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Biomedyczne skutki kontaktu tkanki z implantem

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Biomedical effect of tissue contact with an implant
Języki publikacji
PL
Abstrakty
Słowa kluczowe
PL
EN
Rocznik
Strony
200--205
Opis fizyczny
Bibliogr. 25 poz.
Twórcy
autor
  • Zakład Biofizyki Molekularnej i Medycznej, Uniwersytet Medyczny w Łodzi
Bibliografia
  • [1] ISO 10993, Biological evaluation of medical devices. The International Organization for Standardization 1999
  • [2] Dzieniakowski T., Jatczak J., Jędrzejewski T., Walkowiak B. Measurements of the power of electric current generated on a resistor containing an electric pile developed In patients with amalgam fillings. Czas Stomat. 1980; 33: 905-12.
  • [3] Perfetti G., Maggiore C., Isidori F. A case of leukoplakia from bimetalizm in a single tooth. Attual Dent. 1988; 4: 36-8.
  • [4] Ishii J., Fujita K., Munemoto S., Komori T. Management of oral leukoplakia by laser surgery: relation between recurrence and malignant transformation and clinicopathological features. J. Clin. Laser Med. Surg. 2004; 22: 27-33.
  • [5] Bergman M. Corrosion in the oral cavity - potential local and systemic effects. Int. Dent. J. 1986; 36: 41-4.
  • [6] Schmalz G., Garhammer P. Biological interactions of dental cast alloys with oral tissues. Dent. Mater. 2002; 18: 396-406.
  • [7] Yagil-Kelmer E., Kazmier P., Rahaman MN., Bal BS., Tessman RK., Estes DM. Comparison of the response of primary human blood monocytes and the U937 human monocytic cell line to two different sizes of alumnia ceramic particles. J. Ortop. Res. 2004; 22: 832-8.
  • [8] The role of nano-particles in biomaterial-induced pathologies. Project supported by EC, No. QLK4-CT-2001-00147
  • [9] Risk assessment in production and use of nano-particles with development of preventive measures and practice codes. Project supported by EC, No. G1MA-CT-2002-00020.
  • [10] Gardiner J., Abell A.D. Synthesis and solid state conformation of phenylalanine mimetics constrained in a proline-like conformation. Org. Biomol. Chem. 2004; 2(16): 2365-70.
  • [11] Lutolf M.P., Weber F.E., Schmoekel H.G., Schense J.C., Kohler T., Muller R., Hubbel J.A. Repair of bone defects using synthetic mimetics of collagenous extracellular matrices. Nat Biotechnol. 2003 21(5): 513-8.
  • [12] Aguzzi A., Heikenwalder M., Miele G. Progress and problems in biology, diagnosis and therapeutics of prion diseases. J Clin Invest. 2004; 114: 153-160.
  • [13] Walkowiak B., Tanski W., Koziołkiewicz W. Phosphorylation of platelet protein in hemofialysed patients is different than in control donors. XIX Congress on Thrombosis and Haemostasis, Birmingham, UK. July 2003, abstract No. P1315.
  • [14] Jakubowski W., Bartosz G., Niedzielski P., Szymanski W., Walkowiak B. Nanocrystalline diamond surface is resistant to bacterial colonization. Diamond and Related Materials, 2004; 10: 1761- 3.
  • [15] Marrie T.J., Nelligan J., Costerton J.W. A scanning and transmission electron microscopic study of an infected endocardial pacemaker lead. Circulation, 1982; 66: 1339-41.
  • [16] Leunisse C., van Weissenbruch R., Busscher HJ., van der Meri HC., Dijk F., Albers FW. Biofilm formation and design features of indwelling silicone rubber tracheoesophageal voice prostheses-- an electron microscopical study. J Biomed Mater Res. 2001; 58: 556-563.
  • [17] Zucchelli G., Cesari C., Clauser C., DeSanctis M. Early bacterial accumulation on guided tissue regeneration membrane materials. An in vivo study. J Periodontol. 1998; 69: 1193-202.
  • [18] Zucchelli G., Sforza N.M., Clauser C., Cesari C., DeSanctis M. Topical and systemic antimicrobial therapy in guided tissue regeneration. J Periodontol. 1999; 70: 239-47.
  • [19] Hendricks SK., Kwok C., Shen M., Horbett T.A., Ratner B.D., Breyers J.D. Plasma-deposited membranes for controlled release of antibiotic to prevent bacterial adhesion and biofilm formation. J Biomed Mater Res. 2000; 50: 160-70.
  • [20] Kozakiewicz M., Okrój W., Klimek L., Łobos M., Walkowiak B. Bone substitute material and marrier membrane interaction with human blood platelets. 10th Erfurt Conference on Platelets. Erfurt, Germany, June 2004. Abstract book, page 71.
  • [21] Schneider GB., Perinpanayagam H., Clegg M., Zaharias R., Seabold D., Keller J., Stanford C. Impalnt surface roughneg affects osteoblast gene expression. J. Dent. Res. 2003; 82: 372-6.
  • [22] Consequences of nanotechnology progression and use in medicine - estimation by genomics and proteomics approach. Proposal with acronym NANORISK, FP6-2003-NEST-A/2507.
  • [23] Consequences of nanotechnology progression and use in medicine - estimation by genomics and proteomics approach. Proposal with acronym NANORISKA, FP6-2004-NEST-B-2/12895.
  • [24] Carinci F., Pezzetti F., Volinia S., Francioso F., Arcelli D., Marchesini J., Scapoli L., Piattelli A. Analysis of osteoblast-like MG63 cells' response to a rough implant surface by means of DNA microarray. J. Oral. Implantol. 2003; 29: 215-20.
  • [25] Ndimba B.K., Chivasa S., Hamilton J.M., Simon W.J., Slabas AR. Proteomic analysis of changes in extracellular matrix of Arabidopsis cell suspension cultures induced by fungal elicitors. Proteomics, 2003; 3: 1047-59.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-AGH5-0012-0140
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