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体外评估 Fe-20Mn 作为一种潜在的可吸收性颅颌面外科材料的神经相容性。

In Vitro Assessment of the Neuro-Compatibility of Fe-20Mn as a Potential Bioresorbable Material for Craniofacial Surgery.

机构信息

UCL Great Ormond Street Institute of Child Health, London WC1N 1EH, UK.

Erasmus Medical College, Erasmus University Rotterdam, 3015 CN Rotterdam, The Netherlands.

出版信息

Medicina (Kaunas). 2024 Mar 7;60(3):440. doi: 10.3390/medicina60030440.

Abstract

Spring-assisted surgery is a popular option for the treatment of non-syndromic craniosynostosis. The main drawback of this procedure is the need for a second surgery for spring removal, which could be avoided if a distractor material could be metabolised over time. Iron-Manganese alloys (FeMn) have a good trade-off between degradation rate and strength; however, their biocompatibility is still debated. In this study, the neuro-compatibility of Fe-20Mn (wt.%) was assessed using standard assays. PC-12 cells were exposed to Fe-20Mn (wt.%) and stainless steel via indirect contact. To examine the cytotoxicity, a Cell Tox Green assay was carried out after 1, 2, and 3 days of incubation. Following differentiation, a neurite morphological examination after 1 and 7 days of incubation time was carried out. The degradation response in modified Hank's solution at 1, 3, and 7 days was investigated, too. The cytotoxicity assay showed a higher toxicity of Fe-20Mn than stainless steel at earlier time points; however, at the latest time point, no differences were found. Neurite morphology was similar for cells exposed to Fe-20Mn and stainless steel. In conclusion, the Fe-20Mn alloy shows promising neuro-compatibility. Future studies will focus on in vivo studies to confirm the cellular response to Fe-20Mn.

摘要

春动辅助手术是治疗非综合征性颅缝早闭的一种常用方法。该手术的主要缺点是需要进行第二次手术以取出春动器,如果能有一种可随时间代谢的牵张器材料,则可以避免这种情况。铁-锰合金(FeMn)在降解率和强度之间具有很好的折衷;然而,其生物相容性仍存在争议。在这项研究中,使用标准测定法评估了 Fe-20Mn(wt.%)的神经相容性。PC-12 细胞通过间接接触暴露于 Fe-20Mn(wt.%)和不锈钢。为了检测细胞毒性,在孵育 1、2 和 3 天后进行了 Cell Tox Green 测定。分化后,在孵育 1 和 7 天后进行了神经突形态学检查。还研究了在改良 Hank's 溶液中在 1、3 和 7 天的降解反应。细胞毒性测定表明,在早期时间点,Fe-20Mn 的毒性高于不锈钢;然而,在最晚的时间点,没有发现差异。暴露于 Fe-20Mn 和不锈钢的细胞的神经突形态相似。总之,Fe-20Mn 合金显示出有希望的神经相容性。未来的研究将集中在体内研究上,以确认细胞对 Fe-20Mn 的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5684/10972363/f770959bb255/medicina-60-00440-g001.jpg

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