Our goal is to determine the effect of exogenously added 5,5-diphenylhydantoin, (DPH; Phenytoin, PHT) on cultured human gingival fibroblasts; rat osteoblasts and a rat osteoblastic osteosarcoma cell line and chick osteoclasts. The investigation will largely focus on the ability of PHT to regulate potential mechanisms which may be operable in bone remodeling. PHT has been widely used in the treatment of convulsive disorders and has been shown to influence bone metabolism. Phenytoin has been shown to inhibit the release of lysosomal enzymes in parallel with bone resorption as indicated by reduced release of 45Ca, Ca2+, Pi, and hydroxyproline from mouse calvaria in vitro. Potential mechanisms operable in bone resorption include collagenase and its inhibitor protein, matrix degrading lysosomal enzymes, and the vitamin K-dependently synthesized calcium-binding amino acid, gamma-carboxyglutamic acid (Gla). Cultures of bone cells will be examined in the presence or absence of Phenytoin. The action of PHT on the activity and secretion of collagenase and its inhibitor protein from osteoblasts and fibroblasts will be analyzed by (1) measurement of the release of 14C-labeled peptides from Type 1 rat skin collagen substrate and (2) visualization of collagenase digestion products by 7.5% SDS gel electrophoresis and fluorography of the radiolabeled peptides. PHT action on the synthesis of Gla protein from osteoblasts and the osteosarcoma cell line will be analyzed by radioimmunoassay for bone Gla protein. The effect of PHT on the secretion and activity of chick osteoclast lysosomal enzyme, tartrate-resistant acid phosphatase, a marker enzyme specific for the osteoclast, and beta-glucuronidase will be measured with substrate and chromogenic couplers spectrophotometrically. An electron microscopic cytochemical study will be conducted to examine the localization of lysosomal acid phosphatase reaction product from cultured chick osteoclasts following PHT exposure. The ability of osteoclasts to form a ruffled border on devitalized chick calvarial bone fragments in vitro will also be evaluated. The use of PHT as a probe in cultured cells may advance our understanding of bone remodeling mechanisms and consequently both the treatment of periodontal disease and the development of craniofacial anomalies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Unknown (R23)
Project #
5R23DE007788-02
Application #
3447223
Study Section
Oral Biology and Medicine Study Section (OBM)
Project Start
1986-07-01
Project End
1989-06-30
Budget Start
1987-07-01
Budget End
1988-06-30
Support Year
2
Fiscal Year
1987
Total Cost
Indirect Cost
Name
New York University
Department
Type
Schools of Dentistry/Oral Hygn
DUNS #
004514360
City
New York
State
NY
Country
United States
Zip Code
10012
Vernillo, A T; Ramamurthy, N S; Lee, H M et al. (1992) Parathyroid hormone regulation of matrix degrading enzymes in rat osteoblastic osteosarcoma 17/2.8 cells. Res Commun Chem Pathol Pharmacol 75:323-39
Rifkin, B R; Vernillo, A T; Kleckner, A P et al. (1991) Cathepsin B and L activities in isolated osteoclasts. Biochem Biophys Res Commun 179:63-9
Vernillo, A T; Ramamurthy, N S; Lee, H M et al. (1990) The effect of phenytoin on collagenase and gelatinase activities in UMR 106-01 rat osteoblastic osteosarcoma cells. Matrix 10:27-32
Auszmann, J M; Vernillo, A T; Fine, A S et al. (1990) The effect of phenytoin on parathyroid hormone stimulated cAMP activity in cultured murine osteoblasts. Life Sci 46:351-7
Ramamurthy, N S; Vernillo, A T; Lee, H M et al. (1990) The effect of tetracyclines on collagenase activity in UMR 106-01 rat osteoblastic osteosarcoma cells. Res Commun Chem Pathol Pharmacol 70:323-35
Vernillo, A T; Rifkin, B R; Hauschka, P V (1990) Phenytoin affects osteocalcin secretion from osteoblastic rat osteosarcoma 17/2.8 cells in culture. Bone 11:309-12
Rifkin, B R; Auszmann, J M; Kleckner, A P et al. (1988) Calcitonin stimulates cAMP accumulation in chicken osteoclasts. Life Sci 42:799-804
Dziak, R; Vernillo, A; Rifkin, B (1988) The effects of phenytoin on calcium uptake in osteoblastic cells. J Bone Miner Res 3:415-20