首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Gentamicin-loaded strontium-containing hydroxyapatite bioactive bone cement--an efficient bioactive antibiotic drug delivery system.
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Gentamicin-loaded strontium-containing hydroxyapatite bioactive bone cement--an efficient bioactive antibiotic drug delivery system.

机译:含有庆大霉素的含锶羟基磷灰石生物活性骨水泥-一种有效的生物活性抗生素药物递送系统。

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摘要

Modified strontium-containing hydroxyapatite (Sr-HA) bone cement was loaded with gentamicin sulfate to generate an efficient bioactive antibiotic drug delivery system for treatment of bone defects. Gentamicin release and its antibacterial property were determined by fluorometric method and inhibition of Staphylococcus aureus (S. aureus) growth. Gentamicin was released from Sr-HA bone cement during the entire period of study and reached around 38% (w/w) cumulatively after 30 days. Antibacterial activity of the gentamicin loaded in the cements is clearly confirmed by the growth inhibition of S. aureus. The results of the amount and duration of gentamicin release suggest a better drug delivery efficiency in Sr-HA bone cement over polymethylmethacrylate bone cement. Bioactivity of the gentamicin-loaded Sr-HA bone cement was confirmed with the formation of apatite layer with 1.836 +/- 0.037 mum thick on day 1 and 5.177 +/- 1.355 mum thick on day 7 after immersion in simulated body fluid. Compressive strengths of the gentamicin-loaded Sr-HA cement reached 132.60 +/- 10.08 MPa, with a slight decrease from the unloaded groups by 4-9%. Bending moduli of Sr-HA cements with and without gentamicin were 1.782 +/- 0.072 GPa and 1.681 +/- 0.208 GPa, respectively. On the contrary, unloaded Sr-HA cement obtained slightly larger bending strength of 35.48 +/- 2.63 MPa comparing with 33.00 +/- 1.65 MPa for loaded cement. No statistical difference was found on the bending strengths and modulus of gentamicin-loaded and -unloaded Sr-HA cements. Sr-HA bone cement loaded with gentamicin was proven to be an efficient drug delivery system with uncompromised mechanical properties and bioactivity.
机译:将改性的含锶羟基磷灰石(Sr-HA)骨水泥加载硫酸庆大霉素,以产生用于治疗骨缺损的有效生物活性抗生素药物递送系统。庆大霉素的释放及其抗菌性能通过荧光法和对金黄色葡萄球菌(S. aureus)生长的抑制作用来确定。庆大霉素在整个研究过程中均从Sr-HA骨水泥中释放出来,并在30天后累计达到约38%(w / w)。金黄色葡萄球菌的生长抑制作用清楚地证实了水泥中庆大霉素的抗菌活性。庆大霉素释放量和持续时间的结果表明,Sr-HA骨水泥中的药物递送效率优于聚甲基丙烯酸甲酯骨水泥。浸入模拟体液后,第1天形成厚1.836 +/- 0.037微米的磷灰石层,第7天形成厚5.177 +/- 1.355微米的磷灰石层,从而证实了庆大霉素Sr-HA骨水泥的生物活性。载有庆大霉素的Sr-HA水泥的抗压强度达到132.60 +/- 10.08 MPa,与未载组相比略有下降4-9%。有和没有庆大霉素的Sr-HA水泥的弯曲模量分别为1.782 +/- 0.072 GPa和1.681 +/- 0.208 GPa。相反,未加载的Sr-HA水泥的抗弯强度稍大一些,为35.48 +/- 2.63 MPa,而加载的水泥为33.00 +/- 1.65 MPa。庆大霉素加载和卸载的Sr-HA水泥的抗弯强度和模量均无统计学差异。载有庆大霉素的Sr-HA骨水泥已被证明是一种有效的药物输送系统,其机械性能和生物活性丝毫不受影响。

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