骨髓炎
磷酸钙骨水泥
PLGA公司
药物输送
水泥
渗透(战争)
微球
水溶液
抗生素
材料科学
乳酸
生物医学工程
药品
骨水泥
乙醇酸
钙
化学
化学工程
细菌
药理学
纳米技术
外科
复合材料
医学
有机化学
生物化学
冶金
纳米颗粒
工程类
生物
遗传学
运筹学
作者
M. Chung,Wei‐Tso Chia,Hung‐Yi Liu,Chun‐Wen Hsiao,Hsu‐Chan Hsiao,Chih‐Man Yang,Hsing‐Wen Sung
标识
DOI:10.1002/adhm.201400158
摘要
In the conventional treatment of osteomyelitis, the penetration of antibiotics into the infected bone is commonly poor. To ensure that the local antibiotic concentration is adequate, this work develops an injectable calcium phosphate (CP) cement in which is embedded pH‐responsive hollow microspheres (HMs) that can control the release of a drug according to the local pH. The HMs are fabricated using a microfluidic device, with a shell of poly( d,l ‐lactic‐ co ‐glycolic acid) (PLGA) and an aqueous core that contains vancomycin (Van) and NaHCO 3 . At neutral pH, the CP/HM cement elutes a negligible concentration of the drug. In an acidic environment, the NaHCO 3 that is encapsulated in the HMs reacts with the acid rapidly to generate CO 2 bubbles, disrupting the PLGA shells and thereby releasing Van locally in excess of a therapeutic threshold. The feasibility of using this CP/HM cement to treat osteomyelitis is studied using a rabbit model. Analytical results reveal that the CP/HM cement provides highly effective local antibacterial activity. Histological examination further verifies the efficacy of the treatment by the CP/HM cement. The above findings suggest that the CP/HM cement is a highly efficient system for the local delivery of antibiotics in the treatment of osteomyelitis.
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