Fabrication of poly (L-lactic acid)/gelatin composite tubular scaffolds for vascular tissue engineering

被引:79
|
作者
Shalumon, K. T.
Deepthi, S.
Anupama, M. S.
Nair, S. V.
Jayakumar, R. [1 ]
Chennazhi, K. P.
机构
[1] Amrita Vishwa Vidyapeetham Univ, Amrita Ctr Nanosci & Mol Med, Amrita Inst Med Sci, Kochi 682041, Kerala, India
关键词
Gelatin-PLLA tubular scaffold; Vascular tissue engineering; Electrospun nanofibers; BYPASS GRAFTS; ARCHITECTURE; MICRO; VEIN;
D O I
10.1016/j.ijbiomac.2014.09.058
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The in vitro fabrication of fully functional 3D vascular tissue construct represents one of the most fundamental challenges in vascular tissue engineering. Polymer blending is an effective method for developing, desirable bio-composites for tissue engineering. This study employs the blending of desired characteristics of a synthetic polymer, poly (L-lactic acid) (PLLA) and a biopolymer, gelatin for enhancing cell adhesion sites. Aligned and random PLLA/gelatin nanofibers were fabricated using electrospinning technique. Morphological and chemical characterization of the nanofibrous scaffolds was carried out and the size of fibers ranged from 100 to 500 nm. The SEM, fluorescent staining and viability assays revealed an increase in viability and proliferation of Human Umbilical Vein Endothelial Cells (HUVECs) and Smooth Muscle Cells (SMCs) proportional to gelatin content. The aligned fiber morphology helps cells to orient and elongate along their long axis. Thus the results were suggestive of the fact that topographically aligned nanofibrous scaffolds control cellular organization and possibly provide a good support for achieving the vital organization and physical properties of blood vessel. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:1048 / 1055
页数:8
相关论文
共 50 条
  • [1] Fabrication and fractal study of poly(L-lactic acid) gradient scaffolds for tissue engineering
    Key Laboratory of Beijing Municipality for Preparation and Processing of Novel Polymer Materials, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China
    Beijing Huagong Daxue Xuebao, 2006, 3 (56-60):
  • [2] Fabrication of poly(L-lactic acid) tissue engineering scaffolds with precisely controlled gradient structure
    Nie, Taotao
    Xue, Li
    Ge, Min
    Ma, Haiyun
    Zhang, Jinchao
    MATERIALS LETTERS, 2016, 176 : 25 - 28
  • [3] Electrospun poly(L-lactic acid)/hydroxyapatite composite fibrous scaffolds for bone tissue engineering
    Chuenjitkuntaworn, Boontharika
    Supaphol, Pitt
    Pavasant, Prasit
    Damrongsri, Damrong
    POLYMER INTERNATIONAL, 2010, 59 (02) : 227 - 235
  • [4] Fabrication and Characterization of Poly(L-lactic acid)-polycaprolactone Composite Nanofiber Scaffolds
    He Zhihang
    Liu Jia
    Jiao Jianjin
    Wu Guifang
    Xiao Xiufeng
    CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2014, 35 (10): : 2265 - 2271
  • [5] Fabrication of porous poly(L-lactic acid) scaffolds for bone tissue engineering via precise extrusion
    Xiong, Z
    Yan, YN
    Zhang, RJ
    Sun, L
    SCRIPTA MATERIALIA, 2001, 45 (07) : 773 - 779
  • [6] Fabrication and biocompatibility of poly(L-lactic acid) and chitosan composite scaffolds with hierarchical microstructures
    Lou, Tao
    Wang, Xuejun
    Yan, Xu
    Miao, Yu
    Long, Yun-Ze
    Yin, Hai-Lei
    Sun, Bin
    Song, Guojun
    MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2016, 64 : 341 - 345
  • [7] Fabrication and characterization of β-dicalcium silicate/poly(D,L-lactic acid) composite scaffolds
    Cheng, W
    Li, HY
    Chang, J
    MATERIALS LETTERS, 2005, 59 (17) : 2214 - 2218
  • [8] Crosslinkable Amine Coating of Poly(L-Lactic Acid) for Bone Tissue Engineering Scaffolds
    Richbourg, N. R.
    Sikavitsas, V.
    TISSUE ENGINEERING PART A, 2017, 23 : S83 - S84
  • [9] Biomimetic poly(glycerol sebacate)/poly(L-lactic acid) blend scaffolds for adipose tissue engineering
    Frydrych, Martin
    Roman, Sabiniano
    MacNeil, Sheila
    Chen, Biqiong
    ACTA BIOMATERIALIA, 2015, 18 : 40 - 49
  • [10] Surface engineering of nano-fibrous biodegradable poly(L-lactic acid) scaffolds for tissue engineering
    Liu, XH
    Won, YJ
    Ma, PX
    BIOLOGICAL AND BIOINSPIRED MATERIALS AND DEVICES, 2004, 823 : 243 - 248