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Development of bisphosphonates controlled delivery systems for bone implantation: influence of the formulation and process used on in vitro release

机译:用于骨植入的双膦酸盐可控递送系统的开发:制剂和工艺对体外释放的影响

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摘要

The present study investigates the development of controlled drug delivery devices by association of bisphosphonates (BPs) with calcium-deficient apatite (CDA) to obtain a prolonged drug delivery. In a first part, we studied the microencapsulation of methylene bisphos-phonic acid, our model of BPs, in biodegradable PLGA by the double emulsion (w/o/w) solvent evaporation/extraction process. Secondly, we associated BPs, either in a free form or microencapsulated, with calcium phosphate bio-materials. The association of free BPs with CDA was performed by isostatic compression at 80 MPa and we tested the interest of adding a binder, HPMC, in the formulation to reinforce the association. In parallel, micro-particles were associated with calcium-deficient apatite, either by simple mixture or by isostatic compression. To compare the different formulations, in vitro dissolution studies were performed. All the formulations tested appear to be efficient to produce BPs loaded biomaterials able to deliver the drug slowly and at a constant rate. The slowest release rate (2.7% in 14 days) was obtained with the blend of microencapsulated BPs with CDA.
机译:本研究通过将双膦酸盐(BPs)与缺钙的磷灰石(CDA)结合以获得延长的药物输送来研究受控药物输送装置的发展。在第一部分中,我们通过双乳液(w / o / w)溶剂蒸发/萃取工艺研究了可生物降解的PLGA中的BPs亚甲基双膦酸的微囊化。其次,我们将游离形式或微囊化的BP与磷酸钙生物材料相关联。游离BP与CDA的缔合是通过在80 MPa下等静压进行的,我们测试了在配方中添加粘合剂HPMC以增强缔合的兴趣。平行地,通过简单的混合物或通过等静压将微粒与缺乏钙的磷灰石结合。为了比较不同的制剂,进行了体外溶出研究。所有测试的制剂似乎都能有效地生产出负载BPs的生物材料,该材料能够缓慢且恒定地递送药物。微囊化的BPs与CDA的混合物获得了最慢的释放速率(14天为2.7%)。

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  • 来源
    《Journal of materials science》 |2010年第5期|P.1599-1604|共6页
  • 作者单位

    INSERM, U 791, Laboratoire d'ingenierie osteo-articulaire et dentaire, LIOAD, Universite de Nantes, 1 Place Alexis Ricordeau, 44042 Nantes, France Laboratoire de Pharmacie Galenique, UFR de Sciences Pharmaceutiques et Biologiques, Universite de Nantes,Nantes Atlantique Universites, BP 53508, 1 rue Gaston Veil,44035 Nantes, France;

    INSERM, U 791, Laboratoire d'ingenierie osteo-articulaire et dentaire, LIOAD, Universite de Nantes, 1 Place Alexis Ricordeau, 44042 Nantes, France Laboratoire de Pharmacie Galenique, UFR de Sciences Pharmaceutiques et Biologiques, Universite de Nantes,Nantes Atlantique Universites, BP 53508, 1 rue Gaston Veil,44035 Nantes, France;

    INSERM, U 791, Laboratoire d'ingenierie osteo-articulaire et dentaire, LIOAD, Universite de Nantes, 1 Place Alexis Ricordeau, 44042 Nantes, France Laboratoire de Pharmacie Galenique, UFR de Sciences Pharmaceutiques et Biologiques, Universite de Nantes,Nantes Atlantique Universites, BP 53508, 1 rue Gaston Veil,44035 Nantes, France;

    INSERM, U 791, Laboratoire d'ingenierie osteo-articulaire et dentaire, LIOAD, Universite de Nantes, 1 Place Alexis Ricordeau, 44042 Nantes, France;

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