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首页> 外文期刊>Drug development and industrial pharmacy >Dual effect biodegradable ciprofloxacin loaded implantable matrices for osteomyelitis: controlled release and osteointegration
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Dual effect biodegradable ciprofloxacin loaded implantable matrices for osteomyelitis: controlled release and osteointegration

机译:双效生物降解的环丙沙星加载的骨髓炎植入基质:控释和骨折

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Ciprofloxacin biodegradable implantable matrices (CPX-IMs) of tailored porous surfaces were fabricated by hot melt injection molding of poly-l-lactic acid (PLLA) followed by coating with PLLA/sodium chloride. CPX-IDs were designed to have a non-porous coat (NPC) or a porous coat of small pore size (SPC; 150-250 mu m) or a large pore size (LPC; 250-350 mu m). CPX-IMs surface pore size was confirmed by scanning electron microscope. The hardness of NPC, LPC, and SPC CPX-IMs were 58 +/- 2.8, 53 +/- 1.9, and 50 +/- 2.1 N, respectively. The measured porosity values were 41.2 +/- 1.53, 65.2 +/- 1.1, and 60.7 +/- 1.2%, respectively. Differential scanning calorimetry was employed to study the compatibility of ingredients, the effect of injection molding on polymer properties, and implants degradation. Coating of CPX-IMs prolonged drug release to reach a value of 90% release in 40 days. Antibacterial activity tests showed sufficiency of CPX to inhibit pathogens known to cause osteomyelitis. The in vivo study showed tissue compatibilities of the inserted matrices in tested rats with no sign of infection throughout the experiment period. SPC and LPC CPX-IMs demonstrated a better osteointegration, cell adhesion, and infiltration of different types of bone cells within implants structure compared to the non-porous matrix. Furthermore, LPC CPX-IMs showed a superior bone cell attachment and osteointegration relative to SPC CPX-IMs. Findings of this study confirmed the impact of porosity and pore sizes on cell proliferation and fracture healing concurrently with the sustained local antibiotic therapy for treatment or prevention of osteomyelitis.
机译:通过聚-L-乳酸(PLLA)的热熔注射成型,用PLLA /氯化钠涂布,通过热熔注射成型来制造定制多孔表面的环氧化物可生物降解的植入基质(CPX-IMS)。设计为具有非多孔涂层(NPC)或多孔小孔尺寸(SPC;150-250μm)或大孔径(LPC;250-350μm)的多孔涂层或多孔涂层。 CPX-IMS表面孔径通过扫描电子显微镜确认。 NPC,LPC和SPC CPX-IMS的硬度分别为58 +/- 2.8,53 +/- 1.9和50 +/- 2.1n。测量的孔隙率值分别为41.2 +/- 1.53,65.2 +/- 1.1和60.7 +/- 1.2%。采用差分扫描量热法研究成分的相容性,注射成型对聚合物性质的影响,并植入降解。 CPX-IMS的涂层延长药物释放以在40天内达到90%的值。抗菌活性试验表明CPX的充分抑制已知造成骨髓炎的病原体。体内研究表明,在实验期内没有感染迹象的测试大鼠中插入的基质的组织相容性。与非多孔基质相比,SPC和LPC CPX-IMS证明了植入物结构中不同类型的骨细胞的细胞粘附和渗透。此外,LPC CPX-IMS显示相对于SPC CPX-IMS的优越的骨电池附着和骨孔。本研究的结果证实了孔隙率和孔径的影响与持续局部抗生素治疗治疗或预防骨髓炎的持续局部抗生素治疗伴细胞增殖和骨折愈合。

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