欢迎登录材料期刊网

材料期刊网

高级检索

本文系统研究了两步pH调节B型明胶水溶胶合成磷酸钙纳米晶多孔微球.实验采用了“两步pH调节法”对80℃明胶—磷酸钠水溶胶的pH进行预调节:用酸对水溶胶的pH值从5.6调节到3.0,再用碱调节到4.0,然后向水溶胶中滴加钙盐溶液合成磷酸钙.研究中也按常规的一步pH调节方式用酸将水溶胶的pH值从5.6调节到4.0,然后合成磷酸钙作为对照实验.结果表明,两步pH调节法使得磷酸钙纳米晶发生有序自组装形成多孔性微球,而一步pH调节法则出现纳米晶无序聚集和生长.同时,按上述两步pH调节法还可以制备微量元素锶掺杂的多孔性微球.以上研究结果对于仿生溶液介质pH预调节方法影响磷酸钙纳米晶聚集、生长具有重要启示,同时这种多孔性磷酸钙微球在骨修复、缓释给药、细胞支架以及生物分离等方面都具有潜在应用价值.

参考文献

[1] Dorozhkin S V .Nanodimensional and nanocrystalline apatites and other calcium orthopHospHates in biomedical engineering,biology and medicine[J].Materials,2009,2:1975-2045.
[2] M. Andres-Verges;C. Fernandez-Gonzalez .A new route for the synthesis of calcium-deficient hydroxyapatites with low Ca/P ratio: Both spectroscopic and electric characterization[J].Journal of Materials Research,2000(11):2526-2533.
[3] 王彦伟,蔡舒,彭珍珍,姚康德.微球堆积法制备多孔磷酸钙生物材料[J].材料科学与工程学报,2005(02):235-238.
[4] 张爱娟,王卫伟.磷酸钙骨水泥的制备及性能[J].材料科学与工程学报,2008(05):779-782.
[5] Robinson C;Connell S;Kirkham J;Brookes SJ;Shore RC;Smith AM .The effect of fluoride on the developing tooth.[J].Caries research,2004(3):268-276.
[6] Sergey V. Dorozhkin;Matthias Epple .Biological and Medical Significance of Calcium Phosphates[J].Angewandte Chemie International Edition,2002(17):3130-3146.
[7] 李东旭,耿燕丽,李延报.羟基磷灰石纳米晶种原位增强磷酸钙骨水泥[J].材料科学与工程学报,2008(05):688-692.
[8] Sidney J. Omelon;Marc D. Grynpas .Relationships between Polyphosphate Chemistry, Biochemistry and Apatite Biomineralization[J].Chemical Reviews,2008(11):4694-4715.
[9] Lin KL;Chang J;Zhu YJ;Wu W;Cheng GF;Zeng Y;Ruan ML .A Facile One-Step Surfactant-Free and Low-Temperature Hydrothermal Method to Prepare Uniform 3D Structured Carbonated Apatite Flowers[J].Crystal growth & design,2009(1):177-181.
[10] Abdelkebir,K.;Morin-Grognet,S.;Gaudière,F.;Coquerel,G.;Labat,B.;Atmani,H.;Ladam,G. .Biomimetic layer-by-layer templates for calcium phosphate biomineralization[J].Acta biomaterialia,2012(9):3419-3428.
[11] LeGeros RZ .Formation and transformation of calcium phosphates:relevance to vascular calcification[J].Zeitschrift für Kardiologie,2001,90(Suppl 3):Ⅲ/116-Ⅲ/124.
[12] 樊东辉,徐政,李世普,闫玉华,陈晓明.磷酸钙生物可吸收材料及其微观性能研究[J].材料科学与工程学报,2003(02):208-210.
[13] Itatani K;Umeda T;Musha Y;Davies I J .Microstructures of spHerical calcium-pHospHate agglomerates prepared by spraypyrolysis and freeze-drying techniques[J].PHospHorous Res Bull,2006,20:47-60.
[14] Gobel C;Simon P;Buder J;Tlatlik H,Kniep R .PHase formation and morphology of calcium phosphate-gelatinecomposites grown by double diffusion technique:the influence offluoride[J].Journal of Materials Chemistry,2004,14:2225-1230.
[15] Adriana Bigi;Barbara Bracci;Sivia Panzavolta;Monica Iliescu;Mireille Plouet-Richard;Jacques Werckmann;Darinn Cam .Morphological and Structural Modifications of Octacalcium Phosphate Induced by Poly-L-Aspartate[J].Crystal growth & design,2004(1):141-146.
[16] Vrbka L;Vondrasek J;Jagoda-Cwiklik B;Vacha R;Jungwirth P .Quantification and rationalization of the higher affinity of sodium over potassium to protein surfaces[J].Proceedings of the National Academy of Sciences of the United States of America,2006(42):15440-15444.
[17] Darnell J;Lodish H;Baltimore D.Molecular Cell Biology;Scientific American Books[M].New York,1990
[18] Korolev N;Lyubartsev AP;Rupprecht A;Nordenskiold L .Competitive binding of Mg(2+),Ca(2+),Na(+),and K(+)ions to DNA in oriented DNA fibers:experimental and monte carlo simulation results[J].Biophysical Journal,1999,77:2736-2749.
[19] Collins KD .Charge density-dependent strength of hydration and biological structure.[J].Biophysical Journal,1997(1):65-76.
[20] Anhe Wang;Yue Cui;Junbai Li;Jan C. M. van Hest .Fabrication of Gelatin Microgels by a 'Cast' Strategy for Controlled Drug Release[J].Advanced functional materials,2012(13):2673-2681.
[21] Gou Z;Yang X;Gao X;Zhang X,Ting K,Wu MB,Gao C .Octacalcium pHospHate microscopic superstructure selfassembly and evolution by dual-mediating combination[J].Crystal Eengineering Communications,2009,11:1585-1590.
[22] Xianyan Yang;Xin Gao;Yilai Gan .Facile Synthesis of Octacalcium Phosphate Nanobelts: Growth Mechanism and Surface Adsorption Properties[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(14):6265-6271.
[23] Brodsky B;Werkmeister JA;Ramshaw JAM.Collagens and Gelatins[A].Wiley-VCH:Weinheim,2004:119-147.
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%