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In Vitro Activity of Gentamicin-Loaded Bioabsorbable Beads against Different Microorganisms

机译:庆大霉素负载的生物可吸收微珠对不同微生物的体外活性

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摘要

Osteomyelitis is responsible for high treatment costs, long hospital stays, and results in substantial morbidity. Treatment with surgical debridement and antibiotic-impregnated Polymethylmetacrylate (PMMA) beads is the standard of care, providing high local but low serum antibiotic concentrations, thereby avoiding systemic toxicity. However, for several reasons, the beads require surgical removal. Alternative antibiotic delivery systems should improve the treatment of bone infection, actively encourage bone healing and require no additional surgery for removal. We investigated the activity of gentamicin-loaded bioabsorbable beads against different microorganisms (Staphylococcus epidermidis, S. aureus, Escherichia coli, Enterococcus faecalis, Candida albicans) commonly causing surgical site bone infection, by microcalorimetry. Calcium sulphate beads containing gentamicin were incubated in microcalorimetry ampoules containing different concentrations of the corresponding microorganism. Growth medium with each germ and unloaded beads was used as positive control, growth medium with loaded beads alone as negative control. Bacterial growth-related heat production at 37 °C was measured for 24 h. Cultures without gentamicin-loaded beads produced heat-flow peaks corresponding to the exponential growth of the corresponding microorganisms in nutrient-rich medium. In contrast, cultures with gentamicin-loaded beads completely suppressed heat production during 24 h, demonstrating their antibiotic activity. Gentamicin-loaded beads effectively inhibited growth of susceptible microorganisms, under the described in vitro conditions.
机译:骨髓炎是造成高昂的治疗费用,长期住院并导致大量发病的原因。护理标准为手术清创术和抗生素浸渍的聚甲基丙烯酸甲酯(PMMA)珠,可提供高局部但低血清抗生素浓度,从而避免了全身毒性。然而,由于几个原因,珠子需要手术去除。替代性抗生素输送系统应改善骨感染的治疗,积极促进骨愈合,并且不需要其他手术来切除。我们通过微量热法研究了通常引起手术部位骨感染的庆大霉素负载的可生物吸收的珠对不同微生物(表皮葡萄球菌,金黄色葡萄球菌,大肠杆菌,粪肠球菌,白色念珠菌)的活性。将含有庆大霉素的硫酸钙珠粒在含有不同浓度的相应微生物的微量量热安瓿中孵育。具有每种细菌和未加珠的生长培养基用作阳性对照,仅具有加珠的生长培养基用作阴性对照。测量了在37°C下细菌生长相关的热量产生24小时。没有庆大霉素负载的珠的培养物产生的热流峰对应于在营养丰富的培养基中相应微生物的指数增长。相反,带有庆大霉素的微珠培养物在24小时内完全抑制了热量的产生,证明了它们的抗生素活性。在所述的体外条件下,载有庆大霉素的珠粒有效地抑制了易感微生物的生长。

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