Issue 19, 2020

Injectable oxygen-generating nanocomposite hydrogels with prolonged oxygen delivery for enhanced cell proliferation under hypoxic and normoxic conditions

Abstract

We describe a new organic peroxide-based injectable biomaterial that was prepared by using benzoylperoxide and LAPONITE® incorporated into an alginate hydrogel (BPO–AlgL). BPO–AlgL shows sustained release of O2 over a period of 14 days and reduces the hypoxia-induced cell death. BPO–AlgL also promotes enhanced cell viability by providing sustained O2 within the 3D AlgL scaffold. In addition, BPO–AlgL increases the O2 level in the environment of the cells, which led to a decrease in the proliferation of malignant cells, while it also resulted in an increase in the viability of healthy fibroblast cells. Therefore, our new oxygen generating organic peroxide-based injectable 3D biomaterials have potential to contribute in the development of next generation advanced tissue engineering biomaterials.

Graphical abstract: Injectable oxygen-generating nanocomposite hydrogels with prolonged oxygen delivery for enhanced cell proliferation under hypoxic and normoxic conditions

Supplementary files

Article information

Article type
Communication
Submitted
03 Apr 2020
Accepted
16 Apr 2020
First published
18 Apr 2020

J. Mater. Chem. B, 2020,8, 4195-4201

Injectable oxygen-generating nanocomposite hydrogels with prolonged oxygen delivery for enhanced cell proliferation under hypoxic and normoxic conditions

A. Motealleh and N. S. Kehr, J. Mater. Chem. B, 2020, 8, 4195 DOI: 10.1039/D0TB00885K

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