Antoci, V. Jr., Adams, C. S., Parvizi, J., Davidson, H. M., Composto, R. J., Freeman, T. A., Wickstrom, E., Ducheyne, P., Jungkind, D., Shapiro, I. M.,, Hickok, N. J. (2008). The inhibition of Staphylococcus epidermidis biofilm formation by vancomycin-modified titanium alloy and implications for the treatment of periprosthetic infection. Biomaterials, 29, 4684–4690.10.1016/j.biomaterials.2008.08.016261772018814909
Aybar, Y., Ozaras, R., Besirli, K., Engin, E., Karabulut, E., Salihoglu, T., Mete, B., Tabak, F., Mert, A., Tahan, G., Yilmaz, M. H., Ozturk, R. (2012). Efficacy of tigecycline and vancomycin in experimental catheter-related Staphylococcus epidermidis infection: microbiological and electron microscopic analysis of biofilm. Int. J. Antimicrob. Agents, 39, 338–342.10.1016/j.ijantimicag.2012.01.00122364717
Bottner, F., Wegner, A., Winkelmann, W., Becker, K., Erren, M., Götze, C. (2007). Interleukin-6, procalcitonin and TNF-alpha: Markers of peri-prosthetic infection following total joint replacement. J. Bone Joint Surg. Br., 89, 94–99.10.1302/0301-620X.89B1.1748517259424
Chai, F., Hornez, J. C., Blanchemain, N., Neut, C., Descamps, M., Hildebrand, H. F. (2007). Antibacterial activation of hydroxyapatite (HA) with controlled porosity by different antibiotics. Biomol. Eng., 24 (5), 510–514.10.1016/j.bioeng.2007.08.00117869175
Duarte, P. M., de Mendonça, A. C., Máximo, M. B., Santos, V. R., Bastos, M. F., Nociti Júnior, F. H. (2009). Differential cytokine expressions affect the severity of peri-implant disease. Clin. Oral Implants Res., 20, 514–520.10.1111/j.1600-0501.2008.01680.x19302394
Gretzer, C., Emanuelsson, L., Liljensten, E., Thomsen, P. (2006). The inflammatory cell influx and cytokines changes during transition from acute inflammation to fibrous repair around implanted materials. J. Biomater. Sci. Polym. Ed., 17 (6), 669–687.10.1163/15685620677734634016892728
Gollwitzer, H., Dombrowski, Y., Prodinger, P. M., Peric, M., Summer, B., Hapfelmeier, A., Saldamli, B., Pankow, F., von Eisenhart-Rothe, R., Imhoff, A. B., Schauber, J., Thomas, P., Burgkart, R., Banke, I. J. (2013). Antimicrobial peptides and proinflammatory cytokines in periprosthetic joint infection. J. Bone Joint Surg., 95, 644–651.10.2106/JBJS.L.0020523553300
Guillaume, O., Garric, X., Lavigne, J. P., Van Den Berghe, H., Coudane, J. (2012). Multilayer, degradable coating as a carrier for the sustained release of antibiotics: Preparation and antimicrobial efficacy in vitro. J. Control Release, 162 (3), 492–501.10.1016/j.jconrel.2012.08.00322902589
Gul, M., Yasim, A., Aral, M., (2012). The levels of cytokines in rats following the use of prophylactic agents in vascular graft infection. Bratisl. Lek. Listy, 111 (6), 316–320.
Guo, Y. J., Long, T., Chen, W., Ning, C., Zhu, Z. A., Guo, Y. P. (2013). Bactericidal property and biocompatibility of gentamicin-loaded mesoporous carbonated hydroxyapatite microspheres. Mater. Sci. Eng. C Mater. Biol. Appl., 33 (7), 3583–3591.10.1016/j.msec.2013.04.02123910253
Harder, J., Bartels, J., Christophers, E., Schroder, J. M. (2001). Isolation and characterization of human beta-defensin-3, a novel human inducible peptide antibiotic. J. Biol. Chem., 276, 5707–5713.10.1074/jbc.M00855720011085990
Hanssen, A. D. (2005). Local antibiotic delivery vehicles in the treatment of musculoskeletal infection. Clin. Orthop. Relat. Res., 437, 91–96Z.10.1097/01.blo.0000175713.30506.7716056032
Hodgson, S. D., Greco-Stewart, V., Jimenez, C. S., Sifri, C. D., Brassinga, A. K. C., Ramirez-Arcos, S. (2014). Enhanced pathogenicity of biofilm-negative Staphylococcus epidermidis isolated from platelet preparations. Transfusion, 54 (2), 461–470.10.1111/trf.12308
Kroica, J., Skadins, I., Salma, I., Reinis, A., Sokolova, M., Rostoka D., Berza N. (2016). Antibacterial efficiency of hydroxyapatite biomaterials with biodegradable polylactic acid and polycaprolactone polymers saturated with antibiotics. Proc. Latvian Acad. Sci., Section B, 70 (4), 220–226.10.1515/prolas-2016-0035
Lai, Y., Cogen, A. L., Radek, K. A., Park, H. J., Macleod, D. T., Leichtle, A., Ryan, A. F., Di Nardo, A., Gallo, R. L. (2010). Activation of TLR2 by a small molecule produced by Staphylococcus epidermidis increases antimicrobial defense against bacterial skin infections. J. Invest. Dermatol.,130 (9), 2211–2221.10.1038/jid.2010.123292245520463690
Lyndon, B. J., Birbilis, B. N., (2014). Metallic implant drug/device combinations for controlled drug release in orthopaedic applications. J. Control Release, 179, 63–75.10.1016/j.jconrel.2014.01.02624512924
McCann, M. T., Gilmore, B. F., Gorman, S. P. (2008). Staphylococcus epidermidis device-related infections: Pathogenesis and clinical management. JPP, 60, 1551–1571.10.1211/jpp/60.12.000119000360
Moore, K. W., de Waal Malefyt, R., Coffman, R. L., O’Garra, A. (2001). Interleukin-10 and the interleukin-10 receptor. Annu. Rev. Immunol., 19, 683–765.10.1146/annurev.immunol.19.1.68311244051
Rousset, F., Garcia, E., Defrance, T., Péronne, C., Vezzio, N., Hsu, D. H., Kastelein, R., Moore, K. W., Banchereau, J. (1992). Interleukin 10 is a potent growth and differentiation factor for activated human B lymphocytes. Proc. Natl. Acad. Sci., 89 (5), 1890–1893.10.1073/pnas.89.5.1890485591371884
Sawamura, D., Goto, M., Shibaki, A., Akiyama, M., McMillan, J.R., Abiko, Y., Shimizu, H. (2005). Beta defensin-3 engineered epidermis shows highly protective effect for bacterial infection. Gene Ther.,12, 857–861.10.1038/sj.gt.330247215729370
Schutte, R. J., Xie, L., Klitzman, B., Reichert, W. M., (2009). In vivo cytokine-associated responses to biomaterials. Biomaterials,30 (2), 160–168.10.1016/j.biomaterials.2008.09.026262130318849070
Shindo, S., Ogata K., Kubota, K., Kojima, A., Kobayashi, M., Tada, Y., Okuyama, K., (2003). Vascular prosthetic implantation is associated with prolonged inflammation following aortic aneurysm surgery. J. Artif. Organs,6 (3), 173–178.10.1007/s10047-003-0224-x14598100
Skadins, I., Kroica, J., Salma, I., Reinis, A., Sokolova, M., Rostoka, D. (2017). The level of inflammatory cytokines and antimicrobial peptides after composite material implantation and contamination with bacterial culture. Key Eng. Mater., 721, 245–250.10.4028/www.scientific.net/KEM.721.245
Sokolova, M., Putniņš, A., Kreicbergs, I., Ločs, J. (2014). Scale-up of wet precipitation calcium phosphate synthesis. Key Eng. Mater., 604, 216–219.10.4028/www.scientific.net/KEM.604.216
Sun, X., Wang, D., Yu, H., Hu, L. (2010). Serial cytokine levels during wound healing in rabbit maxillary sinus mucosa. Acta Oto-Laryngologica, 130, 607–613.10.3109/0001648090335297519958244
Suska, F., Gretzer, C., Esposito, M., Emanuelsson, L., Wennerberg, A., Tengvall, P., Thomsen, P. (2005). In vivo cytokine secretion and NF-kappaB activation around titanium and copper implants. Biomaterials, 26 (5), 519–527.10.1016/j.biomaterials.2004.02.06615276360
Vassena, C., Fenu, S., Giuliani, F., Fantetti, L., Roncucci, G., Simonutti, G., Romanò, C. L., De Francesco, R., Drago, L. (2014). Photodynamic antibacterial and antibiofilm activity of RLP068/Cl against Staphylococcus aureus and Pseudomonas aeruginosa forming biofilms on prosthetic material. Int. J. Antimicrob. Agents, 44 (1), 47–55.10.1016/j.ijantimicag.2014.03.01224933446
Zhang, J. M., Jianxiong, A. (2007). Cytokines, inflammation and pain. Int. Anesthesiol. Clin., 45 (2), 27–37.10.1097/AIA.0b013e318034194e278502017426506