Effect of low-level laser irradiation on osteoglycin gene expression in osteoblasts

被引:82
作者
Hamajima, S [1 ]
Hiratsuka, K [1 ]
Kiyama-Kishikawa, M [1 ]
Tagawa, T [1 ]
Kawahara, M [1 ]
Ohta, M [1 ]
Sasahara, H [1 ]
Abiko, Y [1 ]
机构
[1] Nihon Univ, Sch Dent, Dept Biochem, Matsudo, Chiba 2718587, Japan
关键词
gene expression; laser; osteoblast; osteoglycin/mimecan; real-time PCR;
D O I
10.1007/s10103-003-0255-9
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Many studies have attempted to elucidate the mechanism of the biostimulatory effects of low-level laser irradiation (LLLI), but the molecular basis of these effects remains obscure. We investigated the stimulatory effect of LLLI on bone formation during the early proliferation stage of cultured osteoblastic cells. A mouse calvaria-derived osteoblastic cell line, MC3T3-E1, was utilised to perform a cDNA microarray hybridisation to identify genes that induced expression by LLLI at the early stage. Among those genes that showed at least a twofold increased expression, the osteoglycin/mimecan gene was upregulated 2.3-fold at 2 h after LLLI. Osteoglycin is a small leucine-rich proteoglycan (SLRP) of the extracellular matrix which was I previously called the osteoinductive factor. SLRP are abundantly contained in the bone matrix, cartilage cells and connective tissues, and are thought to regulate cell proliferation, differentiation and adhesion in close association with collagen and many other growth factors. We investigated the time-related expression of this gene by LLLI using a reverse transcription polymerase chain reaction (RT-PCR) method, and more precisely with a real-time PCR method, and found increases of 1.5-2-fold at 2-4 h after LLLI compared with the non-irradiated controls. These results suggest that the increased expression of the osteoglycin gene by LLLI in the early proliferation stage of cultured osteoblastic cells may play an important role in the stimulation of bone formation in concert with matrix proteins and growth factors.
引用
收藏
页码:78 / 82
页数:5
相关论文
共 23 条
[1]  
ABIKO Y, 2002, 8 INT C LAS DENT YOK, P45
[2]  
BENTZ H, 1989, J BIOL CHEM, V264, P20805
[3]   SINGLE-STEP METHOD OF RNA ISOLATION BY ACID GUANIDINIUM THIOCYANATE PHENOL CHLOROFORM EXTRACTION [J].
CHOMCZYNSKI, P ;
SACCHI, N .
ANALYTICAL BIOCHEMISTRY, 1987, 162 (01) :156-159
[4]   Mimecan, the 25-kDa corneal keratan sulfate proteoglycan, is a product of the gene producing osteoglycin [J].
Funderburgh, JL ;
Corpuz, LM ;
Roth, MR ;
Funderburgh, ML ;
Tasheva, ES ;
Conrad, GW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (44) :28089-28095
[5]  
Hocking AM, 1998, MATRIX BIOL, V17, P1
[6]   The biology of the small leucine-rich proteoglycans - Functional network of interactive proteins [J].
Iozzo, RV .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (27) :18843-18846
[7]  
Kodama H.-A., 1981, Jpn. J. Oral Biol., V23, P899, DOI DOI 10.2330/JORALBIOSCI1965.23.899
[8]   OSTEOINDUCTIVE FACTOR INHIBITS FORMATION OF HUMAN OSTEOCLAST-LIKE CELLS [J].
KUKITA, A ;
BONEWALD, L ;
ROSEN, D ;
SEYEDIN, S ;
MUNDY, GR ;
ROODMAN, GD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (08) :3023-3026
[9]   Occurrence of PG-Lb, a leucine-rich small chondroitin/dermatan sulphate proteoglycan in mammalian epiphyseal cartilage: Molecular cloning and sequence analysis of the mouse cDNA [J].
Kurita, K ;
Shinomura, T ;
Ujita, M ;
Zako, M ;
Kida, D ;
Iwata, H ;
Kimata, K .
BIOCHEMICAL JOURNAL, 1996, 318 :909-914
[10]   Low-energy laser irradiation stimulates bone nodule formation at early stages of cell culture in rat calvarial cells [J].
Ozawa, Y ;
Shimizu, N ;
Kariya, G ;
Abiko, Y .
BONE, 1998, 22 (04) :347-354