Combined Effect of Phosphate and Polymer Coating on Cytotoxicity and Hemocompatibility of Iron Foams
References
- [1] Santos, C., Alves, MM., Montemor, MF., Carmezim, MJ.: Bioresorbable metallic implants: surface functionalization with nanoparticles and nanostructures, in: I. Ahmad, P. Di Sia, R. Raza (Eds.), Advanced Materials and their Applications: Micro to nano scale, One Central Press, 2017, p. 219.
- [2] dos Santos, GA.: Adv. Tissue Eng. Regen. Med., vol. 3, 2017, p. 300.
- [3] Victor, SP., Selvam, S., Sharma, CP.: ACS Biomater. Sci. Eng., vol. 5, 2019, p. 3.10.1021/acsbiomaterials.8b0023333405853
- [4] Hinderer, S., Brauchle, E., Schenke-Layland, K.: Adv. Healthcare Mater., vol. 4, 2015, p. 2326.10.1002/adhm.201400762474502925778713
- [5] Allain, JP., Echeverry-Rendón, M.: Surface treatment of metallic biomaterials in contact with blood to enhance hemocompatibility, in: C.A. Siedlecki (ed.), Hemocompatibility of Biomaterials for Clinical Applications. Blood-Biomaterials Interactions, Elsevier Ltd., Woodhead Publishing, 2018, p. 279.10.1016/B978-0-08-100497-5.00008-2
- [6] Jurgeleit, T., Quandt, E., Zamponi, C.: Adv. Mater. Sci. Eng., vol. 2015, 2015, p. 294686.10.1155/2015/294686
- [7] Adhilakshmi, A., Ravichandran, K., Sankara Narayanan, TSN.: New J. Chem., vol. 42, 2018, p. 18458.
- [8] Yusop, AH., Daud, NM., Nur, H., Kadir, MR., Hermawan, H.: Sci. Rep., vol. 5, 2015, p. 11194.10.1038/srep11194446090726057073
- [9] Lia, H., Zhenga, Y., Qin, L.: Prog. Nat. Sci.: Mater. Int., vol. 24, 2014, p. 414.
- [10] Huang, T., Zheng, Y.: Sci. Rep., vol. 6, 2016, p. 23627.10.1038/srep23627481704027033380
- [11] Nie, FL., Zheng, YF., Wei, SC., Hu, C., Yang, G.: Biomed. Mater., vol. 5, 2010, p. 065015.10.1088/1748-6041/5/6/06501521079282
- [12] Sharma, P., Gopal Jain, K., Pandey, PM., Mohanty, S.: Mater. Sci. Eng. C, vol. 106, 2020, p. 110247.10.1016/j.msec.2019.11024731753401
- [13] Dehestani, M., Adolfsson, E., Stanciu, LA.: Mater. Des., vol. 109, 2016, p. 556.10.1016/j.matdes.2016.07.092
- [14] Huang, T., Zheng, Y., Han, Y.: Regen. Biomater., vol. 3, 2016, p. 205.10.1093/rb/rbw020496629227482462
- [15] Heiden, M., Walker, E., Nauman, E., Stanciu, L.: J. Biomed. Mater. Res. A, vol. 103, 015, p. 185.10.1002/jbm.a.3515524616416
- [16] Čapek, J., Msallamová, Š., Jablonská, E., Lipov, J., Vojtěch, D.: Mater. Sci. Eng., C, vol. 79, 2017, p. 550.10.1016/j.msec.2017.05.10028629053
- [17] Wang, H., Zheng, Y., Jiang, Ch., Li, Y., Fu, Y.: Surf. Coat. Technol., vol. 320, 2017, p. 201.10.1016/j.surfcoat.2017.01.051
- [18] Lee, MK., Lee, H., Park, Ch., Kang, IG., Kim, J., Kim, HE., Jung, HD., Jang, TS.: Bioact. Mater., vol. 9, 2022, p. 239.10.1016/j.bioactmat.2021.07.003858657434820568
- [19] Qi, Y., Qi, H., He, Y., Lin, W., Li, P., Qin, L., Hu, Y., Chen, L., Liu, Q., Sun, H., Liu, Q., Zhang, G., Cui, S., Hu, J., Yu, L., Zhang, D., Ding, J.: ACS Appl. Mater. Interfaces, vol. 10, 2018, p. 182.10.1021/acsami.7b1520629243907
- [20] Gąsior, G., Szczepański, J., Radtke, A.: Materials, vol. 14, 2021, p. 3381.10.3390/ma14123381823397634207249
- [21] Li, Y., Jahr, H., Lietaert, K., Pavanram, P., Yilmaz, A., Fockaert, LI., Leeflang, MA., Pouran, B., Gonzalez-Garcia, Y., Weinans, H., Mol, JMC., Zhou, J., Zadpoor, AA.: Acta Biomater., vol. 77, 2018, p. 380.10.1016/j.actbio.2018.07.01129981948
- [22] Putra, NE., Leeflang, MA., Minneboo, M., Taheri, P., Fratila-Apachitei, LE., Mol, JMC., Zhou, J., Zadpoor, AA.: Acta Biomater., vol.121, 2021, p. 741.10.1016/j.actbio.2020.11.02233221501
- [23] Wegener, B., Sichler, A., Milz, S., Sprecher, C., Pieper, K., Hermanns, W., Jansson, V., Nies, B., Kieback, B., Müller, P.E., Wegener, V., Quadbeck, P.: Sci Rep., vol. 10, 2020, p. 9141.10.1038/s41598-020-66289-y727263732499489
- [24] Ray, S., Thormann, U., Eichelroth, M., Budak, M., Biehl, C., Rupp, M., Sommer, U., El Khassawna, T., Alagboso, F.I., Kampschulte, M., Rohnke, M., Henß, A., Peppler, K., Linke, V., Quadbeck, P., Voigt, A., Stenger, F., Karl, D., Schnettler, R., Heiss, C., Lips, K.S., Alt, V.: Biomaterials, vol. 157, 2018, p. 1.10.1016/j.biomaterials.2017.11.04929216500
- [25] Quadbeck, P., Stephani, G., Kümmel, K., Adler, J., Standke, G.: Mater. Sci. Forum, vol. 534-536, 2007, p. 1005.10.4028/www.scientific.net/MSF.534-536.1005
- [26] Haverová, L., Oriňaková, R., Oriňak, A., Gorejová, R., Baláž, M., Vanýsek, P., Kupková, M., Hrubovčáková, M., Mudroň, P., Radoňák, J., Orságová Králová, Z., Morovská Turoňová, A.: Metals, vol. 8, 2018, p. 499.10.3390/met8070499
- [27] Oriňaková, R., Gorejová, R., Orságová Králová, Z., Haverová, L., Oriňak, A., Maskaľová, I., Kupková, M., Džupon, M., Baláž, M., Hrubovčáková, M., Sopčák, T., Zubrik, A., Oriňak, M.: App. Surf. Sci., vol. 505, 2020, p. 144634.10.1016/j.apsusc.2019.144634
- [28] Oriňaková, R., Gorejová, R., Petráková, M., Orságová Králová, Z., Oriňak, A., Kupková, M., Hrubovčáková, M., Podobová, M., Baláž, M., Smith, R.M.: Materials, vol. 13, 2020, p. 4134.10.3390/ma13184134756037432957576
- [29] Orinakova, R., Orinak, A., Giretova, M., Medvecky, L., Kupkova, M., Hrubovcakova, M., Maskalova, I., Macko, J., Kalavsky, F.: J. Biomater. Appl., vol. 30, 2016, p. 1060.
- [30] Hrubovčáková, M., Kupková, M., Džupon, M.: Adv. Mater. Sci. Eng., vol. 2016, 2016, p. 6257368.10.1155/2016/6257368
- [31] ISO-10993–5. Biological evaluation of medical devices—part 5 tests for cytotoxicity: in vitro methods. Arlington: ANSI/AAMI; 2009.
- [32] Oriňaková, R., Gorejová, R., Macko, J., Oriňak, A., Kupková, M., Hrubovčáková, M., Ševc, J., Smith, R.M.: Appl. Surf. Sci., vol. 475, 2019, p. 515.10.1016/j.apsusc.2019.01.010
Language: English
Page range: 39 - 49
Published on: Dec 29, 2022
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
Related subjects:
© 2022 Renáta Oriňaková, Radka Gorejová, Martina Petráková, Ján Macko, Miriam Kupková, Monika Hrubovčáková, Iveta Maskaľová, published by Slovak Academy of Sciences, Institute of Materials Research
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.