Fabrication of a biomimetic ZeinPDA nanofibrous scaffold impregnated with BMP-2 peptide conjugated TiO2 nanoparticle for bone tissue engineering

被引:24
作者
Babitha, S. [1 ]
Annamalai, Meenakshi [2 ]
Dykas, Michal Marcin [2 ,3 ]
Saha, Surajit [2 ]
Poddar, Kingshuk [2 ,3 ]
Venugopal, Jayarama Reddy [7 ]
Ramakrishna, Seeram [7 ,8 ]
Venkatesan, Thirumalai [2 ,3 ,4 ,5 ,6 ]
Korrapati, Purna Sai [1 ]
机构
[1] Cent Leather Res Inst, Biomat Dept, CSIR, Madras 600020, Tamil Nadu, India
[2] Natl Univ Singapore NUS, NUSNNI NanoCore, Singapore, Singapore
[3] Natl Univ Singapore NUS, NUS Grad Sch Integrat Sci & Engn, Singapore, Singapore
[4] Natl Univ Singapore NUS, Dept Elect Engn, Singapore, Singapore
[5] Natl Univ Singapore NUS, Dept Mat Sci & Engn, Singapore, Singapore
[6] Natl Univ Singapore NUS, Dept Phys, Fac Sci, Singapore, Singapore
[7] Natl Univ Singapore NUS, Dept Mech Engn, Ctr Nanofibers & Nanotechnol, Singapore, Singapore
[8] Jinan Univ, Guangdong Hongkong Macau Inst CNS Regenerat GHMIC, Guangzhou 510632, Guangdong, Peoples R China
关键词
BMP-2; peptide; bone tissue engineering; nanofiber; poly dopamine; Zein; IN-VIVO; CELL-ADHESION; MORPHOGENETIC PROTEIN-2; MECHANICAL-PROPERTIES; DRUG-DELIVERY; VITRO; BIOCOMPATIBILITY; BIOMATERIALS; REGENERATION; SURFACES;
D O I
10.1002/term.2563
中图分类号
Q813 [细胞工程];
学科分类号
摘要
A biomimetic Zein polydopamine based nanofiber scaffold was fabricated to deliver bone morphogenic protein-2 (BMP-2) peptide conjugated titanium dioxide nanoparticles in a sustained manner for investigating its osteogenic differentiation potential. To prolong its retention time at the target site, BMP-2 peptide has been conjugated to titanium dioxide nanoparticles owing to its high surface to volume ratio. The effect of biochemical cues from BMP-2 peptide and nanotopographical stimulation of electrospun Zein polydopamine nanofiber were examined for its enhanced osteogenic expression of human fetal osteoblast cells. The sustained delivery of bioactive signals, improved cell adhesion, mineralization, and differentiation could be attributed to its highly interconnected nanofibrous matrix with unique material composition. Further, the expression of osteogenic markers revealed that the fabricated nanofibrous scaffold possess better cell-biomaterial interactions. These promising results demonstrate the potential of the composite nanofibrous scaffold as an effective biomaterial substrate for bone regeneration.
引用
收藏
页码:991 / 1001
页数:11
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