Literature DB >> 31573790

Injectable Citrate-Based Hydrogel as an Angiogenic Biomaterial Improves Cardiac Repair after Myocardial Infarction.

Zhize Yuan1, Yung-Hao Tsou, Xue-Qing Zhang2, Shixing Huang1, Yang Yang1, Mingzhu Gao2, William Ho, Qiang Zhao1, Xiaofeng Ye1, Xiaoyang Xu.   

Abstract

Implanted medical biomaterials are closely in contact with host biological systems via biomaterial-cell/tissue interactions, and these interactions play pivotal roles in regulating cell functions and tissue regeneration. However, many biomaterials degrade over time, and these degradation products also have been shown to interact with host cells/tissue. Therefore, it may prove useful to specifically design implanted biomaterials with degradation products which greatly improve the performance of the implant. Herein, we report an injectable, citrate-containing polyester hydrogel which can release citrate as a cell regulator via hydrogel degradation and simultaneously show sustained release of an encapsulated growth factor Mydgf. By coupling the therapeutic effect of the hydrogel degradation product (citrate) with encapsulated Mydgf, we observed improved postmyocardial infarction (MI) heart repair in a rat MI model. Intramyocardial injection of our Mydgf-loaded citrate-containing hydrogel was shown to significantly reduce scar formation and infarct size, increase wall thickness and neovascularization, and improve heart function. This bioactive injectable hydrogel-mediated combinatorial approach offers myriad advantages including potential adjustment of delivery rate and duration, improved therapeutic effect, and minimally invasive administration. Our rational design combining beneficial degradation product and controlled release of therapeutics provides inspiration toward the next generation of biomaterials aiming to revolutionize regenerative medicine.

Entities:  

Keywords:  Mydgf; cardiac remodeling; injectable hydrogel; myocardial infarction (MI); protein delivery

Mesh:

Substances:

Year:  2019        PMID: 31573790     DOI: 10.1021/acsami.9b12043

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


  14 in total

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Review 5.  Biomaterials Loaded with Growth Factors/Cytokines and Stem Cells for Cardiac Tissue Regeneration.

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Journal:  Front Cell Dev Biol       Date:  2021-01-12

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Journal:  Theranostics       Date:  2022-01-01       Impact factor: 11.600

Review 8.  Therapeutic Acellular Scaffolds for Limiting Left Ventricular Remodelling-Current Status and Future Directions.

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Journal:  Int J Mol Sci       Date:  2021-12-02       Impact factor: 5.923

9.  Roles and Mechanisms of Irisin in Attenuating Pathological Features of Osteoarthritis.

Authors:  Xiangfen Li; Xiaofang Zhu; Hongle Wu; Thomas E Van Dyke; Xiaoyang Xu; Elise F Morgan; Wenyu Fu; Chuanju Liu; Qisheng Tu; Dingming Huang; Jake Chen
Journal:  Front Cell Dev Biol       Date:  2021-09-28

10.  Engineering of injectable hydrogels associate with Adipose-Derived stem cells delivery for anti-cardiac hypertrophy agents.

Authors:  Guangyu Long; Quanhe Wang; Shaolin Li; Junzhong Tao; Boyan Li; Xiangxiang Zhang; Xi Zhao
Journal:  Drug Deliv       Date:  2021-12       Impact factor: 6.819

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