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International Journal of Metallurgical & Materials Engineering Volume 3 (2017), Article ID 3:IJMME-136, 5 pages
http://dx.doi.org/10.15344/2455-2372/2017/136
Original Article
Inhibition of Bacterial Adhesion using Calcium Phosphate Microspheres Loaded with Protamine

Michiyo Honda1*, Yusuke Kawanobe1, Hiroshi Uchida2 and Mamoru Aizawa1

1DiDepartment of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku, Kawasaki, Kanagawa 214-8571, Japan
2Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University, 7-1, Kioi-Cho, Chiyoda-ku, Tokyo 102-8554, Japan
Dr. Michiyo Honda, Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku, Kawasaki, Kanagawa 214-8571, Japan; E-mail: michiyoh@meiji.ac.jp
14 September 2017; 07 November 2017; 09 November 2017
Honda M, Kawanobe Y, Uchida H, Aizawa M (2017) Inhibition of Bacterial Adhesion using Calcium Phosphate Microspheres Loaded with Protamine. Int J Metall Mater Eng 3: 136. doi: https://doi.org/10.15344/2455-2372/2017/136

References

  1. Luo QL, Andrade JD (1998) Cooperative adsorption of proteins onto hydroxyapatite. J Colloid Interface Sci 200: 104-113.
  2. Cummings LJ, Snyder MA, Brisack K (2009) Protein chromatography on hydroxyapatite columns. In: Burgess, RR, Deutscher, MP (eds.) Guide to Protein Purification, Second Edition. Elsevier Academic Press Inc, San Diego, pp. 387-404.
  3. Moreno EC, Kresak M, Hay DI (1984) Adsorption Of Molecules Of biological Interest Onto Hydroxyapatite. Calcif Tissue Int 36: 1048-59.
  4. Campoccia D, Montanaro L, Arciola CR (2013) A review of the biomaterials technologies for infection-resistant surfaces. Biomaterials 34: 8533-8554.
  5. Cloutier M, Mantovani D, Rosei F (2015) Antibacterial Coatings: Challenges, Perspectives, and Opportunities. Trends Biotechnol 33: 637-652.
  6. Nguyen LT, Haney EF, Vogel HJ (2011) The expanding scope of antimicrobial peptide structures and their modes of action. Trends Biotechnol 29: 464- 472.
  7. Potter R, Hansen LT, Gill TA (2005) Inhibition of foodborne bacteria by native and modified protamine: Importance of electrostatic interactions. International Journal of Food Microbiology 103: 23-34.
  8. Johansen C, Verheul A, Gram L, Gill T, Abee T (1997) Protamine-induced permeabilization of cell envelopes of gram-positive and gram-negative bacteria. Appl Environ Microbiol 63: 1155-1159.
  9. Aspedon A, Groisman EA (1996) The antibacterial action of protamine: Evidence for disruption of cytoplasmic membrane energization in Salmonella typhimurium. Microbiology 142: 3389-3397.
  10. Pink DA, Hasan FM, Quinn BE, Winterhalter M, Mohan M, et al. (2014) Interaction of rotamine with gram-negative bacteria membranes: possible alternative mechanisms of internalization in Escherichia coli, Salmonella typhimurium and Pseudomonas aeruginosa. J Pept Sci 20: 240-250.
  11. Honda M, Kawanobe Y, Ishii K, Konishi T, Mizumoto M, et al. (2013) In vitro and in vivo antimicrobial properties of silver-containing hydroxyapatite prepared via ultrasonic spray pyrolysis route. Mater Sci Eng C Mater Biol Appl 33: 5008-5018.
  12. Honda M, Kikushima K, Kawanobe Y, Konishi T, Mizumoto M, et al. (2012) Enhanced early osteogenic differentiation by silicon-substituted hydroxyapatite ceramics fabricated via ultrasonic spray pyrolysis route. J Mater Sci Mater Med 23: 2923-2932.
  13. Reynolds EC, Wong A (1983) Effect Of Adsorbed Protein On Hydroxyapatite Zeta Potential And Streptococcus-Mutans Adherence. Infect Immun 39: 1285-1290.
  14. Lin JH, Chang HY, Kao WL, Lin KY, Liao HY, et al. (2014) Effect of Surface Potential on Extracellular Matrix Protein Adsorption. Langmuir 30: 10328- 10335.
  15. Zhu XD, Fan HS, Zhao CY, Ikoma T, Tanaka J, et al. (2006) Bovine serum albumin adsorption on hydroxyapatite and biphasic calcium phosphate and the correlation with zeta potentials and wettability. In: Nakamura, T, Yamashita, K, Neo, M (eds.) Bioceramics 18, Pts 1 and 2. Trans Tech Publications Ltd, Zurich-Uetikon, pp. 73-76
  16. Tercinier L, Ye AQ, Anema S, Singh A, Singh H (2013) Adsorption of milk proteins on to calcium phosphate particles. J Colloid Interface Sci 394: 458- 466.
  17. Jiang YJ, Yang D, Zhang L, Li L, Sun QY, et al. (2008) Biomimetic synthesis of titania nanoparticles induced by protamine. Dalton Trans: 4165-4171.
  18. Gorbunoff MJ, Timasheff SN (1984) The interaction of proteins with hydroxyapatite .III. Mechanism. Anal Biochem 136: 440-445.
  19. Hansen LT, Austin JW, Gill TA (2001) Antibacterial effect of protamine in combination with EDTA and refrigeration. Int J Food Microbiol 66: 149-161.
  20. Johansen C, Gill T, Gram L (1995) Antibacterial effect of protamine assayed by impedimetry. J Appl Bacteriol 78: 297-303.
  21. Glinel K, Thebault P, Humblot V, Pradier CM, Jouenne T (2012) Antibacterial surfaces developed from bio-inspired approaches. Acta Biomater 8: 1670- 1684.