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可注射磷酸钙生物材料植入后矿物颗粒大小对细胞降解活性的短期影响及其对骨替代的影响

Short-term effects of mineral particle sizes on cellular degradation activity after implantation of injectable calcium phosphate biomaterials and the consequences for bone substitution.

作者信息

Gauthier O, Bouler J M, Weiss P, Bosco J, Aguado E, Daculsi G

机构信息

Equipe INSERM Matériaux d'intérêt Biologique, Faculté de Chirurgie Dentaire, Nantes, France.

出版信息

Bone. 1999 Aug;25(2 Suppl):71S-74S. doi: 10.1016/s8756-3282(99)00137-4.

DOI:10.1016/s8756-3282(99)00137-4
PMID:10458280
Abstract

This in vivo study investigated the influence of two calcium phosphate particle sizes (40-80 microm and 200-500 microm) on the cellular degradation activity associated with the bone substitution process of two injectable bone substitutes (IBS). The tested biomaterials were obtained by associating a biphasic calcium phosphate (BCP) ceramic mineral phase and a 3% aqueous solution of a cellulosic polymer (hydroxypropylmethylcellulose). Both were injected into osseous defects at the distal end of rabbit femurs for 2- and 3-week periods. Quantitative results for tartrate-resistant acid phosphatase (TRAP) cellular activity, new bone formation, and ceramic resorption were studied for statistical purposes. Positive TRAP-stained degradation cells were significantly more numerous for IBS 40-80 than IBS 200-500, regardless of implantation time. BCP degradation was quite marked during the first 2 weeks for IBS 40-80, and bone colonization occurred more extensively for IBS 40-80 than for IBS 200-500. The resorption-bone substitution process occurred earlier and faster for IBS 40-80 than IBS 200-500. Both tested IBS displayed similar biological efficiency, with conserved in vivo bioactivity and bone-filling ability. Differences in calcium phosphate particle sizes influenced cellular degradation activity and ceramic resorption but were compatible with efficient bone substitution.

摘要

本体内研究调查了两种磷酸钙颗粒大小(40 - 80微米和200 - 500微米)对与两种可注射骨替代物(IBS)的骨替代过程相关的细胞降解活性的影响。测试的生物材料是通过将双相磷酸钙(BCP)陶瓷矿物相和纤维素聚合物(羟丙基甲基纤维素)的3%水溶液混合获得的。将两者注射到兔股骨远端的骨缺损处,为期2周和3周。为了统计目的,研究了抗酒石酸酸性磷酸酶(TRAP)细胞活性、新骨形成和陶瓷吸收的定量结果。无论植入时间如何,IBS 40 - 80中TRAP染色阳性的降解细胞数量明显多于IBS 200 - 500。对于IBS 40 - 80,在最初2周内BCP降解相当明显,并且IBS 40 - 80的骨定植比IBS 200 - 500更广泛。IBS 40 - 80的吸收 - 骨替代过程比IBS 200 - 500更早且更快发生。两种测试的IBS都表现出相似的生物学效率,具有保留的体内生物活性和骨填充能力。磷酸钙颗粒大小的差异影响细胞降解活性和陶瓷吸收,但与有效的骨替代兼容。

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