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紫外线处理对具有纳米网络结构的碱处理钛表面细菌黏附及成骨活性的影响

Effect of ultraviolet treatment on bacterial attachment and osteogenic activity to alkali-treated titanium with nanonetwork structures.

作者信息

Zhang Honghao, Komasa Satoshi, Mashimo Chiho, Sekino Tohru, Okazaki Joji

机构信息

Department of Removable Prosthodontics and Occlusion, Osaka Dental University, Hirakata, Osaka, Japan.

Department of Stomatology, Nanfang Hospital and College of Stomatology, Southern Medical University, Guangzhou, Guangdong, China.

出版信息

Int J Nanomedicine. 2017 Jun 28;12:4633-4646. doi: 10.2147/IJN.S136273. eCollection 2017.

Abstract

PURPOSE

Alkali-treated titanium with nanonetwork structures (TNS) possesses good osteogenic activity; however, the resistance of this material to bacterial contamination remains inadequate. As such, TNS implants are prone to postoperative infection. In this work, we attempted to alter the biological properties of TNS by treatment with short-duration high-intensity ultraviolet (UV) irradiation.

METHODS

TNS discs were treated with UV light (wavelength =254 nm, strength =100 mW/cm) for 15 minutes using a UV-irradiation machine. We carried out a surface characterization and evaluated the discs for bacterial film formation, protein adsorption, and osteogenic features.

RESULTS

The superhydrophilicity and surface hydrocarbon elimination exhibited by the treated material (UV-treated titanium with a nanonetwork structure [UV-TNS]) revealed that this treatment effectively changed the surface characteristics of TNS. Notably, UV-TNS also showed reduced colonization by during an initial attachment period and inhibition of biofilm formation for up to 6 hours. Moreover, compared to conventional TNS, UV-TNS showed superior osteogenic activity as indicated by increased levels of adhesion, proliferation, alkaline phosphatase activity, osteogenic factor production, and osteogenesis-related gene expression by rat bone marrow mesenchymal stem cells (rBMMSCs). This inverse relationship between bacterial attachment and cell adhesion could be due to the presence of electron-hole pairs induced by high-intensity UV treatment.

CONCLUSION

We suggest that simple UV treatment has great clinical potential for TNS implants, as it promotes the osseointegration of the TNS while reducing bacterial contamination, and can be conducted chair-side immediately prior to implantation.

摘要

目的

具有纳米网络结构(TNS)的碱处理钛具有良好的成骨活性;然而,这种材料对细菌污染的抵抗力仍然不足。因此,TNS植入物容易发生术后感染。在这项工作中,我们试图通过短时间高强度紫外线(UV)照射处理来改变TNS的生物学特性。

方法

使用紫外线照射机对TNS圆盘进行15分钟的紫外线(波长=254nm,强度=100mW/cm)处理。我们进行了表面表征,并评估了圆盘的细菌膜形成、蛋白质吸附和成骨特性。

结果

处理后的材料(具有纳米网络结构的紫外线处理钛[UV-TNS])表现出的超亲水性和表面碳氢化合物消除表明,这种处理有效地改变了TNS的表面特性。值得注意的是,UV-TNS在初始附着期也显示出细菌定植减少,并且在长达6小时内抑制生物膜形成。此外,与传统TNS相比,UV-TNS表现出卓越的成骨活性,这表现为大鼠骨髓间充质干细胞(rBMMSCs)的黏附、增殖、碱性磷酸酶活性、成骨因子产生和成骨相关基因表达水平增加。细菌附着与细胞黏附之间的这种反比关系可能是由于高强度紫外线处理诱导的电子-空穴对的存在。

结论

我们认为简单的紫外线处理对TNS植入物具有巨大的临床潜力,因为它在减少细菌污染的同时促进了TNS的骨整合,并且可以在植入前立即在手术台上进行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5f2/5500560/8928f951f329/ijn-12-4633Fig1.jpg

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