Literature DB >> 26097172

Visible light crosslinking of methacrylated hyaluronan hydrogels for injectable tissue repair.

Spencer L Fenn1, Rachael A Oldinski1,2.   

Abstract

Tissue engineering hydrogels are primarily cured in situ using ultraviolet (UV) radiation which limits the use of hydrogels as drug or cell carriers. Visible green light activated crosslinking systems are presented as a safe alternative to UV photocrosslinked hydrogels, without compromising material properties such as viscosity and stiffness. The objective of this study was to fabricate and characterize photocrosslinked hydrogels with well-regulated gelation kinetics and mechanical properties for the repair or replacement of soft tissue. An anhydrous methacrylation of hyaluronan (HA) was performed to control the degree of modification (DOM) of HA, verified by (1) H-NMR spectroscopy. UV-activated crosslinking was compared to visible green light activated crosslinking. While the different photocrosslinking techniques resulted in varied crosslinking times, comparable mechanical properties of UV and green light activated crosslinked hydrogels were achieved using each photocrosslinking method by adjusting time of light exposure. Methacrylated HA (HA-MA) hydrogels of varying molecular weight, DOM, and concentration exhibited compressive moduli ranging from 1 kPa to 116 kPa, for UV crosslinking, and 3 kPa to 146 kPa, for green light crosslinking. HA-MA molecular weight and concentration were found to significantly influence moduli values. HA-MA hydrogels did not exhibit any significant cytotoxic effects toward human mesenchymal stem cells. Green light activated crosslinking systems are presented as a viable method to form natural-based hydrogels in situ.
© 2015 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 104B: 1229-1236, 2016. © 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  gelation time; hyaluronan; hydrogel; injectable; methacrylation; osteochondral; photocrosslinking; visible light

Mesh:

Substances:

Year:  2015        PMID: 26097172      PMCID: PMC4684809          DOI: 10.1002/jbm.b.33476

Source DB:  PubMed          Journal:  J Biomed Mater Res B Appl Biomater        ISSN: 1552-4973            Impact factor:   3.368


  35 in total

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  16 in total

Review 1.  Cell-laden hydrogels for osteochondral and cartilage tissue engineering.

Authors:  Jingzhou Yang; Yu Shrike Zhang; Kan Yue; Ali Khademhosseini
Journal:  Acta Biomater       Date:  2017-01-11       Impact factor: 8.947

2.  Dual crosslinking strategy to generate mechanically viable cell-laden printable constructs using methacrylated collagen bioinks.

Authors:  Nilabh S Kajave; Trevor Schmitt; Thuy-Uyen Nguyen; Vipuil Kishore
Journal:  Mater Sci Eng C Mater Biol Appl       Date:  2019-10-09       Impact factor: 7.328

3.  The Diverse Roles of Hydrogel Mechanics in Injectable Stem Cell Transplantation.

Authors:  Abbygail A Foster; Laura M Marquardt; Sarah C Heilshorn
Journal:  Curr Opin Chem Eng       Date:  2016-12-12       Impact factor: 5.163

4.  Mechanical properties and failure analysis of visible light crosslinked alginate-based tissue sealants.

Authors:  Patrick N Charron; Spencer L Fenn; Alex Poniz; Rachael A Oldinski
Journal:  J Mech Behav Biomed Mater       Date:  2016-02-10

5.  Anticancer Therapeutic Alginate-Based Tissue Sealants for Lung Repair.

Authors:  Spencer L Fenn; Patrick N Charron; Rachael A Oldinski
Journal:  ACS Appl Mater Interfaces       Date:  2017-07-06       Impact factor: 9.229

6.  Bio-inspired green light crosslinked alginate-heparin hydrogels support HUVEC tube formation.

Authors:  Patrick N Charron; Luis M Garcia; Irfan Tahir; Rachael A Floreani
Journal:  J Mech Behav Biomed Mater       Date:  2021-10-28

7.  Collagen- and hyaluronic acid-based hydrogels and their biomedical applications.

Authors:  Qinghua Xu; Jessica E Torres; Mazin Hakim; Paulina M Babiak; Pallabi Pal; Carly M Battistoni; Michael Nguyen; Alyssa Panitch; Luis Solorio; Julie C Liu
Journal:  Mater Sci Eng R Rep       Date:  2021-07-30       Impact factor: 33.667

8.  Dual-Cross-Linked Methacrylated Alginate Sub-Microspheres for Intracellular Chemotherapeutic Delivery.

Authors:  Spencer L Fenn; Tianxin Miao; Ryan M Scherrer; Rachael A Oldinski
Journal:  ACS Appl Mater Interfaces       Date:  2016-07-11       Impact factor: 9.229

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Journal:  J Mater Sci Mater Med       Date:  2018-08-27       Impact factor: 4.727

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Authors:  Qiang Zhang; Chunyu Qian; Wanshu Xiao; Huajun Zhu; Jun Guo; Zili Ge; Wenguo Cui
Journal:  RSC Adv       Date:  2019-06-11       Impact factor: 4.036

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