Literature DB >> 16713152

Retinol-encapsulated low molecular water-soluble chitosan nanoparticles.

Dong-Gon Kim1, Young-Il Jeong, Changyong Choi, Sung-Hee Roh, Seong-Koo Kang, Mi-Kyeong Jang, Jae-Woon Nah.   

Abstract

This aim of this study was to encapsulate retinol into chitosan nanoparticles and reconstitute it into aqueous solution. Retinol-encapsulated chitosan nanoparticles were prepared for application of cosmetic and pharmaceutical applications. Retinol-encapsulated chitosan nanoparticle has a spherical shape and its particle sizes were around 50-200 nm according to the drug contents. Particle size was increased according to the increase of drug contents. Solubility of retinol is able to increase by encapsulation into chitosan nanoparticles more than 1600-fold. It was suggested that retinol was encapsulated into chitosan nanoparticles by ion complex as a result of FT-IR spectra. Specific peak of chitosan at 1590 cm(-1) was divided to semi-doublet due to the electrostatic interaction between amine group of chitosan and hydroxyl group of retinol. At (1)H NMR spectra, specific peaks of retinol disappeared when retinol-encapsulated chitosan nanoparticles were reconstituted into D(2)O while specific peaks both of retinol and chitosan appeared at D(2)O/DMSO (1/4, v/v) mixture. XRD patterns also showed that crystal peaks of retinol were disappeared by encapsulation into chitosan nanoparticles. Retinol-encapsulated nanoparticles were completely reconstituted into aqueous solution as same as original aqueous solution and zeta potential of reconstituted chitosan nanoparticles was similar to their original solution. At HPLC study, retinol was stably and efficiently encapsulated into chitosan nanoparticles.

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Year:  2006        PMID: 16713152     DOI: 10.1016/j.ijpharm.2006.03.040

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  21 in total

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3.  Oral Delivery of Teriparatide Using a Nanoemulsion System: Design, in Vitro and in Vivo Evaluation.

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Journal:  Pharm Res       Date:  2020-04-06       Impact factor: 4.200

4.  Zein/Phospholipid Composite Nanoparticles for Successful Delivery of Gallic Acid into aHSCs: Influence of Size, Surface Charge, and Vitamin A Coupling.

Authors:  Shaimaa Ali Ali Radwan; Walaa H El-Maadawy; Carol Yousry; Aliaa Nabil ElMeshad; Raguia Aly Shoukri
Journal:  Int J Nanomedicine       Date:  2020-10-16

Review 5.  Polymeric nanoparticles-based topical delivery systems for the treatment of dermatological diseases.

Authors:  Zheng Zhang; Pei-Chin Tsai; Tannaz Ramezanli; Bozena B Michniak-Kohn
Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol       Date:  2013-02-05

6.  Improvement of dissolution behavior of poorly water soluble drugs by biodegradable polymeric submicron carriers containing sparingly methylated β-cyclodextrin.

Authors:  Dilesh J Singhavi; Shagufta Khan; Pramod G Yeole
Journal:  J Mater Sci Mater Med       Date:  2013-02-08       Impact factor: 3.896

7.  Improvement in retinol analysis by fluorescence and solid phase extraction (SPE) in micellar medium.

Authors:  M Torre; M Sánchez-Hernández; S Vera; M P San Andrés
Journal:  J Fluoresc       Date:  2008-01-16       Impact factor: 2.217

8.  Chitosan enhances the stability and targeting of immuno-nanovehicles to cerebro-vascular deposits of Alzheimer's disease amyloid protein.

Authors:  Kristen M Jaruszewski; Subramanian Ramakrishnan; Joseph F Poduslo; Karunya K Kandimalla
Journal:  Nanomedicine       Date:  2011-06-24       Impact factor: 5.307

Review 9.  Recent advances of chitosan nanoparticles as drug carriers.

Authors:  Jun Jie Wang; Zhao Wu Zeng; Ren Zhong Xiao; Tian Xie; Guang Lin Zhou; Xiao Ri Zhan; Shu Ling Wang
Journal:  Int J Nanomedicine       Date:  2011-04-11

10.  Polymeric nanoparticles, nanospheres and nanocapsules, for cutaneous applications.

Authors:  Sílvia S Guterres; Marta P Alves; Adriana R Pohlmann
Journal:  Drug Target Insights       Date:  2007-07-11
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