Kobayashi Shuichiro, Hayashi Tatsuhide, Asakura Masaki, Hamajima Soichiro, Sato Yamato, Sasaki Keisuke, Okabe Eijiro, Kawase Mayu, Ando Masahiko, Kawai Tatsushi, Noguchi Toshihide
Department of Periodontology, Aichi Gakuin University School of Dentistry, 2-11 Suemori-Dori, Chikusa-Ku, Nagoya, 464-8651, Japan,
J Mater Sci Mater Med. 2014 Sep;25(9):2049-57. doi: 10.1007/s10856-014-5243-z. Epub 2014 Jun 4.
Polyvinylidene chloride (PVDC) is a long chain carbon synthetic polymer. The objective of this study was to improve the bioactivity of PVDC films through surface modification using argon (Ar) ion bombardment to create Ar-modified PVDC films (Ar-PVDC) to address the clinical problems of guided bone regeneration (GBR), which is technique-sensitive, and low bone regenerative ability. First, the effects of Ar ion bombardment, a low temperature plasma etching technique widely used in industry, on PVDC film wettability, surface chemistry, and morphology were confirmed. Next, fibroblast-like and osteoblast-like cell attachment and proliferation on Ar-PVDC were assessed. As a preclinical in vivo study, Ar-PVDC was used to cover a critical-sized bone defect on rat calvaria and osteoconductivity was evaluated by micro-computed tomography analysis and histological examinations. We found that the contact angle of PVDC film decreased by 50° because of the production of -OH groups on the PVDC film surface, though surface morphological was unchanged at 30 min after Ar ion bombardment. We demonstrated that cell attachment increased by about 40% and proliferation by more than 140% because of increased wettability, and 2.4 times greater bone regeneration was observed at week 3 with Ar-PVDC compared with untreated PVDC films. These results suggest that Ar ion bombardment modification of PVDC surfaces improves osteoconductivity, indicating its potential to increase bone deposition during GBR.
聚偏二氯乙烯(PVDC)是一种长链碳合成聚合物。本研究的目的是通过使用氩(Ar)离子轰击对PVDC膜进行表面改性来提高其生物活性,从而制备出Ar改性的PVDC膜(Ar-PVDC),以解决引导骨再生(GBR)技术敏感且骨再生能力低的临床问题。首先,证实了工业上广泛使用的低温等离子体蚀刻技术——Ar离子轰击对PVDC膜润湿性、表面化学和形态的影响。接下来,评估了成纤维细胞样和成骨细胞样细胞在Ar-PVDC上的附着和增殖情况。作为一项临床前体内研究,将Ar-PVDC用于覆盖大鼠颅骨上的临界尺寸骨缺损,并通过微计算机断层扫描分析和组织学检查评估骨传导性。我们发现,由于PVDC膜表面产生了-OH基团,PVDC膜的接触角降低了50°,不过在Ar离子轰击30分钟后表面形态未发生变化。我们证明,由于润湿性增加,细胞附着增加了约40%,增殖增加了超过140%,并且与未处理的PVDC膜相比,在第3周时观察到Ar-PVDC的骨再生增加了2.4倍。这些结果表明,对PVDC表面进行Ar离子轰击改性可提高骨传导性,表明其在GBR过程中增加骨沉积的潜力。