Effect of inorganic and organic bioactive signals decoration on the biological performance of chitosan scaffolds for bone tissue engineering

被引:0
|
作者
Alessandra Soriente
Ines Fasolino
Maria Grazia Raucci
Christian Demitri
Marta Madaghiele
Antonella Giuri
Alessandro Sannino
Luigi Ambrosio
机构
[1] Composites and Biomaterials – National Research Council (IPCB-CNR),Institute of Polymers
[2] University of Salento,Department of Engineering for Innovation
来源
Journal of Materials Science: Materials in Medicine | 2018年 / 29卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The present work is focused on the design of a bioactive chitosan-based scaffold functionalized with organic and inorganic signals to provide the biochemical cues for promoting stem cell osteogenic commitment. The first approach is based on the use of a sequence of 20 amino acids corresponding to a 68–87 sequence in knuckle epitope of BMP-2 that was coupled covalently to the carboxyl group of chitosan scaffold. Meanwhile, the second approach is based on the biomimetic treatment, which allows the formation of hydroxyapatite nuclei on the scaffold surface. Both scaffolds bioactivated with organic and inorganic signals induce higher expression of an early marker of osteogenic differentiation (ALP) than the neat scaffolds after 3 days of cell culture. However, scaffolds decorated with BMP-mimicking peptide show higher values of ALP than the biomineralized one. Nevertheless, the biomineralized scaffolds showed better cellular behaviour than neat scaffolds, demonstrating the good effect of hydroxyapatite deposits on hMSC osteogenic differentiation. At long incubation time no significant difference among the biomineralized and BMP-activated scaffolds was observed. Furthermore, the highest level of Osteocalcin expression (OCN) was observed for scaffold with BMP2 mimic-peptide at day 21. The overall results showed that the presence of bioactive signals on the scaffold surface allows an osteoinductive effect on hMSC in a basal medium, making the modified chitosan scaffolds a promising candidate for bone tissue regeneration.
引用
收藏
相关论文
共 50 条
  • [21] Bioactive Glass-Based Scaffolds for Bone Tissue Engineering
    Will, Julia
    Gerhardt, Lutz-Christian
    Boccaccini, Aldo R.
    TISSUE ENGINEERING III: CELL-SURFACE INTERACTIONS FOR TISSUE CULTURE, 2012, 126 : 195 - 226
  • [22] BIOACTIVE CALCIUM PHOSPHATES AND NANOCOMPOSITE SCAFFOLDS FOR BONE TISSUE ENGINEERING
    Wang, Min
    ADVANCES IN BIOCERAMICS AND BIOTECHNOLOGIES, 2010, 218 : 175 - 183
  • [23] Chitosan-alginate hybrid scaffolds for bone tissue engineering
    Li, ZS
    Ramay, HR
    Hauch, KD
    Xiao, DM
    Zhang, MQ
    BIOMATERIALS, 2005, 26 (18) : 3919 - 3928
  • [24] Heparin-functionalized chitosan scaffolds for bone tissue engineering
    Gumusderelioglu, Menemse
    Aday, Sezin
    CARBOHYDRATE RESEARCH, 2011, 346 (05) : 606 - 613
  • [25] Nanoceramics-reinforced chitosan scaffolds in bone tissue engineering
    Harini, Ganesh
    Bharathi, Ramanathan
    Sankaranarayanan, Aravind
    Shanmugavadivu, Abinaya
    Selvamurugan, Nagarajan
    MATERIALS ADVANCES, 2023, 4 (18): : 3907 - 3928
  • [26] Synthesis, neutralization and blocking procedures of organic/inorganic hybrid scaffolds for bone tissue engineering applications
    Costa, Hermes S.
    Stancioli, Edel F. B.
    Pereira, Marivalda M.
    Orefice, Rodrigo L.
    Mansur, Herman S.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2009, 20 (02) : 529 - 535
  • [27] Synthesis, neutralization and blocking procedures of organic/inorganic hybrid scaffolds for bone tissue engineering applications
    Hermes S. Costa
    Edel F. B. Stancioli
    Marivalda M. Pereira
    Rodrigo L. Oréfice
    Herman S. Mansur
    Journal of Materials Science: Materials in Medicine, 2009, 20
  • [28] Effect of cellulose nanocrystals on scaffolds comprising chitosan, alginate and hydroxyapatite for bone tissue engineering
    Shaheen, Th, I
    Montaser, A. S.
    Li, Suming
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2019, 121 : 814 - 821
  • [29] Porosity Pattern of 3D Chitosan/Bioactive Glass Tissue Engineering Scaffolds Prepared for Bone Regeneration
    Hammad, Hoda G. H.
    Salama, Miral Nagy F.
    OPEN DENTISTRY JOURNAL, 2021, 15 : 41 - 56
  • [30] Bioactive 3D-printed chitosan-based scaffolds for personalized craniofacial bone tissue engineering
    Yousefiasl S.
    Sharifi E.
    Salahinejad E.
    Makvandi P.
    Irani S.
    Engineered Regeneration, 2023, 4 (01): : 1 - 11