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Levels of t-PA and PAI-2 in gingival crevicular fluid during orthodontic tooth movement in adults


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Davidovitch Z, Nicolay OR, Ngan PW, Shanfeld JL. Neurotransmitters, cytokines, and the control of alveolar bone remodeling in orthodontics. Dent Clin N Am 1988; 32:411–35. Search in Google Scholar

Saito M, Saito S, Ngan PW, Shanfeld J, Davidovitch Z. Interleukin-1ß and prostaglandin E are involved in the response of periodontal cells to mechanical stress in vivo and in vitro. Am J Orthod Dentofacial Orthop 1991; 99: 226–40. Search in Google Scholar

Griffiths GS, Moulson AM, Petrie A, James IT. Evaluation of osteocalcin and pyridinium crosslinks of bone collagen as markers of bone turnover in gingival crevicular fluid during different stages of orthodontic treatment. J Clin Periodontol 1998;25:492–8. Search in Google Scholar

Iwasaki LR, Haack JE, Nickel JC, Reinhardt RA, Petro TM. Human interleukin-1ß and interleukin-1 receptor antagonist secretion and velocity of tooth movement. Arch Oral Biol 2001;46:185–9. Search in Google Scholar

Grieve III WG, Johnson GK, Moor RN, Reinhardt RA, DuBois LM. Prostaglandin E (PGE) and interleukin-1ß (IL-1ß) levels in gingival crevicular fluid during human orthodontic tooth movement. Am J Orthod Dentofacial Orthop 1994;105:369–74. Search in Google Scholar

Uematsu S, Mogi M, Deguchi T. Interleukin(IL)-1ß, IL-6, tumor necrosis factor-α, epidermal growth factor, and ß2-microglobulin levels are elevated in gingival crevicular fluid during human orthodontic tooth movement. J Dent Res 1996;75:562–7. Search in Google Scholar

Xiao Y, Bunn CL, Bartold PM. Links. Detection of tissue plasminogen activator (t-PA) and plasminogen activator inhibitor 2(PAI-2) in gingival crevicular fluid from healthy, gingivitis and periodontitis patients. J Clin Periodontol 2000;27:149–56. Search in Google Scholar

Kruithof EK. Plasminogen activator inhibitors – a review. Enzyme. 1988;40:113–21. Search in Google Scholar

Deutsch DG, Mertz ET. Plasminogen: purification from human plasma by affinity chromatography. Science. 1970; 170:1095–6. Search in Google Scholar

Andreasen PA, Georg B, Lund LR, Riccio A, Stacey SN. Plasminogen activator inhibitors: hormonally regulated serpins. Mol Cell Endocrinol 1990;68:1–19. Search in Google Scholar

Kinnby B, Matsson L, Astedt B. Aggravation of gingival inflammatory symptoms during pregnancy associated with the concentration of plasminogen activator inhibitor type 2 (PAI-2) in gingival fluid. J Periodontal Res 1996;31:271–7. Search in Google Scholar

Silness J, Löe H. Periodontal disease in pregnancy. II. Correlation between oral hygiene and periodontal condition. Acta Odontol Scand 1964;22:112–35. Search in Google Scholar

Griffiths GS, Wilton JM, Curtis MA. Contamination of human gingival crevicular fluid by plaque and saliva. Arch Oral Biol 1992;37:559–64. Search in Google Scholar

Sugiyama Y, Yamaguchi M, Kanekawa M et al. The level of cathepsin B in gingival crevicular fluid during human orthodontic tooth movement. Eur J Orthod. 2003;25:71–6. Search in Google Scholar

Nozoe T, Yamaguchi M, Nogimura A, Aihara N, Kojima T, Kasai K. The level of cathepsin L in gingival crevicular fluid during orthodontic tooth movement and effect of tension-force on cathepsin L activity from periodontal ligament cells. Orthod Waves 2002;61:447–53. Search in Google Scholar

Offenbacher S, Odle BM, Van Dyke TE. The use of crevicular fluid prostaglandin E2 levels as a predictor of periodontal attachment loss. J Periodontal Res 1986;21:101–12. Search in Google Scholar

Bradford MM. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 1976;72: 248–54. Search in Google Scholar

Cimasoni G. Crevicular fluid updated. In: Myers HM. ed. Monographs in oral sciences, Karger Basal 1983:1–152. Search in Google Scholar

Apajalahti S, Sorsa T, Railavo S, Ingman T. The in vivo levels of matrix metalloproteinase-1 and -8 in gingival crevicular fluid during initial orthodontic tooth movement. J Dent Res 2003;82:1018–22. Search in Google Scholar

Vassalli JD, Sappino AP, Belin D. The plasminogen activator/plasmin system. J Clin Invest 1991;88:1067–72. Search in Google Scholar

Knudsen BS, Nachman RL. Matrix plasminogen activator inhibitor. Modulation of the extracellular proteolytic environment. J Biol Chem 1988;263:9476–81. Search in Google Scholar

Kinnby B, Borgstrom MK, Granath L, Lecander I, Sundin B. Tissue plasminogen activator (t-PA) and placental plasminogen activator inhibitor (PAI-2) in gingival fluid from 8–9-year-old children. Scand J Dent Res 1993;101:279–81. Search in Google Scholar

Kinnby B, Matsson L, Lecander I. The plasminogen-activating system in gingival fluid from adults. An intra-individual study before and after treatment of gingivitis. Scand J Dent Res 1994;102:334–41. Search in Google Scholar

Brown JM, Watanabe K, Cohen RL, Chambers DA. Molecular characterization of plasminogen activators in human gingival crevicular fluid. Arch Oral Biol 1995;40:839–45. Search in Google Scholar

Saxne T, Lecander I, Geborek P. Plasminogen activators and plasminogen activator inhibitors in synovial fluid. Difference between inflammatory joint disorders and osteoarthritis. J Rheumatol 1993;20:91–6. Search in Google Scholar

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