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生物陶瓷表面蛋白吸附的研究进展 被引量:1

Research progress of protein adsorption on surface of bioceramics
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摘要 近年来,生物陶瓷材料在替代因外伤或疾病而导致缺损的硬组织方面已获得广泛的应用,当材料被植入生物体内后,其表面立即会发生多种蛋白质分子的堆积,这一蛋白质层对于改变材料的表面性质起着重要的作用。因此,对生物材料表面蛋白吸附的考察已经成为评价材料生物相容性和生物活性的重要内容。本文就生物陶瓷表面蛋白吸附的主要种类、研究方法、影响因素及其改进研究等相关内容作一综述,以期为生物陶瓷表面生物学改性的研究提供基础理论参考。 Bioactive ceramics have been widely used in replacing defected hard tissues caused by trauma or disease. When biomaterials are placed in bio-enviroments, various protein molecules will immediately accumulate on material surfaces forming a bioactive layer. Moreover, this protein layer plays an important role in determining the biocompatibility of materials. So this paper briefly reviews the protein adsorption on bioceramies surfaces, in- cluding the type of proteins absorbed, methods being used, factors effecting adsorption capacity and methods im- proving it, providing reference for the surface biological modification of bioaetive ceramic materials.
出处 《国际口腔医学杂志》 CAS 2012年第4期550-553,共4页 International Journal of Stomatology
关键词 生物陶瓷 蛋白吸附 生物相容性 bioceramies protein adsorption biocompatibility
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参考文献26

  • 1Chittur KK. FI3R/ATR for protein adsorption to bioma- terial surfaces[J]. Biomaterials, 1998, 19(4/5):357-369.
  • 2He HW, Li GD, Li B, et al. Effects of surface micros- tructure of hydroxyapatite on protein adsorption and bio- logical performance of osteoblasts[J]. Appl Surf Sci, 2008, 255 (2) : 565-567.
  • 3Zhu XD, Fan I-IS, Xiao YM, et al. Effect of surface s- tructure on protein adsorption to biphasie calcium-phos- phate ceramics in vitro and in vivo[J]. Acta Biomater, 2009, 5(4) : 1311-1318.
  • 4Segvich SJ, Smith HC, Kohn DH. The adsorption of pre- ferential binding peptides to apatite-based materials[J]. Biomaterials, 2009, 30(7) : 1287-1298.
  • 5Kandori K, Murata K, Ishikawa T. Microealorirnetrie s- tudy of protein adsorption onto calcium hydroxyapatites[J]. Langmuir, 2007, 23 (4) : 2064-2070.
  • 6Grinnell F, Feld MK. Fibroneetin adsorption on bydrop- hilie and hydrophobie surfaces detected by antibody bin- ding and analyzed during cell adhesion in serum-con- taining medium[J]. J Biol Chem, 1982, 257(9):4888- 4893.
  • 7李唐新,郑林卿,王大章,陈刚.非血管化骨-人重组骨形成蛋白-2复合种植体同期移植的超微结构观察(英文)[J].中国口腔颌面外科杂志,2005,3(3):183-188. 被引量:4
  • 8Hao L, Lawrence J. On the role of CO2 laser treatment in the human serum albumin and human plasma fibrone- c tin adsorption on zirconia(MGO-PSZ) bioceramie sur- face[J]. J Biomed Mater Res A, 2004, 69 (4):748-756.
  • 9Barbucei R, Magnani A. Conformation of human plasma proteins at polymer surfaces: The effectiveness of surface hepafinization[J]. Biomaterials, 1994, 15(12):955-962.
  • 10Fujii E, Ohkubo M, Tsuru K, et al. Selective protein adsorption property and characterization of nano-crysta- lline zinc-containing hydroxyapatite[J]. Acta Biomater, 2006, 2(1) :69-74.

二级参考文献36

  • 1Comparative study of adsorption kinetics of FCHA and HA[J].Chinese Journal of Biomedical Engineering(English Edition),2001,10(4):178-180. 被引量:1
  • 2Hench L L. Biomaterials. Science, 1980, 208(4446): 826-831.
  • 3Boyde A, Corsi A, Quarto R, et al. Osteoconduction in large macroporous hydroxyapatite ceramic implants: evidence for a complementary integration and disintegration mechanism. Bone, 1999, 24(6): 579-589.
  • 4Chang B S, Lee C K, Hong K S, et al. Osteoconduction at porous hydroxyapatite with various pore configurations. Biomaterials, 2000, 21(12): 1291-1298.
  • 5Vallet-Regi M, Gonzalez-Calbet J M. Calcium phosphates as substitution of bone tissues. Prog. Solid State Chem., 2004, 32(1/2): 1-31.
  • 6Thomas J W, Celaletdin E, Robert H, et al. Specific proteins mediate enhanced osteoblast adhesion on nanophase ceramics. J. Biomed. Mater. Res., 2000, 51(3): 475-483.
  • 7Wang X L, Fan H S, Xiao Y M, et al. Fabrication and characterization of porous hydroxyapatite/13-tricalcium phosphate ceramics by microwave sintering. Mater. Left., 2006, 60(4): 455-458.
  • 8Li B, Chen X N, Guo B, et al. Fabrication and cellular biocompatibility of porous carbonated biphasic calcium phosphate ceramics with a nanostructure. Acta Biomater., 2009, 5(1): 134-143.
  • 9Puleo D A, Nanci A. Understanding and controlling the bone-implant interface. Biomaterials, 1999, 20(23/24): 2311-2321.
  • 10Dee K, Puleo D, Bizios R, et al. An Introduction to Tissue-biomaterial Interactions. New York: John Wiley, 2002: 37-52.

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