Page 15 - IJB-6-2
P. 15
Agarwala
development, as this field is growing fast beyond 9. Bardajee GR, Hooshyar Z, Rezanezhad H, 2012, A Novel and
its early stage. Improvement in the conductivity Green Biomaterial Based Silver Nanocomposite Hydrogel:
of the hydrogels may be one research direction, Synthesis, Characterization and Antibacterial Effect. J Inorg
while incorporating new functionalities such as Biochem, 117:367–73. DOI: 10.1016/j.jinorgbio.2012.06.012.
biodegradability and mechanical strength can 10. Mohan YM, Lee K, Premkumar T, et al., 2007, Hydrogel
open new avenues for applications. Innovation Networks as Nanoreactors: A Novel Approach to Silver
is also required in fabrication methods to allow Nanoparticles for Antibacterial Applications. Polymer,
varied composition of hydrogels to be laid down 48:158–64. DOI: 10.1016/j.polymer.2006.10.045.
in desired fashion. 11. Wei QB, Fu F, Zhang YQ, et al., 2014, Preparation,
Characterization, And Antibacterial Properties Of Ph-
Acknowledgments Responsive P(MMA-Co-MAA)/Silver Nanocomposite
The work was supported by the Department of Hydrogels. J Polym Res, 21:349. DOI: 10.1007/s10965-013-
Engineering, Aarhus University, Denmark. 0349-4.
12. Juby KA, Dwivedi C, Kumar M, et al., 2012, Silver
References Nanoparticle-loaded PVA/gum Acacia Hydrogel: Synthesis,
Characterization and Antibacterial Study. Carbohydr Polym,
1. Miyata T, Uragami T, Nakamae K, 2002, Biomolecule- 89:906–13. DOI: 10.1016/j.carbpol.2012.04.033.
sensitive Hydrogels. Adv Drug Deliv Rev, 54:79–98. DOI: 13. Devaki SJ, Narayanan RK, Sarojam S, 2014, Electrically
10.1016/s0169-409x(01)00241-1. Conducting Silver Nanoparticle-polyacrylic Acid Hydrogel
2. Hoffman AS, 2012, Hydrogels for Biomedical Applications. by In situ Reduction and Polymerization Approach. Mater
Adv Drug Deliv Rev, 64:18–23. Lett, 116:135–8. DOI: 10.1016/j.matlet.2013.10.110.
3. Hardy JG, Villancio-Wolter MK, Sukhavasi RC, 2015, 14. Xiao H, Xia Y, Cai C, 2013, Conducting Polymer Hydrogel
Electrical Stimulation of Human Mesenchymal Stem Cells Reactor for Synthesizing Au Nanoparticles and Its Use in the
on Conductive Nanofibers Enhances their Differentiation Reduction of P-nitrophenol. J Nanopart Res, 15:1521. DOI:
Toward Osteogenic Outcomes. Macromol Rapid Commun, 10.1007/s11051-013-1521-9.
36:1884–90. DOI: 10.1002/marc.201500233. 15. Zhai D, Liu B, Shi Y, 2013, Highly Sensitive Glucose
4. Guiseppi-Elie A, 2010, Electroconductive Hydrogels: Sensor Based on Pt Nanoparticle/Polyaniline Hydrogel
Synthesis, Characterization and Biomedical Heterostructures. ACS Nano, 7:3540–6. DOI: 10.1021/
Applications. Biomaterials, 31:2701–16. DOI: 10.1016/j. nn400482d.
biomaterials.2009.12.052. 16. Fuhrer R, Athanassiou EK, Luechinger NA, et al., 2009,
5. Distler T, Boccaccini AR, 2019, 3D Printing of Electrically Crosslinking Metal Nanoparticles into the Polymer Backbone
Conductive Hydrogels for Tissue Engineering and of Hydrogels Enables Preparation of Soft, Magnetic Field-
Biosensors-a Review. Acta Biomater, 101:1–13. DOI: driven Actuators with Muscle-like Flexibility. Small,
10.1016/j.actbio.2019.08.044. 5(3):383–8. DOI: 10.1002/smll.200801091.
6. Nair LS, Laurencin CT, 2007, Silver Nanoparticles: Synthesis 17. Mittal H, Ballav N, Mishra SB, 2014, Gum Ghatti and
and Therapeutic Applications. J Biomed Nanotechnol, 3:301– Fe O Magnetic Nanoparticles Based Nanocomposites for
3
4
16. the Effective Adsorption of Methylene Blue from Aqueous
7. Endo T, Ikeda R, Yanagida Y, et al., 2008, Stimuli-responsive Solution. J Ind Eng Chem, 20:2184–92. DOI: 10.1016/j.
Hydrogel-silver Nanoparticles Composite for Development jiec.2013.09.049.
of Localized Surface Plasmon Resonance-based Optical 18. Yuan B, Cademartiri L, 2015, Flexible One-dimensional
Biosensor. Anal Chim Acta, 611:205–11. DOI: 10.1016/j. Nanostructures: A Review. J Mater Sci Technol, 31: 607–15.
aca.2008.01.078. 19. Gong S, Cheng W, 2017, One‐dimensional Nanomaterials
8. Vimala K, Sivudu KS, Mohan YM, et al., 2009, Controlled for Soft Electronics. Adv Electron Mater, 3:1600314. DOI:
Silver Nanoparticles Synthesis in Semi-hydrogel Networks 10.1002/aelm.201600314.
of Poly (Acrylamide) and Carbohydrates: A Rational 20. Lim C, Shin Y, Jung J, 2019, Stretchable Conductive
Methodology for Antibacterial Application. Carbohydr Nanocomposite Based on Alginate Hydrogel and Silver
Polym, 75:463–71. DOI: 10.1016/j.carbpol.2008.08.009. Nanowires for Wearable Electronics. APL Mater, 7:031502.
International Journal of Bioprinting (2020)–Volume 6, Issue 2 11

