Literature DB >> 35119809

Magnesium Oxide Nanoparticle Coordinated Phosphate-Functionalized Chitosan Injectable Hydrogel for Osteogenesis and Angiogenesis in Bone Regeneration.

Yingqi Chen1,2, Weibei Sheng1,2, Jianjing Lin1,2, Chongzhou Fang3, Jiapeng Deng1,2, Peng Zhang1,2, Meng Zhou1,2, Peng Liu1,2, Jian Weng1,2, Fei Yu1,2, Deli Wang1,2, Bin Kang1,2, Hui Zeng1,2.   

Abstract

Natural polysaccharide (NPH)-based injectable hydrogels have shown great potential for critical-sized bone defect repair. However, their osteogenic, angiogenic, and mechanical properties are insufficient. Here, MgO nanoparticles (NPs) were incorporated into a newly synthesized water-soluble phosphocreatine-functionalized chitosan (CSMP) water solution to form an injectable hydrogel (CSMP-MgO) via supramolecular combination between phosphate groups in CSMP and magnesium in MgO NPs to circumvent these drawbacks of chitosan-based injectable hydrogels. Water-soluble chitosan deviate CSMP was first synthesized by grafting methacrylic anhydride and phosphocreatine into a chitosan chain in a one-step lyophilization process. The phosphocreatine in this hydrogel not only provides sites to combine with MgO NPs to form supramolecular binding but also serves as the reservoir to control Mg2+ release. As a result, the lyophilized CSMP-MgO hydrogels presented a porous structure with some small holes in the pore wall, and the pore diameters ranged from 50 to 100 μm. The CSMP-MgO injectable hydrogels were restricted from swelling in DI water (lowest swelling ratio was 16.0 ± 1.1 g/g) and presented no brittle failure during compression even at a strain above 85% (maximum compressive strength was 195.0 kPa) versus the control groups (28.0 and 41.3 kPa for CSMP and CSMP-MgO (0.5) hydrogels), with regulated Mg2+ release in a stable and sustained manner. The CSMP-MgO injectable hydrogels promoted in vitro calcium phosphate (hydroxyapatite (HA) and tetracalcium phosphate (TTCP)) deposition in supersaturated calcium phosphate solution and presented no cytotoxicity to MC3T3-E1 cells; the CSMP-MgO hydrogel promoted MC3T3-E1 cell osteogenic differentiation with upregulation of BSP, OPN, and Osterix osteogenic gene expression and mineralization and HUVEC tube formation. Among them, CSMP-MgO (5) presented most of these properties. Moreover, this hydrogel (CSMP-MgO (5)) showed an excellent ability to promote new bone formation in critical-sized calvarial defects in rats. Thus, the CSMP-MgO injectable hydrogel shows great promise for bone regeneration.

Entities:  

Keywords:  angiogenesis; injectable hydrogel; osteogenesis; phosphate-functionalized chitosan; supramolecular combination

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Substances:

Year:  2022        PMID: 35119809     DOI: 10.1021/acsami.1c21260

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  4 in total

1.  Nano artificial periosteum PLGA/MgO/Quercetin accelerates repair of bone defects through promoting osteogenic - angiogenic coupling effect via Wnt/ β-catenin pathway.

Authors:  Xi He; Wenbin Liu; Yanling Liu; Kai Zhang; Yan Sun; Pengfei Lei; Yihe Hu
Journal:  Mater Today Bio       Date:  2022-07-01

2.  Improvement of the mechanical properties and osteogenic activity of 3D-printed polylactic acid porous scaffolds by nano-hydroxyapatite and nano-magnesium oxide.

Authors:  Dian Xu; Zexian Xu; Lidi Cheng; Xiaohan Gao; Jian Sun; Liqiang Chen
Journal:  Heliyon       Date:  2022-06-17

Review 3.  Chitosan-Based Scaffolds for Facilitated Endogenous Bone Re-Generation.

Authors:  Yao Zhao; Sinuo Zhao; Zhengxin Ma; Chunmei Ding; Jingdi Chen; Jianshu Li
Journal:  Pharmaceuticals (Basel)       Date:  2022-08-19

4.  A bioactive glass functional hydrogel enhances bone augmentation via synergistic angiogenesis, self-swelling and osteogenesis.

Authors:  Fujian Zhao; Zhen Yang; Huacui Xiong; Yang Yan; Xiaofeng Chen; Longquan Shao
Journal:  Bioact Mater       Date:  2022-10-03
  4 in total

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