返回
3D-Printed Biopolymers for Tissue Engineering Application
DOI:10.1155/2014/829145.png)
摘要
En 中文
3D printing technology has recently gained substantial interest for potential applications in tissue engineering due to the ability of making a three-dimensional object of virtually any shape from a digital model. 3D-printed biopolymers, which combine the 3D printing technology and biopolymers, have shown great potential in tissue engineering applications and are receiving significant attention, which has resulted in the development of numerous research programs regarding the material systems which are available for 3D printing. This review focuses on recent advances in the development of biopolymer materials, including natural biopolymer-based materials and synthetic biopolymer-based materials prepared using 3D printing technology, and some future challenges and applications of this technology are discussed.
Keyword:
COMPOSITE SCAFFOLDS
IN-VITRO
BIOMEDICAL APPLICATIONS
SURFACE MODIFICATION
NANO-HYDROXYAPATITE
CARBON NANOFIBER
CHITIN FIBERS
BONE-MARROW
BIOCOMPATIBILITY
HYDROGELS
期刊
IF:
13.7
论文数:
3.3K
被引数:
9.1K
机构
引用论文
A nano-hydroxyapatite - Pullulan/dextran polysaccharide composite macroporous material for bone tissue engineering一种用于骨组织工程的纳米羟基磷灰石-普鲁兰/葡聚糖多糖复合大孔材料
BIOMATERIALS
IF12.9
Asymmetric Synthesis of (S)-Norlaudanosine and (S)-Tetrahydrohomopapaverine by Catalytic Asymmetric Hydrogenation with Chiral Diphosphine-Iridium(I)-Phthalimide Complex Catalysts
HETEROCYCLES
IF0
Words (but not Tones) facilitate object categorization: Evidence from 6- and 12-month-olds单词 (但不是音调) 有助于对象分类: 来自6个月和12个月大的证据
Cognition
IF0
Assembled alginate/chitosan nanotubes for biological application生物应用的组装海藻酸盐/壳聚糖纳米管
BIOMATERIALS
IF12.9
The use of carbon nanotubes to induce osteogenic differentiation of human adipose-derived MSCs in vitro and ectopic bone formation in vivo
BIOMATERIALS
IF12.9

