Printable Poly(N-acryloyl glycinamide) Nanocomposite Hydrogel Formulations

Author:

Majstorović Nikola,Zahedtalaban Mohamed,Agarwal SeemaORCID

Abstract

AbstractPrintable synthetic polymer formulations leading to hydrogels with high strengths, swelling resistance, and bioactivities are required to control the mechanical and functional characteristics of biological scaffolds. Here, we present nanocomposite hydrogels prepared with the upper critical solution (UCST)-type polymer ink poly(N-acryloyl glycinamide) (PNAGA) and different concentrations of carbon nanotubes (CNTs). Nanofiller CNTs are recommended for increasing the bioactivities of hydrogel scaffolds. Printing methods were established in which the CNTs were included before and after the fabrication of the ink. The methods were compared to each other and their temperatures and shear-thinning properties were determined from the rheologies. A self-thickening method was utilized for 3D printing of nanocomposite constructs, and the printabilities varied with the CNT content and preparation method. After photopolymerization of the printed constructs, the nanocomposite hydrogel exhibited a slightly higher mechanical strength (15,500 Pa, Emod = 0.697 ± 0.222 MPa), great elasticity (elongation ~500%) and an electrical conductivity (5.2‧10−4 ± 1.5‧10−4 S‧m−1) comparable to that of the neat PNAGA hydrogel. Since high-strength constructs can be 3D printed with good resolution and low cytotoxicity, these nanocomposite hydrogel scaffolds could be used in biological and tissue engineering applications.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Polymers and Plastics

Reference30 articles.

1. Ahmed EM. Hydrogel: Preparation, characterization, and applications: A review. J Adv Res. 2015;6:105–21.

2. Slaughter BV, Khurshid SS, Fisher OZ, Khademhosseini A, Peppas NA. Hydrogels in regenerative medicine. Adv Mater. 2009;21:3307–29.

3. Zhang Y, Tian X, Zhang Q, Xie H, Wang B, Feng Y. Hydrochar-embedded carboxymethyl cellulose-g-poly (acrylic acid) hydrogel as stable soil water retention and nutrient release agent for plant growth. Hydrochar-embedded carboxymethyl Cellul-g-poly (acrylic acid) hydrogel stable soil water Retent nutrient release agent plant growth 2022;7:116–27.

4. Van Tran V, Park D, Lee Y-C. Hydrogel applications for adsorption of contaminants in water and wastewater treatment. Hydrogel Appl adsorption Contam water wastewater Treat. 2018;25:24569–99.

5. Szekalska M, Puciłowska A, Szymańska E, Ciosek P, Winnicka K. Alginate: Current use and future perspectives in pharmaceutical and biomedical applications. Alginate: Curr Use Future Perspect Pharm Biomed Appl. 2016;2016:7697031.

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