Literature DB >> 11169536

Protein-fatty acid complex for enhanced loading and stability within biodegradable nanoparticles.

H S Yoo1, H K Choi, T G Park.   

Abstract

Lysozyme was hydrophobically modified with a fatty acid, sodium oleate, via an ion-pairing mechanism. Ionic binding between an anionic carboxylic group of sodium oleate and basic amino groups in lysozyme was primarily utilized to form lysozyme-oleate complex. The complex formation was pH dependent. The lysozyme-oleate complex dissolved in an organic solvent exhibited much higher conformational stability at elevated temperature compared with free lysozyme in the same solvent. The complex was formulated into biodegradable nanoparticles by a spontaneous emulsion and solvent diffusion method. The resultant formulation showed near 100% encapsulation efficiency of lysozyme within nanoparticles with < 100 nm in diameter with a narrow size distribution. Lysozyme could be loaded into the nanoparticles up to 18.6% (w/w) with concomitantly increased particle sizes. This study demonstrates a new formulation method of biodegradable nanoparticles with highly efficient encapsulation of proteins, which are potentially useful for oral protein delivery including mucosal vaccination.

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Year:  2001        PMID: 11169536     DOI: 10.1002/1520-6017(200102)90:2<194::aid-jps10>3.0.co;2-q

Source DB:  PubMed          Journal:  J Pharm Sci        ISSN: 0022-3549            Impact factor:   3.534


  9 in total

1.  Development and characterization of nanoparticulate formulation of a water soluble prodrug of dexamethasone by HIP complexation.

Authors:  Ripal Gaudana; Ashwin Parenky; Ravi Vaishya; Swapan K Samanta; Ashim K Mitra
Journal:  J Microencapsul       Date:  2010-10-12       Impact factor: 3.142

2.  Nanoprecipitation versus emulsion-based techniques for the encapsulation of proteins into biodegradable nanoparticles and process-related stability issues.

Authors:  Ugo Bilati; Eric Allémann; Eric Doelker
Journal:  AAPS PharmSciTech       Date:  2005-12-01       Impact factor: 3.246

3.  Encapsulation and controlled release of lysozyme from electrospun poly(epsilon-caprolactone)/poly(ethylene glycol) non-woven membranes by formation of lysozyme-oleate complexes.

Authors:  Yan Li; Hongliang Jiang; Kangjie Zhu
Journal:  J Mater Sci Mater Med       Date:  2007-07-31       Impact factor: 3.896

4.  A novel approach for antibody nanocarriers development through hydrophobic ion-pairing complexation.

Authors:  Ashaben Patel; Ripal Gaudana; Ashim K Mitra
Journal:  J Microencapsul       Date:  2014-04-03       Impact factor: 3.142

5.  Design and evaluation of a novel nanoparticulate-based formulation encapsulating a HIP complex of lysozyme.

Authors:  Ripal Gaudana; Mitan Gokulgandhi; Varun Khurana; Deep Kwatra; Ashim K Mitra
Journal:  Pharm Dev Technol       Date:  2012-11-09       Impact factor: 3.133

6.  Encapsulation of Protein-Polysaccharide HIP Complex in Polymeric Nanoparticles.

Authors:  Ripal Gaudana; Varun Khurana; Ashwin Parenky; Ashim K Mitra
Journal:  J Drug Deliv       Date:  2011-04-27

Review 7.  Hydrophobic ion pairing: encapsulating small molecules, peptides, and proteins into nanocarriers.

Authors:  Kurt D Ristroph; Robert K Prud'homme
Journal:  Nanoscale Adv       Date:  2019-10-01

8.  Block copolymer micelles as nanocontainers for controlled release of proteins from biocompatible oil phases.

Authors:  Andrew C Miller; Anna Bershteyn; Wuisiew Tan; Paula T Hammond; Robert E Cohen; Darrell J Irvine
Journal:  Biomacromolecules       Date:  2009-04-13       Impact factor: 6.988

Review 9.  Nanoparticles from renewable polymers.

Authors:  Frederik R Wurm; Clemens K Weiss
Journal:  Front Chem       Date:  2014-07-18       Impact factor: 5.221

  9 in total

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