Characterization and regulated naproxen release of hydroxypropyl cyclosophoraose-pullulan microspheres

[Display omitted] •Hybrid microspheres of biocompatible polysaccharide pullulan (Pul) and hydroxypropyl cyclosophoraoses (HPCys) were prepared.•The HPCys-Pul microspheres showed both effective encapsulation and controlled release of naproxen (NPX).•Those microspheres were completely characterized by...

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Published inJournal of industrial and engineering chemistry (Seoul, Korea) Vol. 48; pp. 108 - 118
Main Authors Choi, Jae Min, Lee, Benel, Jeong, Daham, Park, Kyeong Hui, Choi, Eun-Ji, Jeon, Yong-Joon, Dindulkar, Someshwar D., Cho, Eunae, Do, Sun Hee, Lee, Kyungho, Lee, Im-Soon, Park, Seyeon, Jun, Bong-Hyun, Yu, Jae-Hyuk, Jung, Seunho
Format Journal Article
LanguageEnglish
Published Elsevier B.V 25.04.2017
한국공업화학회
Subjects
Online AccessGet full text
ISSN1226-086X
1876-794X
DOI10.1016/j.jiec.2016.12.026

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Abstract [Display omitted] •Hybrid microspheres of biocompatible polysaccharide pullulan (Pul) and hydroxypropyl cyclosophoraoses (HPCys) were prepared.•The HPCys-Pul microspheres showed both effective encapsulation and controlled release of naproxen (NPX).•Those microspheres were completely characterized by TGA, XRD, FE-SEM, FT-IR, and solid-state NMR spectroscopy.•Hybrid HPCys-Pul microspheres resulted in a pH-regulated release system as well as enhanced entrapment efficiency for NPX. Hydroxypropyl cyclosophoraose-pullulan (HPCys-Pul) microspheres were designed as a novel hybrid system of biocompatible pullulan matrice and pendant hydroxypropyl cyclosophoraoses with drug complexing ability. The HPCys-Pul microspheres were prepared by emulsion crosslinking method, and characterized using thermogravimetric analysis, Fourier transform infrared spectroscopy, scanning electron microscopy, and solid state NMR spectroscopy. By virtue of hydroxypropyl cyclosophoraoses, the developed microspheres can encapsulate 4.2-fold more naproxen than pullulan microspheres. Korsmeyer–Peppas model was introduced for describing release kinetics. In vivo naproxen release analysis was carried out in Sprague-Dawley (SD) rats. From those results HPCys-Pul microsphere will be a promising platform for controlled drug delivery.
AbstractList Hydroxypropyl cyclosophoraose-pullulan (HPCys-Pul) microspheres were designed as a novel hybridsystem of biocompatible pullulan matrice and pendant hydroxypropyl cyclosophoraoses with drugcomplexing ability. The HPCys-Pul microspheres were prepared by emulsion crosslinking method, andcharacterized using thermogravimetric analysis, Fourier transform infrared spectroscopy, scanningelectron microscopy, and solid state NMR spectroscopy. By virtue of hydroxypropyl cyclosophoraoses, thedeveloped microspheres can encapsulate 4.2-fold more naproxen than pullulan microspheres. Korsmeyer–Peppas model was introduced for describing release kinetics. In vivo naproxen releaseanalysis was carried out in Sprague-Dawley (SD) rats. From those results HPCys-Pul microsphere will be apromising platform for controlled drug delivery. KCI Citation Count: 16
[Display omitted] •Hybrid microspheres of biocompatible polysaccharide pullulan (Pul) and hydroxypropyl cyclosophoraoses (HPCys) were prepared.•The HPCys-Pul microspheres showed both effective encapsulation and controlled release of naproxen (NPX).•Those microspheres were completely characterized by TGA, XRD, FE-SEM, FT-IR, and solid-state NMR spectroscopy.•Hybrid HPCys-Pul microspheres resulted in a pH-regulated release system as well as enhanced entrapment efficiency for NPX. Hydroxypropyl cyclosophoraose-pullulan (HPCys-Pul) microspheres were designed as a novel hybrid system of biocompatible pullulan matrice and pendant hydroxypropyl cyclosophoraoses with drug complexing ability. The HPCys-Pul microspheres were prepared by emulsion crosslinking method, and characterized using thermogravimetric analysis, Fourier transform infrared spectroscopy, scanning electron microscopy, and solid state NMR spectroscopy. By virtue of hydroxypropyl cyclosophoraoses, the developed microspheres can encapsulate 4.2-fold more naproxen than pullulan microspheres. Korsmeyer–Peppas model was introduced for describing release kinetics. In vivo naproxen release analysis was carried out in Sprague-Dawley (SD) rats. From those results HPCys-Pul microsphere will be a promising platform for controlled drug delivery.
Author Dindulkar, Someshwar D.
Park, Seyeon
Lee, Im-Soon
Yu, Jae-Hyuk
Choi, Eun-Ji
Lee, Kyungho
Lee, Benel
Jeong, Daham
Jung, Seunho
Choi, Jae Min
Cho, Eunae
Park, Kyeong Hui
Jeon, Yong-Joon
Jun, Bong-Hyun
Do, Sun Hee
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Keywords Pullulan
Hydroxypropyl cyclosophoraose
Drug delivery
Microsphere
Naproxen
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Snippet [Display omitted] •Hybrid microspheres of biocompatible polysaccharide pullulan (Pul) and hydroxypropyl cyclosophoraoses (HPCys) were prepared.•The HPCys-Pul...
Hydroxypropyl cyclosophoraose-pullulan (HPCys-Pul) microspheres were designed as a novel hybridsystem of biocompatible pullulan matrice and pendant...
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SubjectTerms Drug delivery
Hydroxypropyl cyclosophoraose
Microsphere
Naproxen
Pullulan
화학공학
Title Characterization and regulated naproxen release of hydroxypropyl cyclosophoraose-pullulan microspheres
URI https://dx.doi.org/10.1016/j.jiec.2016.12.026
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