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Resource Library

Dyna publishes studies and reports on a regular basis. 

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Helix DC

In vivo bone response and mechanical evaluation of electrosprayed CaP

Effects of implant geometry, surface properties, and TGF-b1 on peri-implant bone response: an experimental study in goats

Helix TM

Clinical Evaluation of the Dyna Helix® TM implants. Two years follow up

Cone

A prefabricated conical crown for various implantation system

SFI Bar

Numerical Investigations On The Mechanical Behaviour Of The Novel Bar System SFI-Bar®By Cendres+Métaux

The SFI-Bar-system - a stress-free bar for intraoral mounting

Muchor

Clinical and histopathological analysis of zirconia intramucosal inserts used for improving upper dentures retention.

Implaclean

• Berendsen JLM, el Allati I, Sylva LH, Blijdorp PA, Van Damme PhA, Meijer GJ. Ardox-X® adjunctive topical active oxygen application in periodontitis and peri-implantitis – a pilot study

• Boere G Academic Centre for Dentistry Amsterdam (ACTA), Department of Dental Materials Science, The Netherlands, Influence of fluoride on titanium in an acidic environment measured by polarization resistance technique. J Appl Biomater. 1995 Winter;6(4):283-8

• Nakagawa M, Matsuya S, Shiraishi T, Ohta M., Department of Dental Materials Engineering, Faculty of Dentistry, Kyushu University, Fukuoka, Japan. Effect of fluoride concentration and pH on corrosion behavior of titanium for dental use. J Dent Res. 1999 Sep;78(9):1568-72

• Toumelin-Chemla F, Rouelle F, Burdairon G, Laboratoire de Biomatériaux, Faculté de Chirurgie Dentaire,
l’Université Paris V, France Corrosive properties of fluoride-containing odontologic gels against titanium. J Dent. 1996 Jan-Mar;24(1-2):109-15.

• Ide K, Hattori M, Yoshinari M, Kawada E, Oda Y. , Department of Dental Materials Science, Tokyo Dental College, 1-2-2 Masago, Mihama-ku, Chiba, Japan 261-8502. The influence of albumin on corrosion resistance of titanium in fluoride solution. Dent Mater J. 2003 Sep;22(3):359-70.

• Strietzel R, Hösch A, Kalbfleisch H, Buch D., BEGO, Bremer Goldschlägerei, Bremen, Germany. In vitro corrosion of titanium. Biomaterials. 1998 Aug;19(16):1495-9.

Lactoferrin Literature:

Abe, H., Saito, H., Miyakawa, H., Tamura, Y., Shimamura, S., Nagao, E., and Tomita, M., 1991. Heat stability of bovine lactoferrin at acidic pH. Journal of Dairy Science 74, 65-71.

• Adamik, B., Zimecki, M., Wlaszczyk, A., et al., 1998. Lactoferrin effects on the in vitro immune response in critically ill patients. Arch Immunol Ther Exp (Warcz). 46:169-176.

• Arnold, D., Di Biase, A. M., Marchetti, M., Pietrantoni, A., Valenti, P., Seganti, L. and F. Superti, 2002. Antiadenovirus activity of milk proteins: lactoferrin prevents viral infection. Antiviral Res. 53:153-158.

• Al-Nabulsi, A.A., Holley, R.A., 2006. Enhancing the antimicrobial effects of bovine lactoferrin against Escherichia coli O157:H7 by cation chelation, NaCl and temperature. Journal of Applied Microbiology, Volume 100, Number 2, pp. 244-255(12).

• Azuma, N., Mori, H., Kaminogawa, S., Yamauchi, K., 1989. Stimulating effect of lactoferrin on DNA synthesis in BALB/c3T3 cell. Agric. Biol. Chem. 53:31-35.

• Baveye, S., Elass, E., Mazurier, J., et al. 1999. Lactoferrin: a multifunctional glycoprotein involved in the modulation of the inflammatory process. Clin Chem Lab Med. 37:281-286.

• Bellamy, W., Takase, M., Yamauchi, K., Wakabayashi, H., Kawase, K., Tomita, M., 1992. Identification of the bactericidal domain of lactoferrin. Biochimica et Biophysica Acta 1121, 130-136.

• Bhimani RS, Vendrov Y, Furmanski P. Influence of lactoferrin feeding and injection against systemic staphylococcal infections in mice.
J Appl Microbiol 1999 Jan;86(1):135-44.

• Britigan, B.E., Serody, J.S., Cohen, M.S., 1994. The role of lactoferrin as an anti-inflammatory molecule. Adv Exp Med Biol. 357:143-156.

• Cornish, J., et al, 2004. Lactoferrin is a potent regulator of bone cell activity and increases bone formation in vivo. Endocrinology 145(9):4366-74.

• Dial EJ, Hall LR, Serna H, Romero JJ, Fox JG, Lichtenberger LM. Antibiotic properties of bovine lactoferrin on Helicobacter pylori. Dig Dis Sci 1998 Dec;43(12):2750-6.

• Di Biase, A. M., et al, 2003. Heparin-interacting sites of bovine lactoferrin are involved in anti-adenovirus activity. J. Med. Virol. 69:495-502.

• Dionysius, D.A., Milne J.M., 1997. Antibacterial peptides of bovine lactoferrin: purification and characterization. Journal of Dairy Science 80, 667-674.

• Fujihara, T., Hayashi, K., 1995. Lactoferrin inhibits herpes simplex virus type-1 (HSV-1) infection in mouse cornea. Arch. Virol. 140:1469-1472.

• Hambraeus, L., Lönnerdal, B., 1994. The physiological role of lactoferrin. IDF Bulletin: Indigenous Antimicrobial Agents of Milk: Recent Developments: 97-107.

• Hara, K., et al, 2002. Lactoferrin inhibits hepatitis B virus infection in cultured human hepatocytes. Hepatol. Res. 24:228-235.

• Harmsen, M. C., et al, 1995. Antiviral effects of plasma and milk proteins: lactoferrin shows a potent activity against both human immunodeficiency virus and human cytomegalovirus replication in vitro. J. Infect. Dis. 172:380-388.

• Hasegawa, K., Motsuchi,W., Tanaka, S., Dosako, S., 1994. Inhibition with lactoferrin of in vitro infection with human herpesvirus. Jpn. J. Med. Sci. Biol. 47:73-85.

• Hoek, K.S., Milne, J.M., Grieve, P.A., Dionysius, D.A., Smith, R., 1997. Antibacterial activity of bovine lactoferrin derived peptides. Antimicrobial Agents and Chemotherapy 41, 54-59.

• Hurley, W.L., Grieve, R.C.J., Magura, C.E., Hegarty, H.M., Zou, S. 1993. Electrophoretic comparisons of lactoferrin from bovine mammary secretions, milk neutrophils, and human milk. Journal of Dairy Science 76, 377-387.

• Iigo, M., et, al, 2004. Orally administered bovine lactoferrin induces caspase-1 and interleukin-18 in the mouse intestinal mucosa: a possible explanation for inhibition of carcinogenesis and metastasis. Cytokine, 25(1): 36-44.

• Ikeda M, Nozak A, Sugiyama K, et al. Characterization of antiviral activity of lactoferrin against hepatitis C virus infection in human cultured cells. Virus Res. 2000; 66:51-63.

• Iwasa, M., et al, 2002. Lactoferrin inhibits hepatitis C virus viremia in chronic hepatitis C patients with high viral loads and HCV genotype 1b.
Am. J. Gastroenterol. 97:766-767.


• Ikeda, M., et al, 1998. Lactoferrin markedly inhibits hepatitis C virus infection in cultured human hepatocytes. Biochem. Biophys. Res. Commun. 215:744-749.

• Johansson, B., 1960. Isolation of an iron-containing red protein from human milk. Acta Chem. Scand. 14:510-512.

• Jones, E.M., Smart, A., Bloomberg, G., Burgess, L.,Millar, M. R.,1994. Lactoferricin, a new antimicrobial peptide. J. Appl. Bacteriol. 77:208-214.

• Kawasaki, Y., et al, 1993. Inhibition by casein glycomacropeptide and lactoferrin of influenza virus hemagglutination. Biosci. Biotech. Biochem. 57:1214-1215.

• Kawasaki, Y., Isoda, H., Tanimoto, M., Dosako, S., Idota, T., Ahiko, K., 1992. Inhibition by lactoferrin and casein glycomacropeptide of binding of cholera toxin to its receptor. Biosci. Biotech. Biochem. 56:195-198.

• Kruzel ML, Harari Y, Chen CY, Castro GA. The gut. A key metabolic organ protected by lactoferrin during experimental systemic inflammation in mice.
Adv Exp Med Biol 1998;443:167-73.

• Kutila, T., et al, 2004. The efficacy of bovine lactoferrin in the treatment of cows with experimentally induced Escherichia coli mastitis. Journal of Veterinary Pharmacology & Therapeutics. 27(4):197-202.

• Kuwata H, Yip TT, Tomita M, Hutchens TW. Direct evidence of the generation in human stomach of an antimicrobial peptide domain (lactoferricin) from ingested lactoferrin. Biochim Biophys Acta 1998 Dec 8;1429(1):129-41.

• Lee WJ, Farmer JL, Hilty M, Kim YB. The Protective Effects of Lactoferrin Feeding against Endotoxin Lethal Shock in Germfree Piglets.
Infect Immun Apr. 1999: Vol 66 No 4, 1421-1426.

• Levay, P.F., Viljoen, M., 1995. Lactoferrin: a general review. Haemtologica. 80:252-267.

• Lonnerdal, B., Iyer, S., 1995. Lactoferrin: molecular structure and biological function. Annu Rev Nutr. 15:93-110.

• Luf, W., Rosner, E., 1997. Zur Thermostabilität von Lactoferrin in Kuhmilch. Wiener Tieraertzliche Monatsschrift. 84, 70-73.

Bonit Matrix

Immunohistochemicall observations after sinusflloor ellevations with a reduced healling period

Use of Nanoporous Biphasic Grafting Material in Sinus Floor Elevation

Reduced healing time after sinus floor elevation using a synthetic bone graft material based on Calciumphosphates

MORPHOLOGICAL EVALUATION OF BONE DEFECT REGENERATION AFTER TREATMENT WITH TWO DIFFERENT FORMS OF BONE SUBSTITUTION MATERIALS ON THE BASIS OF BONITMATRIX®

BBraun Aesculap

New instrument set for oral surgery – minimalism and functionality Two Working Ends in One Ergonomic Handle

Innovative Bone Mill Concept Simplifies Augmentation

Functional Innovations in Pre-Implantological Bone Block Osteosynthesis

Bone Splitting As A Transversal Augmentation Method For Optimizing The Implant Bed