Literature DB >> 27784239

Membrane-Based Technologies in the Pharmaceutical Industry and Continuous Production of Polymer-Coated Crystals/Particles.

Dengyue Chen1, Kamalesh K Sirkar1, Chi Jin, Dhananjay Singh, Robert Pfeffer2.   

Abstract

BACKGROUND: Membrane technologies are of increasing importance in a variety of separation and purification applications involving liquid phases and gaseous mixtures. Although the most widely used applications at this time are in water treatment including desalination, there are many applications in chemical, food, healthcare, paper and petrochemical industries. This brief review is concerned with existing and emerging applications of various membrane technologies in the pharmaceutical and biopharmaceutical industry.
METHODS: The goal of this review article is to identify important membrane processes and techniques which are being used or proposed to be used in the pharmaceutical and biopharmaceutical operations. How novel membrane processes can be useful for delivery of crystalline/particulate drugs is also of interest.
RESULTS: Membrane separation technologies are extensively used in downstream processes for bio-pharmaceutical separation and purification operations via microfiltration, ultrafiltration and diafiltration. Also the new technique of membrane chromatography allows efficient purification of monoclonal antibodies. Membrane filtration techniques of reverse osmosis and nanofiltration are being combined with bioreactors and advanced oxidation processes to treat wastewaters from pharmaceutical plants. Nanofiltration with organic solvent-stable membranes can implement solvent exchange and catalyst recovery during organic solvent-based drug synthesis of pharmaceutical compounds/intermediates. Membranes in the form of hollow fibers can be conveniently used to implement crystallization of pharmaceutical compounds. The novel crystallization methods of solid hollow fiber cooling crystallizer (SHFCC) and porous hollow fiber anti-solvent crystallization (PHFAC) are being developed to provide efficient methods for continuous production of polymer-coated drug crystals in the area of drug delivery.
CONCLUSION: This brief review provides a general introduction to various applications of membrane technologies in the pharmaceutical/biopharmaceutical industry with special emphasis on novel membrane techniques for pharmaceutical applications. The method of coating a drug particle with a polymer using the SHFCC method is stable and ready for scale-up for operation over an extended period. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.org.

Entities:  

Keywords:  Membrane separation and purification; drug particles; membrane filtration; polymer coating; precipitation

Mesh:

Substances:

Year:  2017        PMID: 27784239     DOI: 10.2174/1381612822666161025145229

Source DB:  PubMed          Journal:  Curr Pharm Des        ISSN: 1381-6128            Impact factor:   3.116


  3 in total

Review 1.  ATR-FTIR spectroscopy and spectroscopic imaging for the analysis of biopharmaceuticals.

Authors:  Hannah Tiernan; Bernadette Byrne; Sergei G Kazarian
Journal:  Spectrochim Acta A Mol Biomol Spectrosc       Date:  2020-06-22       Impact factor: 4.098

2.  Dislodging Dichromate in Mine Slops Applying Flat Supplying Membrane Equipment Containing Carrier N235/7301.

Authors:  Liang Pei
Journal:  Membranes (Basel)       Date:  2022-09-12

3.  Removal of Polytungstate from Mine Wastewater Using a Flat Renewal Membrane Reactor with N1633 as a Carrier.

Authors:  Liang Pei; Jia Duo; Linlin Chu
Journal:  Int J Environ Res Public Health       Date:  2022-09-05       Impact factor: 4.614

  3 in total

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