Literature DB >> 33801249

Fabrication and Characterization of Biodegradable Gelatin Methacrylate/Biphasic Calcium Phosphate Composite Hydrogel for Bone Tissue Engineering.

Ji-Bong Choi1, Yu-Kyoung Kim1, Seon-Mi Byeon2, Jung-Eun Park1, Tae-Sung Bae1, Yong-Seok Jang1, Min-Ho Lee1.   

Abstract

In the field of bone tissue, maintaining adequate mechanical strength and tissue volume is an important part. Recently, biphasic calcium phosphate (BCP) was fabricated to solve the shortcomings of hydroxyapatite (HA) and beta-tricalcium phosphate (β-TCP), and it is widely studied in the field of bone-tissue engineering. In this study, a composite hydrogel was fabricated by applying BCP to gelatin methacrylate (GelMA). It was tested by using a mechanical tester, to characterize the mechanical properties of the prepared composite hydrogel. The fabricated BCP was analyzed through FTIR and XRD. As a result, a different characteristic pattern from hydroxyapatite (HA) and beta-tricalcium phosphate (β-TCP) was observed, and it was confirmed that it was successfully bound to the hydrogel. Then, the proliferation and differentiation of preosteoblasts were checked to evaluate cell viability. The analysis results showed high cell viability and relatively high bone differentiation ability in the composite hydrogel to which BCP was applied. These features have been shown to be beneficial for bone regeneration by maintaining the volume and shape of the hydrogel. In addition, hydrogels can be advantageous for clinical use, as they can shape the structure of the material for custom applications.

Entities:  

Keywords:  biocompatibility; biodegradable; biphasic calcium phosphate nanoparticle (BCP-NP); gelatin methacryloyl (GelMA); hydrogel; tissue engineering; visible light

Year:  2021        PMID: 33801249      PMCID: PMC7999599          DOI: 10.3390/nano11030617

Source DB:  PubMed          Journal:  Nanomaterials (Basel)        ISSN: 2079-4991            Impact factor:   5.076


  35 in total

1.  Development of chitosan/gelatin hydrogels incorporation of biphasic calcium phosphate nanoparticles for bone tissue engineering.

Authors:  Lei Nie; Qiaoyun Wu; Haiyue Long; Kehui Hu; Pei Li; Can Wang; Meng Sun; Jing Dong; Xiaoyan Wei; Jinping Suo; Dangling Hua; Shiliang Liu; Hongyu Yuan; Shoufeng Yang
Journal:  J Biomater Sci Polym Ed       Date:  2019-09-11       Impact factor: 3.517

2.  Biomimetic gelatin methacrylamide hydrogel scaffolds for bone tissue engineering.

Authors:  Xingxing Fang; Jin Xie; Lixin Zhong; Jierong Li; Dongming Rong; Xiongshen Li; Jun Ouyang
Journal:  J Mater Chem B       Date:  2016-01-11       Impact factor: 6.331

3.  A simple and high-resolution stereolithography-based 3D bioprinting system using visible light crosslinkable bioinks.

Authors:  Zongjie Wang; Raafa Abdulla; Benjamin Parker; Roya Samanipour; Sanjoy Ghosh; Keekyoung Kim
Journal:  Biofabrication       Date:  2015-12-22       Impact factor: 9.954

4.  A dentin-derived hydrogel bioink for 3D bioprinting of cell laden scaffolds for regenerative dentistry.

Authors:  Avathamsa Athirasala; Anthony Tahayeri; Greeshma Thrivikraman; Cristiane M França; Nelson Monteiro; Victor Tran; Jack Ferracane; Luiz E Bertassoni
Journal:  Biofabrication       Date:  2018-01-10       Impact factor: 9.954

5.  Quantification of Substitution of Gelatin Methacryloyl: Best Practice and Current Pitfalls.

Authors:  Christiane Claaßen; Marc H Claaßen; Vincent Truffault; Lisa Sewald; Günter E M Tovar; Kirsten Borchers; Alexander Southan
Journal:  Biomacromolecules       Date:  2017-12-21       Impact factor: 6.988

6.  Biphasic calcium phosphate nanocomposite porous scaffolds for load-bearing bone tissue engineering.

Authors:  Hassna R R Ramay; M Zhang
Journal:  Biomaterials       Date:  2004-09       Impact factor: 12.479

7.  Fiber-reinforced hydrogel scaffolds for heart valve tissue engineering.

Authors:  Maryam Eslami; Nihal Engin Vrana; Pinar Zorlutuna; Shilpa Sant; Sungmi Jung; Nafiseh Masoumi; Ramazan Ali Khavari-Nejad; Gholamreza Javadi; Ali Khademhosseini
Journal:  J Biomater Appl       Date:  2014-04-14       Impact factor: 2.646

8.  Preparation of dexamethasone-loaded biphasic calcium phosphate nanoparticles/collagen porous composite scaffolds for bone tissue engineering.

Authors:  Ying Chen; Naoki Kawazoe; Guoping Chen
Journal:  Acta Biomater       Date:  2017-12-12       Impact factor: 8.947

9.  Photocrosslinkable Gelatin Hydrogel for Epidermal Tissue Engineering.

Authors:  Xin Zhao; Qi Lang; Lara Yildirimer; Zhi Yuan Lin; Wenguo Cui; Nasim Annabi; Kee Woei Ng; Mehmet R Dokmeci; Amir M Ghaemmaghami; Ali Khademhosseini
Journal:  Adv Healthc Mater       Date:  2015-04-16       Impact factor: 9.933

10.  3D Culture of Chondrocytes in Gelatin Hydrogels with Different Stiffness.

Authors:  Xiaomeng Li; Shangwu Chen; Jingchao Li; Xinlong Wang; Jing Zhang; Naoki Kawazoe; Guoping Chen
Journal:  Polymers (Basel)       Date:  2016-07-26       Impact factor: 4.329

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  2 in total

1.  Novel Nano-Engineered Biomaterials for Bone Tissue Engineering.

Authors:  Karan Gulati; Abdalla Abdal-Hay; Sašo Ivanovski
Journal:  Nanomaterials (Basel)       Date:  2022-01-21       Impact factor: 5.076

Review 2.  Gelatin Methacrylate Hydrogel for Tissue Engineering Applications-A Review on Material Modifications.

Authors:  Sasinan Bupphathong; Carlos Quiroz; Wei Huang; Pei-Feng Chung; Hsuan-Ya Tao; Chih-Hsin Lin
Journal:  Pharmaceuticals (Basel)       Date:  2022-01-29
  2 in total

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