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新型纳米结构铁锰基可生物降解合金的生物相容性、抗菌和抗癌作用的体外研究评估

Evaluation of the biocompatibility, antibacterial and anticancer effects of a novel nano-structured Fe-Mn-based biodegradable alloys in-vitro study.

作者信息

Elborolosy Samir Ali, Hussein Lamis Ahmed, Mahran Hamada, Ammar Hany R, Sivasankaran S, Abd El-Ghani Safa Fathy, Abdelfattah Mohamed Yehia, Abou-Zeid Ahmed Wael, Ibrahim Shereen Hafez, Elshamaa Mohamed Mostafa

机构信息

Oral and Maxillofacial Surgery Department, Faculty of Dentistry, Beni-Suef University, Beni-Suef, Egypt.

Dental Biomaterials, Department of Removable Prosthetics, Faculty of Dentistry, Misr International University, Cairo, Egypt.

出版信息

Heliyon. 2023 Oct 14;9(11):e20932. doi: 10.1016/j.heliyon.2023.e20932. eCollection 2023 Nov.

Abstract

SCIENTIFIC BACKGROUNDS

Development of nanostructured biodegradable alloys has generated a great deal of interest in the recent years as they offer promising bioactive materials for reconstruction of bony defects following traumatic fractures or surgical excision of tumors.

OBJECTIVES

The aim of the current study was to investigate the biocompatibility of Iron-Manganese -based alloys (Fe-Mn) with addition of copper (Cu), Tungsten (W) and cobalt (Co) to obtain 3 different alloys namely, Fe-Mn-Cu, Fe-Mn-W, and Fe-Mn-Co on normal oral epithelial cell line,and their possible anticancer effect on MG-63: osteosarcoma cell line.

MATERIALS AND METHODS

The sulforhodamine B (SRB) assay was used to assess cell viability percentage of both cell lines after exposure to discs of the proposed experimental alloys. Moreover, the antibacterial effect of such alloys against was tested using disc diffusion susceptibility (Kirby-Bauer method) and colony suspension method.

RESULTS

The cell viability percentage of oral epithelial cell line showed a significant increase in all the experimental groups in comparison to the control group. The highest percentage was observed in Fe-Mn-Co group, followed by Fe-Mn-W then Fe-Mn-Cu, at 24 and 72-h intervals, respectively. While the cell viability percentage of osteosarcoma cell line showed significant increase in all the experimental groups at 24-h intervals, it showed a significant drop in all the study groups at 72-h intervals. The lowest percentage was observed in Fe-Mn-Cu group, followed by Fe-Mn-W then Fe-Mn-Co. Moreover, all the examined study groups didn't show any inhibition zones against reference culture.

CONCLUSIONS

The novel nanostructured biodegradable Fe-Mn-Cu, Fe-Mn-W, and Fe-Mn-Co metal alloys exhibit good biocompatibility on oral epithelial cell lines with the enhancement of cell proliferation in a time-dependent manner that favors bone regeneration. On the other hand, all the alloys manifested possible anticancer activity against MG-63: osteosarcoma cell line. Furthermore, our study sheds the light on the importance of Co, W and Cu as promising alloying elements. However, the antibacterial activity of the examined alloys is still questionable.

CLINICAL RELEVANCE

The novel nanostructured biodegradable Fe-Mn-Cu, Fe-Mn-W, and Fe-Mn-Co metal alloys offer promising bioactive materials for reconstruction of bony defects following traumatic fractures or surgical excision of tumors, In addition, they could be excellent alternatives for undegradable or non-resorbable alloys that are commonly used. Moreover, they could be used as beneficial 3D printing materials to obtain patient-specific medical implants that favor bone regeneration in addition to manufacturing of plates and screws suitable for fracture fixation.

摘要

科学背景

近年来,纳米结构可生物降解合金的发展引起了广泛关注,因为它们为创伤性骨折或肿瘤手术切除后骨缺损的修复提供了有前景的生物活性材料。

目的

本研究旨在研究添加铜(Cu)、钨(W)和钴(Co)的铁 - 锰基合金(Fe - Mn)的生物相容性,以获得三种不同的合金,即Fe - Mn - Cu、Fe - Mn - W和Fe - Mn - Co,研究它们对正常口腔上皮细胞系的影响,以及它们对MG - 63骨肉瘤细胞系可能的抗癌作用。

材料与方法

采用磺酰罗丹明B(SRB)法评估两种细胞系在接触所提议的实验合金圆盘后的细胞活力百分比。此外,使用纸片扩散药敏试验(Kirby - Bauer法)和菌落悬液法测试此类合金对[此处原文缺失具体测试对象]的抗菌效果。

结果

与对照组相比,口腔上皮细胞系的细胞活力百分比在所有实验组中均显著增加。在24小时和72小时时,Fe - Mn - Co组的百分比最高,其次是Fe - Mn - W组,然后是Fe - Mn - Cu组。而骨肉瘤细胞系的细胞活力百分比在24小时时在所有实验组中均显著增加,但在72小时时在所有研究组中均显著下降。Fe - Mn - Cu组的百分比最低,其次是Fe - Mn - W组,然后是Fe - Mn - Co组。此外,所有检测的研究组对[此处原文缺失具体参照培养物]均未显示出任何抑菌圈。

结论

新型纳米结构可生物降解的Fe - Mn - Cu、Fe - Mn - W和Fe - Mn - Co金属合金对口腔上皮细胞系表现出良好的生物相容性,以时间依赖性方式促进细胞增殖,有利于骨再生。另一方面,所有合金对MG - 63骨肉瘤细胞系均表现出可能的抗癌活性。此外,我们的研究揭示了Co、W和Cu作为有前景的合金元素的重要性。然而,所检测合金的抗菌活性仍存在疑问。

临床意义

新型纳米结构可生物降解的Fe - Mn - Cu、Fe - Mn - W和Fe - Mn - Co金属合金为创伤性骨折或肿瘤手术切除后骨缺损的修复提供了有前景的生物活性材料。此外,它们可能是常用的不可降解或不可吸收合金的优秀替代品。而且,它们可以用作有益的3D打印材料,以获得有利于骨再生的个性化医疗植入物,此外还可制造适用于骨折固定的钢板和螺钉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7be6/10598492/7b4d8f4723a2/gr1.jpg

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