期刊文献+

Biological analysis of an innovative biodegradable antibiotic eluting bioactive glass/gypsum composite bone cement for treating experimental chronic MRSA osteomyelitis

下载PDF
导出
摘要 A multi-barrier antibiotics loaded biodegradable composite bone cement for resolving chronic osteomyelitis has been studied to understand the physico-mechanical properties,drug loading/eluting efficiency,and different merits and demerits prior to clinical application.After successful induction of bone infection in 28 rabbits using methicillin-resistant Staphylococcus aureus(MRSA)strains,calcium sulfate/bioactive glass based composite cement was implanted in 12 defects to assess its performance over parenteral therapy with microscopic and radiological examination for 90 days.The composite cement revealed acceptable physico-mechanical properties and controlled drug elution kinetics.Furthermore,the antibiotics concentrations in bone up to 42 days were sufficient to kill MRSA without eliciting adverse drug reactions.The striking feature of platelets aggregation by composite cement could assist bone healing.The controlled degradation with simultaneous entrapment of composite cement within the osteoid tissues and complete repair of infected cortical defects(holes)in rabbit tibia at 6 weeks indicated the excellent anti-infective and osteoconductive properties of composite cement.Thus,the animal study demonstrated the superiority of composite over injectable antibiotic therapy based on infection resolution and bone regeneration.We thereby conclude that the composite cement can be effectively applied in the treatment of resistant cases of chronic osteomyelitis.
出处 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2022年第1期164-177,共14页 药物分析学报(英文版)
  • 相关文献

参考文献4

二级参考文献22

  • 1Cong G, Xing S, Zhang H, 1997. Study on the properties of FGD gypsum [J]. New Building Materials, 12:10- 12.
  • 2Ding Z, 1992. Hemihydrate gypsum preparation (1)[J]. Non-Metallic Mines, 6: 56-58.
  • 3Ding Z, 1993. Hemihydrate gypsum preparation (2)[J]. Non-Metallic Mines, 1: 57-60.
  • 4Donald W K, Tong S, 1996. Process for production of alpha hemihydrate calcium sulfate from flue gas sludge [P]. US Patent, October, 8, 1996.
  • 5French Gypsum Industrial Institute, 1987. Gypsum [M]. Beijing: Architecture Industry Press.
  • 6Heiner H A M M, 1997. FGD gypsum utilization: the role of European gypsum industry(1)[J]. Building Artificial Boards, 4: 33-35.
  • 7Heiner H A M M, 1998. FGD gypsum utilization: the role of European gypsum industry(2)[J]. Building Artificial Boards, 1:40-41, 43.
  • 8Jorg B, 1991. Alpha hemihydrate in conjunction with the flue gas desulfurization of a power plant [C]. 2nd International conference on FGD and chemical gypsum. Toronto, Canada, May 12-15, 1991.
  • 9Kuntze R A, 1993. Alpha plaster from FGD gypsum and potential markets [C]. 3rd Intemational conference on FGD and chemical gypsum. Toronto, Canada, September 6, 1993.
  • 10Liu T, 1999. Handbook of waste treatment technology-waste gas volume[M]. Beijing: Chemical Engineering Press.

共引文献71

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部