首页> 外文期刊>Journal of biomedical materials research, Part A >Phase composition control of calcium phosphate nanoparticles for tunable drug delivery kinetics and treatment of osteomyelitis. II. Antibacterial and osteoblastic response
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Phase composition control of calcium phosphate nanoparticles for tunable drug delivery kinetics and treatment of osteomyelitis. II. Antibacterial and osteoblastic response

机译:磷酸钙纳米粒子的相组成控制可调节的药物递送动力学和治疗骨髓炎。二。抗菌和成骨反应

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Osteomyelitis has been traditionally treated by the combination of long-term antibiotic therapies and surgical removal of diseased tissue. The multifunctional material was developed in this study with the aim to improve this therapeutic approach by: (a) enabling locally delivered and sustained release of antibiotics at a tunable rate, so as to eliminate the need for repetitive administration of systemically distributed antibiotics; and (b) controllably dissolving itself, so as to promote natural remineralization of the portion of bone lost to disease. We report hereby on the effect of previously synthesized calcium phosphates (CAPs) with tunable solubilities and drug release timescales on bacterial and osteoblastic cell cultures. All CAP powders exhibited satisfying antibacterial performance against Staphylococcus aureus, the main causative agent of osteomyelitis. Still, owing to its highest drug adsorption efficiency, the most bacteriostatically effective phase was amorphous CAP with the minimal inhibitory concentration of less than 1 mg/mL. At the same time, the positive cell response and osteogenic effect of the antibiotic-loaded CAP particles was confirmed in vitro for all the sparsely soluble CAP phases. Adsorption of the antibiotic onto CAP particles reversed the deleterious effect that the pure antibiotic exerted on the osteogenic activity of the osteoblastic cells. The simultaneous osteogenic and antimicrobial performance of the material developed in this study, altogether with its ability to exhibit sustained drug release, may favor its consideration as a material base for alternative therapeutic approaches to prolonged antibiotic administration and surgical debridement typically prescribed in the treatment of osteomyelitis.
机译:骨髓炎传统上是通过长期抗生素治疗和手术切除患病组织的方法来治疗的。在这项研究中开发了多功能材料,旨在通过以下方式改进这种治疗方法:(a)使抗生素能够以可调的速率局部释放和持续释放,从而消除了重复施用全身分布的抗生素的需要; (b)可控地溶解自身,以促进因疾病而失去的那部分骨头自然再矿化。我们在此报告先前合成的磷酸钙(CAPs)具有可调的溶解度和药物释放时标对细菌和成骨细胞培养的影响。所有CAP粉末对金黄色葡萄球菌(骨髓炎的主要病原体)均显示出令人满意的抗菌性能。尽管如此,由于其最高的药物吸附效率,最有效的抑菌相是无定形CAP,其最小抑制浓度小于1 mg / mL。同时,对于所有稀疏可溶的CAP相,在体外均证实了载有抗生素的CAP颗粒的阳性细胞反应和成骨作用。抗生素在CAP颗粒上的吸附逆转了纯抗生素对成骨细胞成骨活性的有害作用。在这项研究中开发的材料同时具有成骨和抗菌性能,同时具有持续释放药物的能力,可能有利于考虑将其作为替代药物治疗方法的材料基础,以延长抗生素施用和外科清创术,通常用于治疗骨髓炎。

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