Soluplus Graft Copolymer: Potential Novel Carrier Polymer in Electrospinning of Nanofibrous Drug Delivery Systems for Wound Therapy

被引:55
作者
Paaver, Urve [1 ]
Tamm, Ingrid [1 ]
Laidmaee, Ivo [1 ,2 ]
Lust, Andres [1 ]
Kirsimaee, Kalle [3 ]
Veski, Peep [1 ]
Kogermann, Karin [1 ]
Heinaemaeki, Jyrki [1 ]
机构
[1] Univ Tartu, Fac Med, Dept Pharm, EE-50411 Tartu, Estonia
[2] Univ Tartu, Fac Med, Inst Biomed & Translat Med, Immunol Grp, EE-50411 Tartu, Estonia
[3] Univ Tartu, Inst Ecol & Earth Sci, EE-50411 Tartu, Estonia
关键词
AMORPHOUS STATE; X-RAY; DISSOLUTION; PIROXICAM; RELEASE;
D O I
10.1155/2014/789765
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Electrospinning is an effective method in preparing polymeric nanofibrous drug delivery systems (DDSs) for topical wound healing and skin burn therapy applications. The aim of the present study was to investigate a new synthetic graft copolymer (Soluplus) as a hydrophilic carrier polymer in electrospinning of nanofibrous DDSs. Soluplus (polyvinyl caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer (PCL-PVAc-PEG)) was applied in the nonwoven nanomats loaded with piroxicam (PRX) as a poorly water-soluble drug. Raman spectroscopy, X-ray powder diffraction, differential scanning calorimetry, and scanning electron microscopy (SEM) were used in the physical characterization of nanofibrous DDSs. According to the SEM results, the drug-loaded PCL-PVAc-PEG nanofibers were circular in cross-section with an average diameter ranging from 500 nm up to 2 mu m. Electrospinning stabilized the amorphous state of PRX. In addition, consistent and sustained-release profile was achieved with the present nanofibrous DDSs at the physiologically relevant temperature and pH applicable in wound healing therapy. In conclusion, electrospinning can be used to prepare nanofibrous DDSs of PCL-PVAc-PEG graft copolymer (Soluplus) and to stabilize the amorphous state of a poorly water-soluble PRX. The use of this synthetic graft copolymer can open new options to formulate nanofibrous DDSs for wound healing.
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页数:7
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