Cellular Effects of Enamel Matrix Derivative Are Associated With Different Molecular Weight Fractions Following Separation by Size-Exclusion Chromatography

被引:55
作者
Johnson, Dwight L. [2 ]
Carnes, David [1 ]
Steffensen, Bjorn [1 ]
Cochran, David L. [1 ]
机构
[1] Univ Texas Hlth Sci Ctr San Antonio, Dept Periodont, San Antonio, TX 78229 USA
[2] Wilford Hall USAF Med Ctr, Lackland AFB, TX 78236 USA
基金
美国国家卫生研究院;
关键词
Angiogenesis; bone morphogenetic protein; cell differentiation; cell proliferation; PERIODONTAL-LIGAMENT CELLS; HUMAN NEUTROPHIL GELATINASE; II-LIKE MODULES; IN-VITRO; C2C12; CELLS; AMELOGENIN; PROTEIN; GROWTH; EMDOGAIN(R); EXPRESSION;
D O I
10.1902/jop.2009.070420
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Background: Enamel matrix derivative (EMD) was shown to enhance soft tissue healing and regeneration of the periodontium; however, the mechanisms of this action are unknown. It is assumed that amelogenin, the most abundant protein in EMD, is the protein primarily responsible for the effects of EMD. The purpose this study was to fractionate EMD and associate its specific cellular effects with different molecular weight fractions following size-exclusion chromatography. Methods: Freshly dissolved EMD was fractionated by gel filtration, and forty-five 7-ml fractions were collected, desalted, lyophilized, and resuspended. These fractions were analyzed for their effects on the differentiation of osteoprogenitor cells (C2C12) and the proliferation and differentiation of human microvascular endothelial cells (HMVECs). Alkaline phosphatase activity (C2C12) was measured as a marker for osteogenic differentiation before and after preincubation of the fractions with the bone morphogenetic protein (BMP) decoy receptor, noggin. Angiogenesis (HMVEC) was evaluated as a marker for endothelial cell differentiation. Enzymographic assays used polyacrylamide gels copolymerized with denatured type I Collagen to determine gelatinolytic activities in each fraction. Results: EMD fractionated into three major protein peaks following size exclusion chromatography with cross-linked dextran particle matrix. Peak I was associated with the column void volume, whereas peak III eluted near the salt volume. Peak 11 eluted between these two peaks. Proliferation and angiogenic activities were associated with peaks 11 and III for the microvascular cells. The differentiation of osteoprogenitor cells, indicated by alkaline phosphatase activity, was induced by EMD components present in peak I and the leading edge of peak II. The additional observation that this differentiation was inhibited by prior treatment of the fractions with noggin suggested the activity was induced by BMP rather than amelogenin or other unknown proteins. Gelatinolytic activities were detected in the early fractions of peaks I and II of gel-fractionated EMD. Conclusions: The cellular activities stimulated by EMD are not associated with a single molecular weight species. The fact that noggin abolishes C2C12 alkaline phosphatase activity suggests that effects on osteoprogenitor cell differentiation are the result of a BMP-like protein (s), whereas effects on proliferation and angiogenesis are associated with lower molecular weight species present in peaks II and III. Finally, unheated EMD displays gelatinolytic activities that are also detectable following size-exclusion separation of its constituents. The masses of these activities were consistent with those reported for latent and active matrix metalloproteinase-20. J Periodontol 2009;80:648-656.
引用
收藏
页码:648 / 656
页数:9
相关论文
共 35 条
[1]   SELECTIVE ADSORPTION OF PORCINE-AMELOGENINS ONTO HYDROXYAPATITE AND THEIR INHIBITORY ACTIVITY ON HYDROXYAPATITE GROWTH IN SUPERSATURATED SOLUTIONS [J].
AOBA, T ;
FUKAE, M ;
TANABE, T ;
SHIMIZU, M ;
MORENO, EC .
CALCIFIED TISSUE INTERNATIONAL, 1987, 41 (05) :281-289
[2]   Enamelysin mRNA Displays a Developmentally Defined Pattern of Expression and Encodes a Protein which Degrades Amelogenin [J].
Bartlett, John D. ;
Ryu, Ok Hee ;
Xue, Jun ;
Simmer, James P. ;
Margolis, Henry C. .
CONNECTIVE TISSUE RESEARCH, 1998, 39 (1-3) :101-+
[3]  
FISHER LW, 1985, J ORTHOP RELAT RES, P362
[4]   A comparative study utilizing open flap debridement with and without enamel matrix derivative in the treatment of periodontal intrabony defects: A 12-month re-entry study [J].
Froum, SJ ;
Weinberg, MA ;
Rosenberg, E ;
Tarnow, D .
JOURNAL OF PERIODONTOLOGY, 2001, 72 (01) :25-34
[5]   In vitro studies on periodontal ligament cells and enamel matrix derivative [J].
Gestrelius, S ;
Andersson, C ;
Lidstrom, D ;
Hammarstrom, L ;
Somerman, M .
JOURNAL OF CLINICAL PERIODONTOLOGY, 1997, 24 (09) :685-692
[6]   Periodontal regeneration in a buccal dehiscence model in monkeys after application of enamel matrix proteins [J].
Hammarstrom, L ;
Heijl, L ;
Gestrelius, S .
JOURNAL OF CLINICAL PERIODONTOLOGY, 1997, 24 (09) :669-677
[8]   Amelogenin is a cell adhesion protein [J].
Hoang, AM ;
Klebe, RJ ;
Steffensen, B ;
Ryu, OH ;
Simmer, JP ;
Cochran, DL .
JOURNAL OF DENTAL RESEARCH, 2002, 81 (07) :497-500
[9]   Noggin blocks osteoinductive activity of porcine enamel extracts [J].
Iwata, T ;
Morotome, Y ;
Tanabe, T ;
Fukae, M ;
Ishikawa, I ;
Oida, S .
JOURNAL OF DENTAL RESEARCH, 2002, 81 (06) :387-391
[10]   Enamel matrix derivative (EMDOGAIN®) rapidly stimulates phosphorylation of the MAP kinase family and nuclear accumulation of smad2 in both oral epithelial and fibroblastic human cells [J].
Kawase, T ;
Okuda, K ;
Momose, M ;
Kato, Y ;
Yoshie, H ;
Burns, DM .
JOURNAL OF PERIODONTAL RESEARCH, 2001, 36 (06) :367-376