Coaxial electrospinning and sustained release properties of gelatin-cellulose acetate core-shell ultrafine fibres

被引:22
|
作者
Sakuldao, Sutana [1 ]
Yoovidhya, Tipaporn [1 ]
Wongsasulak, Saowakon [1 ]
机构
[1] King Mongkut Univ Technol Thonburi, Fac Engn, Dept Food Engn, Bangkok 10140, Thailand
来源
SCIENCEASIA | 2011年 / 37卷 / 04期
关键词
encapsulation; protein; drug delivery; DRUG-DELIVERY; NANOFIBERS; PROTEINS; SYSTEMS; BLENDS; MATS;
D O I
10.2306/scienceasia1513-1874.2011.37.335
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Cellulose acetate (CA) ultrafine hollow fibres containing model core protein (i.e., gelatin) were fabricated by coaxial electrospinning. Proper conditions to fabricate the core-shell fibres were investigated with respect to the solution properties (i.e., viscosity, electrical conductivity, surface tension, and interfacial tension) as well as feed rates of core and shell solutions. The core-shell coaxial structures and fibre morphology were examined by transmission electron microscopy and scanning electron microscopy, respectively. In addition, the release characteristics of the coaxial fibrous film were examined in phosphate buffer solution pH 7.4 at 37 degrees C. The average diameter of the fibres was 392 +/- 96 nm, which increased as the core solution feed rate increased. The release mechanism of the gelatin from the fibrous film was anomalous diffusion and exhibited a near zero-order release pattern with a release half-life of similar to 7.4 days. The fibrous films immersed in the PBS for 20 days were still intact without bursting. The structure of hollow ultrafine fibres of CA (in form of fibrous film) is expected to hold potential for some proteinaceous pharmaceutical/food compounds sustained release in gastro-intestinal tract.
引用
收藏
页码:335 / 343
页数:9
相关论文
共 50 条
  • [31] The multifunctional wound dressing with core-shell structured fibers prepared by coaxial electrospinning
    Qilin WEI
    Feiyang XU
    Xingjian XU
    Xue GENG
    Lin YE
    Aiying ZHANG
    Zengguo FENG
    Frontiers of Materials Science, 2016, 10 (02) : 113 - 121+99
  • [32] Fabrication and Characterization of Core-shell Structured Composite Nanofibrous Scaffolds by Coaxial Electrospinning
    Ye, Qing
    Zhang, Kuihua
    Ke, Shengbao
    Wang, Chaoliang
    Zhang, Hongyi
    Wang, Jianye
    BIOTECHNOLOGY, CHEMICAL AND MATERIALS ENGINEERING, PTS 1-3, 2012, 393-395 : 754 - 757
  • [33] Coaxial electrospinning core-shell fibers for self-healing scratch on coatings
    Li, Pengchong
    Shang, Zhi
    Cui, Kejian
    Zhang, Huan
    Qiao, Zhi
    Zhu, Caizhen
    Zhao, Ning
    Xu, Jian
    CHINESE CHEMICAL LETTERS, 2019, 30 (01) : 157 - 159
  • [34] The Effect of Polymer Concentration on Coaxial Electrospinning of PVP/PCL Core-Shell Nanofibers
    Pala, Nursema
    Aral, Nebahat
    Nergis, Banu
    JOURNAL OF POLYTECHNIC-POLITEKNIK DERGISI, 2024, 27 (05):
  • [35] Fabrication of Core-shell Nanofibers by Electrospinning of Gelatin-based Emulsions.
    Zhang, Hui
    JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY, 2021, 98 : 187 - 187
  • [36] Fabrication of cellulose acetate/gelatin-eugenol core-shell structured nanofiber films for active packaging materials
    Shi, Yuanyue
    Cao, Xueke
    Zhu, Zhaozhang
    Ren, Jing
    Wang, Hao
    Kong, Baohua
    COLLOIDS AND SURFACES B-BIOINTERFACES, 2022, 218
  • [37] Highly ductile fibres and sheets by core-shell structuring of the cellulose nanofibrils
    Per A. Larsson
    Lars A. Berglund
    Lars Wågberg
    Cellulose, 2014, 21 : 323 - 333
  • [38] Highly ductile fibres and sheets by core-shell structuring of the cellulose nanofibrils
    Larsson, Per A.
    Berglund, Lars A.
    Wagberg, Lars
    CELLULOSE, 2014, 21 (01) : 323 - 333
  • [39] Electrospun core-shell nanofibers for drug encapsulation and sustained release
    Maleki, Mahboubeh
    Latifi, Masoud
    Amani-Tehran, Mohammad
    Mathur, Sanjay
    POLYMER ENGINEERING AND SCIENCE, 2013, 53 (08): : 1770 - 1779
  • [40] PMMA/PS coaxial electrospinning: core-shell fiber morphology as a function of material parameters
    Rahmani, Shahrzad
    Arefazar, Ahmad
    Latifi, Masoud
    MATERIALS RESEARCH EXPRESS, 2017, 4 (03):