design Approach.

Authors:  Anjali Agrawal; Mayur Dudhedia; Weibin Deng; Kevin Shepard; Li Zhong; Edward Povilaitis; Ewa Zimny
Journal:  AAPS PharmSciTech       Date:  2016-01-12       Impact factor: 3.246

Review 3.  Hot-Melt Extrusion: a Roadmap for Product Development.

Authors:  Marta F Simões; Rui M A Pinto; Sérgio Simões
Journal:  AAPS PharmSciTech       Date:  2021-06-17       Impact factor: 3.246

Review 4.  Continuous twin screw granulation - An advanced alternative granulation technology for use in the pharmaceutical industry.

Authors:  Suresh Bandari; Dinesh Nyavanandi; Venkata Raman Kallakunta; Kartik Yadav Janga; Sandeep Sarabu; Arun Butreddy; Michael A Repka
Journal:  Int J Pharm       Date:  2020-03-16       Impact factor: 5.875

Review 5.  Melt extrusion with poorly soluble drugs - An integrated review.

Authors:  Michael A Repka; Suresh Bandari; Venkata Raman Kallakunta; Anh Q Vo; Haley McFall; Manjeet B Pimparade; Ajinkya M Bhagurkar
Journal:  Int J Pharm       Date:  2017-11-02       Impact factor: 5.875

6.  Application of hot melt extrusion to enhance the dissolution and oral bioavailability of oleanolic acid.

Authors:  Nannan Gao; Mengran Guo; Qiang Fu; Zhonggui He
Journal:  Asian J Pharm Sci       Date:  2016-08-04       Impact factor: 6.598

Review 7.  Quality-by-design in hot melt extrusion based amorphous solid dispersions: An industrial perspective on product development.

Authors:  Arun Butreddy; Suresh Bandari; Michael A Repka
Journal:  Eur J Pharm Sci       Date:  2020-11-28       Impact factor: 4.384

8.  Validation of Model-Based Melt Viscosity in Hot-Melt Extrusion Numerical Simulation.

Authors:  Esther S Bochmann; Andreas Gryczke; Karl G Wagner
Journal:  Pharmaceutics       Date:  2018-08-18       Impact factor: 6.321

9.  Automated PET-RAFT Polymerization Towards Pharmaceutical Amorphous Solid Dispersion Development.

Authors:  Rahul Upadhya; Ashish Punia; Mythili J Kanagala; Lina Liu; Matthew Lamm; Timothy A Rhodes; Adam J Gormley
Journal:  ACS Appl Polym Mater       Date:  2021-02-15

10.  CONTINUOUS PRODUCTION OF RALOXIFENE HYDROCHLORIDE LOADED NANOSTRUCTURED LIPID CARRIERS USING HOT-MELT EXTRUSION TECHNOLOGY.

Authors:  Derick Muhindo; Eman A Ashour; Mashan Almutairi; Poorva H Joshi; Michael A Repka
Journal:  J Drug Deliv Sci Technol       Date:  2021-07-05       Impact factor: 5.062

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