Literature DB >> 21722000

Improved dissolution behavior of lipophilic drugs by solid dispersions: the production process as starting point for formulation considerations.

Parinda Srinarong1, Hans de Waard, Henderik W Frijlink, Wouter L J Hinrichs.   

Abstract

INTRODUCTION: Many new drug substances have low aqueous solubility which can cause poor bioavailability after oral administration. The application of solid dispersions is a useful method to increase the dissolution rate of these drugs and thereby improve their bioavailability. So far, several methods have been developed to prepare solid dispersions. To obtain a product with the desired attributes, both the formulation and production processes should be considered. AREAS COVERED: The most currently used methods to produce solid dispersions, such as the fusion method, hot melt extrusion, spray drying, freeze drying and supercritical fluid precipitation, are reviewed in this paper. In addition, the physicochemical characteristics of the obtained solid dispersions are discussed. EXPERT OPINION: Solid dispersions can be successfully prepared by simple fusion, hot melt extrusion, spray drying, freeze drying and supercritical fluid precipitation. Hot melt extrusion, spray drying and freeze drying are processes that can be applied for large scale production. The simple fusion method is not very suitable for large scale production, but is particularly suitable for screening formulations. The most recent method to produce sold dispersions is supercritical fluid precipitation. The process conditions of this method need extensive investigation, in particular in relationship with the selection of the type of carrier and/or solvent. Both processes and formulation aspects strongly affect the characteristics of solid dispersion products. Furthermore, application of crystalline solid dispersions is gaining increasing interest because they are thermodynamically more stable than amorphous solid dispersions.

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Year:  2011        PMID: 21722000     DOI: 10.1517/17425247.2011.598147

Source DB:  PubMed          Journal:  Expert Opin Drug Deliv        ISSN: 1742-5247            Impact factor:   6.648


  8 in total

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Authors:  Mohammed Jafar; Mohammed Saifuddin Khalid; Hajer Alghamdi; Mohd Amir; Sarah Aon Al Makki; Ohud Saud Alotaibi; Afnan Ali Al Rmais; Syed Sarim Imam; Sultan Alshehri; Sadaf Jamal Gilani
Journal:  AAPS PharmSciTech       Date:  2022-02-10       Impact factor: 3.246

Review 3.  Recent Advances in Water-Soluble Vitamins Delivery Systems Prepared by Mechanical Processes (Electrospinning and Spray-Drying Techniques) for Food and Nutraceuticals Applications-A Review.

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Journal:  Foods       Date:  2022-04-27

Review 4.  Recent Advancement in Topical Nanocarriers for the Treatment of Psoriasis.

Authors:  Prativa Biswasroy; Deepak Pradhan; Biswakanth Kar; Goutam Ghosh; Goutam Rath
Journal:  AAPS PharmSciTech       Date:  2021-05-26       Impact factor: 3.246

5.  Enhanced bioavailability of sirolimus via preparation of solid dispersion nanoparticles using a supercritical antisolvent process.

Authors:  Min-Soo Kim; Jeong-Soo Kim; Hee Jun Park; Won Kyung Cho; Kwang-Ho Cha; Sung-Joo Hwang
Journal:  Int J Nanomedicine       Date:  2011-11-24

6.  The influence of drug physical state on the dissolution enhancement of solid dispersions prepared via hot-melt extrusion: a case study using olanzapine.

Authors:  Maria Fátima Pina; Min Zhao; João F Pinto; João J Sousa; Duncan Q M Craig
Journal:  J Pharm Sci       Date:  2014-04       Impact factor: 3.534

7.  Freeze Dried Quetiapine-Nicotinamide Binary Solid Dispersions: A New Strategy for Improving Physicochemical Properties and Ex Vivo Diffusion.

Authors:  Ahmed Mahmoud Abdelhaleem Ali; Mayyas Mohammad Ahmad Al-Remawi
Journal:  J Pharm (Cairo)       Date:  2016-11-30

8.  Stabilisation and Growth of Metastable Form II of Fluconazole in Amorphous Solid Dispersions.

Authors:  Maciej Nowak; Maciej Gajda; Przemysław Baranowski; Patrycja Szymczyk; Bożena Karolewicz; Karol P Nartowski
Journal:  Pharmaceutics       Date:  2019-12-20       Impact factor: 6.321

  8 in total

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