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The stability mechanisms of an injectable calcium phosphate ceramic suspension

机译:注射用磷酸钙陶瓷悬浮液的稳定性机理

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摘要

Calcium phosphate ceramics are widely used as bone substitutes in dentistry and orthopedic applications. For minimally invasive surgery an injectable calcium phosphate ceramic suspension (ICPCS) was developed. It consists in a biopolymer (hydroxypropylmethylcellulose: HPMC) as matrix and bioactive calcium phosphate ceramics (biphasic calcium phosphate: BCP) as fillers. The stability of the suspension is essential to this generation of "ready to use" injectable biomaterial. But, during storage, the particles settle down. The engineering sciences have long been interested in models describing the settling (or sedimentation) of particles in viscous fluids. Our work is dedicated to the comprehension of the effect of the formulation on the stability of calcium phosphate suspensionrnbefore and after steam sterilization. The rheological characterization revealed the macromolecular behavior of the suspending medium. The investigations of settling kinetics showed the influence of the BCP particle size and the HPMC concentration on the settling velocity and sediment compactness before and after sterilization. To decrease the sedimentation process, the granule size has to be smaller and the polymer concentration has to increase. A much lower sedimentation velocity, as compared to Stokes law, is observed and interpreted in terms of interactions between the polymer network in solution and the particles. This experimentation highlights the granules spacer property of hydrophilic macromolecules that is a key issue for interconnection control, one of the better ways to improve os-teoconduction and bioactivity.
机译:磷酸钙陶瓷在牙科和整形外科应用中被广泛用作骨替代品。为了进行微创手术,开发了可注射的磷酸钙陶瓷悬浮液(ICPCS)。它由作为基质的生物聚合物(羟丙基甲基纤维素:HPMC)和作为填充剂的生物活性磷酸钙陶瓷(双相磷酸钙:BCP)组成。悬浮液的稳定性对于这一代“即用型”可注射生物材料至关重要。但是,在存储过程中,颗粒会沉淀下来。长期以来,工程科学一直对描述粘性流体中颗粒沉降(或沉降)的模型感兴趣。我们的工作致力于理解制剂在蒸汽灭菌前后对磷酸钙悬浮液稳定性的影响。流变学特征揭示了悬浮介质的大分子行为。沉降动力学研究表明,灭菌前后BCP粒径和HPMC浓度对沉降速度和沉积物密实度的影响。为了减少沉降过程,颗粒尺寸必须更小并且聚合物浓度必须增加。与斯托克斯定律相比,观察到并根据溶液中的聚合物网络与颗粒之间的相互作用来解释低得多的沉降速度。该实验强调了亲水大分子的颗粒间隔物性质,这是互连控制的关键问题,互连控制是改善os-电导和生物活性的更好方法之一。

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  • 来源
    《Journal of materials science》 |2010年第6期|P.1799-1809|共11页
  • 作者单位

    Laboratoire d'Ingenierie Osteo-Articulaire et Dentaire (LIOAD), INSERM U791, 1 place Alexis Ricordeau, BP 84215, 44042 Nantes Cedex 1, France Laboratoire d'Ingenierie Osteo-Articulaire et Dentaire (LIOAD), Universite de Nantes, 1 place Alexis Ricordeau, 44042 Nantes Cedex 1, France;

    rnLaboratoire Polymeres, Colloiedes, Interfaces (LPCI), UMR 6120, CNRS, Universite du Maine, Avenue Olivier Messiaen, 72085 Le Mans Cedex 9, France;

    rnINRA, UR1268 Biopolymeres Interactions Assemblages (BIA), BP 71627, 44316 Nantes Cedex 3, France;

    rnLaboratoire d'Ingenierie Osteo-Articulaire et Dentaire (LIOAD), INSERM U791, 1 place Alexis Ricordeau, BP 84215, 44042 Nantes Cedex 1, France Laboratoire d'Ingenierie Osteo-Articulaire et Dentaire (LIOAD), Universite de Nantes, 1 place Alexis Ricordeau, 44042 Nantes Cedex 1, France;

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