欢迎登录材料期刊网

材料期刊网

高级检索

本文研究了羟基磷灰石(HA)表面形貌对人成骨肉瘤细胞(MG-63)生物学性能的影响.通过单轴压片技术与粒子占位法相结合控制陶瓷表面孔尺度、形态及分布,从而获得具有不同表面孔结构的HA陶瓷材料.将材料与MG-63共培养,通过扫描电子显微镜(SEM),MTT检测法表征材料表面形貌对细胞的黏附和增殖影响,并通过碱性磷酸酶活性(ALP)检测和实时荧光定量(RT-PCR)技术探讨了HA陶瓷材料的表面结构对MG-63成骨分化的诱导作用.结果表明,大孔结构(孔径大于200 μm)更有利于细胞的黏附和增殖,而小孔结构(孔径小于100 μm)能促进细胞的成骨分化.孔形貌和孔分布也能影响细胞的生物功能,相同尺度的孔径,不规则蜂窝状的多级微孔结构比光滑孔壁的浅孔结构更能诱导细胞的成骨分化.

参考文献

[1] Boyan B D,Sylvia V L,Liu Y,et al.Surface roughness mediates its effects on osteoblasts via protein kinase A and phospholipase A2.Biomaterials,1999,20(23/24):2305-2310.
[2] Mustafa K,Wroblewski J,Lopez B S,et al.Determining optimal surface roughness of TiO2 blasted titanium implant material for attachment,proliferation and differentiation of cells derived from human mandibular alveolar bone.Clinical Oral Implants Research,2008,12(5):515-525.
[3] Lincks J,Boyan B,Blanchard C,et al.Response of MG-63 osteoblast-like cells to titanium and titanium alloy is dependent on surface roughness and composition.Biomaterials,1998,19(23):2219-2232.
[4] Yang F,Dong W,He F,et al.Osteoblast response to porous titanium surfaces coated with zinc-substituted hydroxyapatite.Oral Surgery,Oral Medicine,Oral Pathology and Oral Radiology,2012,113(3):313-318.
[5] Zhe W,Zhan-Wen X,Hong-Song F,et al.Fabrication of micro-grooved patterns on hydroxyapatite ceramics and observation of earlier response of osteoblasts to the patterns.Journal of Inorganic Materials,2013,28(1):51-57.
[6] Boyan B,Bonewald L,Paschalis E,et al.Osteoblast-mediated mineral deposition in culture is dependent on surface microtopography.Calcified Tissue International,2002,71 (6):519-529.
[7] Lohmann C,Bonewald L,Sisk M,et al.Maturation state determines the response of osteogenic cells to surface roughness and 1,25-dihydroxyvitamin D3.Journal of Bone and Mineral Research,2000,15(6):1169-1180.
[8] Yuan H,Kurashina K,de Bruijn J D,et al.A preliminary study on osteoinduction of two kinds of calcium phosphate ceramics.Biomaterials,1999,20(19):1799-1806.
[9] Wu C,Chang J,Zhai W,et al.Porous akermanite scaffolds for bone tissue engineering:preparation,characterization,and in vitro studies.Journal of Biomedical Materials Research Part B:Applied Biomaterials,2006,78(1):47-55.
[10] Deligianni D D,Katsala N D,Koutsoukos P G,et al.Effect of surface roughness of hydroxyapatite on human bone marrow cell adhesion,proliferation,differentiation and detachment strength.Biomaterials,2000,22(1):87-96.
[11] Rosa AL,Beloti MM,van Noort R.Osteoblastic differentiation of cultured rat bone marrow cells on hydroxyapatite with different surface topography.Dental Materials,2003,19(8):768-772.
[12] Gonzalez-McQuire R,Green D,Walsh D,et al.Fabrication of hydroxyapatite sponges by dextran sulphate/amino acid templating.Biomaterials,2005,26(33):6652-6656.
[13] Chen X N,Zhu X D,Fan H S,et al.Rat bone marrow cell responses on the surface of hydroxyapatite with different topography.Key Engineering Materials,2008,361-363:1107-1110.
[14] Hui-Tao L,Wei Z,Xiong L,et al.Research on preparation and biological properties of dense hydroxyapatite spheres.Journal of Inorganic Materials,2013,28(1):40-44.
[15] Billiau A,Edy V,Heremans H,et al.Human interferon:mass production in a newly established cell line,MG-63.Antimicrobial Agents and Chemotherapy,1977,12(1):11-15.
[16] Lian J B,Stein G S.Concepts of osteoblast growth and differentiation:basis for modulation of bone cell development and tissue formation.Critical Reviews in Oral Biology & Medicine,1992,3(3):269 305.
[17] Schneider G,Perinpanayagam H,Clegg M,et al.Implant surface.roughness affects osteoblast gene expression.Journal of Dental Research,2003,82(5):372-376.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%