Kankare J, Lindfors N C
Department of Orthopaedics and Traumatology, Töölö Hospital, Helsinki University Central Hospital, University of Helsinki, Helsinki, Finland.
Scand J Surg. 2016 Dec;105(4):248-253. doi: 10.1177/1457496915626834. Epub 2016 Jun 23.
Bioactive glass S53P4 is an antibacterial bone substitute with bone-bonding and osteostimulative properties. The bone substitute has been successfully used clinically in spine; trauma; orthopedic; ear, nose, and throat; and cranio-maxillofacial surgeries. Bioactive glass S53P4 significantly reduces the amount of bacteria in vitro and possesses the capacity to kill both planktonic bacteria and bacteria in biofilm. Three patients with severe spondylodiscitis caused by Mycobacterium tuberculosis, Candida tropicalis, or Staphylococcus aureus were operatively treated due to failed conservative treatment. The vertebral defects were reconstructed using bioactive glass S53P4 and an expandable replacement device.
Decompression and a posterolateral spondylodesis, using transpedicular fixation, were performed posteriorly in combination with an anterior decompression and reconstruction using an expandable vertebral body replacement device. For patients 1 and 2, the expander was covered with bioactive glass S53P4 only, and for patient 3, the glass was mixed with autograft bone.
The patients healed well with complete neurological recovery. Fusion was observed for all patients. The total follow-up was 4 years for patient 1, 1 year and 8 months for patient 2, and 2 years and 2 months for patient 3. No relapses or complications were observed.
The antibacterial properties of bioactive glass S53P4 also make it a suitable bone substitute in the treatment of severe spondylodiscitis.
生物活性玻璃S53P4是一种具有骨结合和骨刺激特性的抗菌骨替代物。该骨替代物已在脊柱、创伤、骨科、耳鼻喉科及颅颌面外科手术中成功应用于临床。生物活性玻璃S53P4在体外能显著减少细菌数量,具有杀灭浮游细菌和生物膜内细菌的能力。3例因保守治疗失败而接受手术治疗的严重脊椎间盘炎患者,分别由结核分枝杆菌、热带假丝酵母菌或金黄色葡萄球菌引起。使用生物活性玻璃S53P4和一种可扩张替代装置重建椎体缺损。
后路行减压及经椎弓根固定的后外侧脊柱融合术,同时前路使用可扩张椎体替代装置进行减压和重建。对于患者1和患者2,仅在扩张器上覆盖生物活性玻璃S53P4,对于患者3,将玻璃与自体骨混合。
患者愈合良好,神经功能完全恢复。所有患者均观察到融合。患者1的总随访时间为4年,患者2为1年8个月,患者3为2年2个月。未观察到复发或并发症。
生物活性玻璃S53P4的抗菌特性使其成为治疗严重脊椎间盘炎的合适骨替代物。