Skip to main content
Top
Published in: Journal of Coatings Technology and Research 5/2021

13-07-2021

Influence of curcumin-modified graphene oxide on antibacterial properties of polyurethane coating

Authors: Thuy Duong Nguyen, Van Cuong Bui, Boi An Tran, Thanh Thao Phan, Ke Oanh Vu, Anh Son Nguyen, Anh Truc Trinh, Tuan Anh Nguyen, Thi Chinh Tang, Thi Xuan Hang To

Published in: Journal of Coatings Technology and Research | Issue 5/2021

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

This study aims to prepare antibacterial coatings based on polyurethane and curcumin-modified graphene oxide. Curcumin-modified graphene oxide (GO-CU) as an antibacterial agent was prepared using the adsorption method. GO-CU was incorporated in polyurethane (PU) coatings at concentrations of 0.1 and 0.5 wt%. Synthesized GO-CU was characterized by Fourier transform infrared spectroscopy, UV–Vis spectroscopy, transmission scanning electron microscopy, and zeta potential measurement. Curcumin content in GO-CU was determined by thermogravimetric analysis. Antibacterial properties of GO-CU powder and PU coatings containing GO-CU were investigated by counting the colony-forming unit (CFU) of Escherichia coli (E. coli) strain. The results showed that curcumin was attached on GO-CU surface and curcumin content in GO-CU was about 32.9%. GO-CU provided a higher antibacterial effect against E. coli than GO. The antibacterial efficiency of PU coatings containing 0.1 wt% GO-CU was 85.8%; however, the increase in GO-CU concentration did not significantly increase the antibacterial efficiency of PU coating.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Wang, C, Mu, C, Lin, W, Xiao, H, “Functional-modified polyurethanes for rendering surfaces antimicrobial: An overview.” Advances in Colloid and Interface Science, 283 102235 (2020)CrossRef Wang, C, Mu, C, Lin, W, Xiao, H, “Functional-modified polyurethanes for rendering surfaces antimicrobial: An overview.” Advances in Colloid and Interface Science, 283 102235 (2020)CrossRef
2.
go back to reference Chen, J, Peng, H, Wang, X, Shao, F, Yuan, Z, Han, H, “Graphene oxide exhibits broad-spectrum antimicrobial activity against bacterial phytopathogens and fungal conidia by intertwining and membrane perturbation.” Nanoscale, 6 (3) 1879–1889 (2014)CrossRef Chen, J, Peng, H, Wang, X, Shao, F, Yuan, Z, Han, H, “Graphene oxide exhibits broad-spectrum antimicrobial activity against bacterial phytopathogens and fungal conidia by intertwining and membrane perturbation.” Nanoscale, 6 (3) 1879–1889 (2014)CrossRef
3.
go back to reference Di Giulio, M, Zappacosta, R, Di Lodovico, S, Di Campli, E, Siani, G, Fontana, A, Cellini, L, “Antimicrobial and antibiofilm efficacy of graphene oxide against chronic wound microorganisms.” Antimicrobial Agents and Chemotherapy, 62 (7) e00547 (2018)CrossRef Di Giulio, M, Zappacosta, R, Di Lodovico, S, Di Campli, E, Siani, G, Fontana, A, Cellini, L, “Antimicrobial and antibiofilm efficacy of graphene oxide against chronic wound microorganisms.” Antimicrobial Agents and Chemotherapy, 62 (7) e00547 (2018)CrossRef
4.
go back to reference Akhavan, O, Ghaderi, E, “Toxicity of graphene and graphene oxide nanowalls against bacteria.” ACS Nano, 4 (10) 5731–5736 (2010)CrossRef Akhavan, O, Ghaderi, E, “Toxicity of graphene and graphene oxide nanowalls against bacteria.” ACS Nano, 4 (10) 5731–5736 (2010)CrossRef
5.
go back to reference Liu, S, Hu, M, Zeng, TH, Wu, R, Jiang, R, Wei, J, Chen, Y, “Lateral dimension-dependent antibacterial activity of graphene oxide sheets.” Langmuir, 28 (33) 12364–12372 (2012)CrossRef Liu, S, Hu, M, Zeng, TH, Wu, R, Jiang, R, Wei, J, Chen, Y, “Lateral dimension-dependent antibacterial activity of graphene oxide sheets.” Langmuir, 28 (33) 12364–12372 (2012)CrossRef
6.
go back to reference He, J, Zhu, X, Qi, Z, Wang, C, Mao, X, Zhu, C, Tang, Z, “Killing dental pathogens using antibacterial graphene oxide.” ACS Applied Materials & Interfaces, 7 (9) 5605–5611 (2015)CrossRef He, J, Zhu, X, Qi, Z, Wang, C, Mao, X, Zhu, C, Tang, Z, “Killing dental pathogens using antibacterial graphene oxide.” ACS Applied Materials & Interfaces, 7 (9) 5605–5611 (2015)CrossRef
7.
go back to reference Li, J, Wang, G, Zhu, H, Zhang, M, Zheng, X, Di, Z, Wang, X, “Antibacterial activity of large-area monolayer graphene film manipulated by charge transfer.” Scientific Reports, 4 4359 (2014)CrossRef Li, J, Wang, G, Zhu, H, Zhang, M, Zheng, X, Di, Z, Wang, X, “Antibacterial activity of large-area monolayer graphene film manipulated by charge transfer.” Scientific Reports, 4 4359 (2014)CrossRef
8.
go back to reference Mangadlao, JD, Santos, CM, Felipe, MJL, de Leon, ACC, Rodrigues, DF, Advincula, RC, “On the antibacterial mechanism of graphene oxide (GO) Langmuir-Blodgett films.” Chemical Communications, 51 (14) 2886–2889 (2015)CrossRef Mangadlao, JD, Santos, CM, Felipe, MJL, de Leon, ACC, Rodrigues, DF, Advincula, RC, “On the antibacterial mechanism of graphene oxide (GO) Langmuir-Blodgett films.” Chemical Communications, 51 (14) 2886–2889 (2015)CrossRef
9.
go back to reference Liu, Y, Wen, J, Gao, Y, Li, T, Wang, H, Yan, H, Niu, B, Guo, R, “Antibacterial graphene oxide coatings on polymer substrate.” Applied Surface Science, 436 624–630 (2018)CrossRef Liu, Y, Wen, J, Gao, Y, Li, T, Wang, H, Yan, H, Niu, B, Guo, R, “Antibacterial graphene oxide coatings on polymer substrate.” Applied Surface Science, 436 624–630 (2018)CrossRef
10.
go back to reference Goel, A, Kunnumakkara, AB, Aggarwal, BB, “Curcumin as “Curecumin”: From kitchen to clinic.” Biochemical Pharmacology, 75 (4) 787–809 (2008)CrossRef Goel, A, Kunnumakkara, AB, Aggarwal, BB, “Curcumin as “Curecumin”: From kitchen to clinic.” Biochemical Pharmacology, 75 (4) 787–809 (2008)CrossRef
11.
go back to reference Gupta, SC, Prasad, S, Kim, JH, Patchva, S, Webb, LJ, Priyadarsini, IK, Aggarwal, BB, “Multitargeting by curcumin as revealed by molecular interaction studies.” Natural Product Reports, 28 (12) 1937–1955 (2011)CrossRef Gupta, SC, Prasad, S, Kim, JH, Patchva, S, Webb, LJ, Priyadarsini, IK, Aggarwal, BB, “Multitargeting by curcumin as revealed by molecular interaction studies.” Natural Product Reports, 28 (12) 1937–1955 (2011)CrossRef
12.
go back to reference Rai, D, Singh, JK, Roy, N, Panda, D, “Curcumin inhibits FtsZ assembly: An attractive mechanism for its antibacterial activity.” Biochemical Journal, 410 (1) 147–155 (2008)CrossRef Rai, D, Singh, JK, Roy, N, Panda, D, “Curcumin inhibits FtsZ assembly: An attractive mechanism for its antibacterial activity.” Biochemical Journal, 410 (1) 147–155 (2008)CrossRef
13.
go back to reference Teow, SY, Liew, K, Ali, SA, Khoo, ASB, Peh, SC, “Antibacterial action of curcumin against Staphylococcus aureus: A brief review.” Journal of Tropical Medicine, 2016 2853045 (2016)CrossRef Teow, SY, Liew, K, Ali, SA, Khoo, ASB, Peh, SC, “Antibacterial action of curcumin against Staphylococcus aureus: A brief review.” Journal of Tropical Medicine, 2016 2853045 (2016)CrossRef
14.
go back to reference Some, S, Gwon, AR, Hwang, E, Bahn, G, Yoon, Y, Kim, Y, Kim, SH, Bak, S, Yang, J, Dong-Gyu Jo, H, Lee, H, “Cancer therapy using ultrahigh hydrophobic drug-loaded graphene derivatives.” Scientific Reports, 4 6314 (2014)CrossRef Some, S, Gwon, AR, Hwang, E, Bahn, G, Yoon, Y, Kim, Y, Kim, SH, Bak, S, Yang, J, Dong-Gyu Jo, H, Lee, H, “Cancer therapy using ultrahigh hydrophobic drug-loaded graphene derivatives.” Scientific Reports, 4 6314 (2014)CrossRef
15.
go back to reference Hatamie, S, Akhavan, O, Sadrnezhaad, SK, Ahadian, MM, Shirolkar, MM, Wang, HQ, “Curcumin-reduced graphene oxide sheets and their effects on human breast cancer cells.” Materials Science and Engineering: C, 55 482–489 (2015)CrossRef Hatamie, S, Akhavan, O, Sadrnezhaad, SK, Ahadian, MM, Shirolkar, MM, Wang, HQ, “Curcumin-reduced graphene oxide sheets and their effects on human breast cancer cells.” Materials Science and Engineering: C, 55 482–489 (2015)CrossRef
16.
go back to reference Maity, AR, Chakraborty, A, Mondal, A, Jana, NR, “Carbohydrate coated, folate functionalized colloidal graphene as a nanocarrier for both hydrophobic and hydrophilic drugs.” Nanoscale, 6 2752–2758 (2014)CrossRef Maity, AR, Chakraborty, A, Mondal, A, Jana, NR, “Carbohydrate coated, folate functionalized colloidal graphene as a nanocarrier for both hydrophobic and hydrophilic drugs.” Nanoscale, 6 2752–2758 (2014)CrossRef
17.
go back to reference Muthoosamy, K, Abubakar, IB, Bai, RG, Loh, H, Manickam, S, “Exceedingly higher co-loading of curcumin and paclitaxel onto polymer-functionalized reduced graphene oxide for highly potent synergistic anticancer treatment.” Scientific Reports, 6 32808 (2016)CrossRef Muthoosamy, K, Abubakar, IB, Bai, RG, Loh, H, Manickam, S, “Exceedingly higher co-loading of curcumin and paclitaxel onto polymer-functionalized reduced graphene oxide for highly potent synergistic anticancer treatment.” Scientific Reports, 6 32808 (2016)CrossRef
18.
go back to reference Bugli, F, Cacaci, M, Palmieri, V, Di Santo, R, Torelli, R, Ciasca, G, Di Vito, M, Vitali, A, Conti, C, Sanguinetti, M, De Spirito, M, Papi, M, “Curcumin-loaded graphene oxide flakes as an effective antibacterial system against methicillin-resistant Staphylococcus aureus.” Interface Focus, 8 20170059 (2018)CrossRef Bugli, F, Cacaci, M, Palmieri, V, Di Santo, R, Torelli, R, Ciasca, G, Di Vito, M, Vitali, A, Conti, C, Sanguinetti, M, De Spirito, M, Papi, M, “Curcumin-loaded graphene oxide flakes as an effective antibacterial system against methicillin-resistant Staphylococcus aureus.” Interface Focus, 8 20170059 (2018)CrossRef
19.
go back to reference Yang, XX, Li, CM, Li, YF, Wang, J, Huang, CZ, Huang, “Synergistic antiviral effect of curcumin functionalized graphene oxide against respiratory syncytial virus infection.” Nanoscale, 9 16086–16092 (2017)CrossRef Yang, XX, Li, CM, Li, YF, Wang, J, Huang, CZ, Huang, “Synergistic antiviral effect of curcumin functionalized graphene oxide against respiratory syncytial virus infection.” Nanoscale, 9 16086–16092 (2017)CrossRef
20.
go back to reference Barua, S, Chattopadhyay, P, Phukan, MM, Konwar, BK, Islam, J, Karak, N, “Biocompatible hyperbranched epoxy/silver–reduced graphene oxide–curcumin nanocomposite as an advanced antimicrobial material.” RSC Advances, 4 47797–47805 (2014)CrossRef Barua, S, Chattopadhyay, P, Phukan, MM, Konwar, BK, Islam, J, Karak, N, “Biocompatible hyperbranched epoxy/silver–reduced graphene oxide–curcumin nanocomposite as an advanced antimicrobial material.” RSC Advances, 4 47797–47805 (2014)CrossRef
21.
go back to reference Król, B, Pielichowska, K, Sochacka-Piętal, M, Król, P, “Physicochemical and antibacterial properties of polyurethane coatings modified by ZnO.” Polymers for Advanced Technologies, 29 (3) 1056–1067 (2018)CrossRef Król, B, Pielichowska, K, Sochacka-Piętal, M, Król, P, “Physicochemical and antibacterial properties of polyurethane coatings modified by ZnO.” Polymers for Advanced Technologies, 29 (3) 1056–1067 (2018)CrossRef
22.
go back to reference Malkappa, K, Rao, BN, Suresh, G, Ramana, CV, Jana, T, “Organic/inorganic hybrid nanocolloids of water dispersible polyurethanes with antibacterial activity.” Colloid and Polymer Science, 296 95–106 (2017)CrossRef Malkappa, K, Rao, BN, Suresh, G, Ramana, CV, Jana, T, “Organic/inorganic hybrid nanocolloids of water dispersible polyurethanes with antibacterial activity.” Colloid and Polymer Science, 296 95–106 (2017)CrossRef
23.
go back to reference Villani, M, Bertoglio, F, Restivo, E, Bruni, G, Iervese, S, Arciola, CR, Carulli, F, Iannace, S, Bertini, F, Visai, L, “Polyurethane-based coatings with promising antibacterial properties.” Materials, 13 4296 (2020)CrossRef Villani, M, Bertoglio, F, Restivo, E, Bruni, G, Iervese, S, Arciola, CR, Carulli, F, Iannace, S, Bertini, F, Visai, L, “Polyurethane-based coatings with promising antibacterial properties.” Materials, 13 4296 (2020)CrossRef
24.
go back to reference Borges, I, Henriques, PC, Gomes, RN, Pinto, AM, Pestana, Ml, Magalhães, FD, Gonçalves, IC, “Exposure of smaller and oxidized graphene on polyurethane surface improves its antimicrobial performance.” Nanomaterials, 10 349 (2020)CrossRef Borges, I, Henriques, PC, Gomes, RN, Pinto, AM, Pestana, Ml, Magalhães, FD, Gonçalves, IC, “Exposure of smaller and oxidized graphene on polyurethane surface improves its antimicrobial performance.” Nanomaterials, 10 349 (2020)CrossRef
25.
go back to reference An, X, Ma, H, Liu, B, Wang, J, “Graphene oxide reinforced polylactic acid/polyurethane antibacterial composites.” Journal of Nanomaterials, 2013 373414 (2013)CrossRef An, X, Ma, H, Liu, B, Wang, J, “Graphene oxide reinforced polylactic acid/polyurethane antibacterial composites.” Journal of Nanomaterials, 2013 373414 (2013)CrossRef
26.
go back to reference Thakur, S, Barua, S, Karak, N, “Self-healable castor oil based tough smart hyperbranched polyurethane nanocomposite with antimicrobial attributes.” RSC Advances, 5 2167–2176 (2015)CrossRef Thakur, S, Barua, S, Karak, N, “Self-healable castor oil based tough smart hyperbranched polyurethane nanocomposite with antimicrobial attributes.” RSC Advances, 5 2167–2176 (2015)CrossRef
27.
go back to reference Tang, XZ, Mu, CZ, Zhu, WY, Yan, XL, Hu, X, Yang, JL, “Flexible polyurethane composites prepared by incorporation of polyethylenimine-modified slightly reduced graphene oxide.” Carbon, 98 432–440 (2016)CrossRef Tang, XZ, Mu, CZ, Zhu, WY, Yan, XL, Hu, X, Yang, JL, “Flexible polyurethane composites prepared by incorporation of polyethylenimine-modified slightly reduced graphene oxide.” Carbon, 98 432–440 (2016)CrossRef
28.
go back to reference Nguyen, TD, Nguyen, AS, Tran, BA, Vu, KO, Tran, DL, Phan, TT, Scharnagl, N, Zheludkevich, ML, To, TXH, “Molybdate intercalated hydrotalcite/graphene oxide composite as corrosion inhibitor for carbon steel.” Surface & Coatings Technology, 399 126165 (2020)CrossRef Nguyen, TD, Nguyen, AS, Tran, BA, Vu, KO, Tran, DL, Phan, TT, Scharnagl, N, Zheludkevich, ML, To, TXH, “Molybdate intercalated hydrotalcite/graphene oxide composite as corrosion inhibitor for carbon steel.” Surface & Coatings Technology, 399 126165 (2020)CrossRef
29.
go back to reference Rohman, A, Sudjadi, D, Ramadhani, D, Nugroho, A, “Analysis of curcumin in Curcuma longa and Curcuma xanthorriza using FTIR spectroscopy and chemometrics.” Research Journal of Medicinal Plant, 9 (4) 179–186 (2015)CrossRef Rohman, A, Sudjadi, D, Ramadhani, D, Nugroho, A, “Analysis of curcumin in Curcuma longa and Curcuma xanthorriza using FTIR spectroscopy and chemometrics.” Research Journal of Medicinal Plant, 9 (4) 179–186 (2015)CrossRef
30.
go back to reference Esmaeili, A, Entezari, MH, “Facile and fast synthesis of graphene oxide nanosheets via bath ultrasonic irradiation.” Journal of Colloid Interface Science, 432 19–25 (2014)CrossRef Esmaeili, A, Entezari, MH, “Facile and fast synthesis of graphene oxide nanosheets via bath ultrasonic irradiation.” Journal of Colloid Interface Science, 432 19–25 (2014)CrossRef
31.
go back to reference Adabi, M, Naghibzadeh, M, Adabi, M, Zarrinfard, MA, Esnaashari, SS, Seifalian, AM, Ghanbari, H, “Biocompatibility and nanostructured materials: Applications in nanomedicine.” Artificial Cells, Nanomedicine, and Biotechnology, 45 (4) 833–842 (2017)CrossRef Adabi, M, Naghibzadeh, M, Adabi, M, Zarrinfard, MA, Esnaashari, SS, Seifalian, AM, Ghanbari, H, “Biocompatibility and nanostructured materials: Applications in nanomedicine.” Artificial Cells, Nanomedicine, and Biotechnology, 45 (4) 833–842 (2017)CrossRef
32.
go back to reference Bugli, F, Cacaci, M, Palmieri, V, Di Santo, R, Torelli, R, Ciasca, G, Sanguinetti, M, “Curcumin-loaded graphene oxide flakes as an effective antibacterial system against methicillin-resistant Staphylococcus aureus.” Interface Focus, 8 (3) 20170059 (2018)CrossRef Bugli, F, Cacaci, M, Palmieri, V, Di Santo, R, Torelli, R, Ciasca, G, Sanguinetti, M, “Curcumin-loaded graphene oxide flakes as an effective antibacterial system against methicillin-resistant Staphylococcus aureus.” Interface Focus, 8 (3) 20170059 (2018)CrossRef
Metadata
Title
Influence of curcumin-modified graphene oxide on antibacterial properties of polyurethane coating
Authors
Thuy Duong Nguyen
Van Cuong Bui
Boi An Tran
Thanh Thao Phan
Ke Oanh Vu
Anh Son Nguyen
Anh Truc Trinh
Tuan Anh Nguyen
Thi Chinh Tang
Thi Xuan Hang To
Publication date
13-07-2021
Publisher
Springer US
Published in
Journal of Coatings Technology and Research / Issue 5/2021
Print ISSN: 1547-0091
Electronic ISSN: 1935-3804
DOI
https://doi.org/10.1007/s11998-021-00502-z

Other articles of this Issue 5/2021

Journal of Coatings Technology and Research 5/2021 Go to the issue

Premium Partners