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自体牙周膜来源细胞片用于牙周再生——10例患者的安全性和有效性研究

Periodontal regeneration with autologous periodontal ligament-derived cell sheets - A safety and efficacy study in ten patients.

作者信息

Iwata Takanori, Yamato Masayuki, Washio Kaoru, Yoshida Toshiyuki, Tsumanuma Yuka, Yamada Azusa, Onizuka Satoru, Izumi Yuichi, Ando Tomohiro, Okano Teruo, Ishikawa Isao

机构信息

Institute of Advanced Biomedical Engineering and Science, Tokyo Women's Medical University, 8-1 Kawada-cho, Shinjuku-ku, Tokyo 162-8666, Japan.

Department of Oral and Maxillofacial Surgery, Tokyo Women's Medical University, 8-1 Kawada-cho, Shinjuku-ku, Tokyo 162-8666, Japan.

出版信息

Regen Ther. 2018 Aug 24;9:38-44. doi: 10.1016/j.reth.2018.07.002. eCollection 2018 Dec.

Abstract

BACKGROUND

Periodontitis results in the destruction of tooth-supporting periodontal tissues and does not have the ability to heal spontaneously. Various approaches have been introduced to regenerate periodontal tissues; however, these approaches have limited efficacy for treating severe defects. Cytotherapies combine stem cell biology and tissue engineering to form a promising approach for overcoming these limitations. In this study, we isolated periodontal ligament (PDL)-derived cells from patients and created cell sheets with "Cell Sheet Engineering Technology", using temperature responsive culture dishes, in which all the cultured cells can be harvested as an intact transplantable cell sheet by reducing the temperature of the culture dish. Subsequently, the safety and efficacy of autologous PDL-derived cell sheets were evaluated in a clinical setting.

METHODS

A single-arm and single-institute clinical study was performed to verify the safety and efficacy of autologous PDL-derived cell sheets in patients with periodontitis. Wisdom teeth were extracted from patients diagnosed with chronic periodontitis, ranging in age from 33 to 63 years (mean [±SD], 46 ± 12), and periodontal tissues were scraped for cell sources. Three-layered PDL-derived cell sheets were constructed using temperature-responsive culture dishes and transplanted in an autologous fashion following standard flap surgeries. Bony defects were filled with beta-tricalcium phosphate granules. Clinical variables were evaluated at baseline, 3 months, and 6 months. Cone-beam computed tomography was performed at baseline and 6 months. Additionally, mid-long-term follow-up has been performed with patients' agreements.

RESULTS

Our method was found to be safe and no severe adverse events were identified. All the findings, including reduction of periodontal probing depth (mean ± SD, 3.2 ± 1.9 mm), clinical attachment gain (2.5 ± 2.6 mm), and increase of radiographic bone height (2.3 ± 1.8 mm), were improved in all 10 cases at 6 months after the transplantation. These therapeutic effects were sustained during a mean follow-up period of 55 ± 19 months, and there were no serious adverse events.

CONCLUSIONS

The results of this study validate the safety and efficacy of autologous PDL-derived cell sheets in severe periodontal defects, and the stability of this efficacy during mid-long-term follow up. This cytotherapeutic approach, based on cell sheet engineering, offers an innovative strategy to treat the recognized unmet need of treating severe periodontal defects.

摘要

背景

牙周炎会导致支持牙齿的牙周组织遭到破坏,且无法自行愈合。人们已引入多种方法来促进牙周组织再生;然而,这些方法在治疗严重缺损方面疗效有限。细胞疗法将干细胞生物学与组织工程相结合,为克服这些局限性提供了一种有前景的方法。在本研究中,我们从患者体内分离出牙周膜(PDL)来源的细胞,并使用温度响应培养皿通过“细胞片工程技术”制作细胞片,在这种培养皿中,降低培养皿温度后,所有培养的细胞都能作为完整的可移植细胞片收获。随后,在临床环境中评估自体PDL来源细胞片的安全性和有效性。

方法

进行了一项单臂单机构临床研究,以验证自体PDL来源细胞片在牙周炎患者中的安全性和有效性。从年龄在33至63岁(平均[±标准差],46±12)被诊断为慢性牙周炎的患者中拔除智齿,并刮取牙周组织作为细胞来源。使用温度响应培养皿构建三层PDL来源细胞片,并在标准翻瓣手术后以自体方式进行移植。骨缺损用β-磷酸三钙颗粒填充。在基线、3个月和6个月时评估临床变量。在基线和6个月时进行锥形束计算机断层扫描。此外,在患者同意的情况下进行了中长期随访。

结果

我们的方法被证明是安全的,未发现严重不良事件。在移植后6个月时,所有10例患者的所有指标均有改善,包括牙周探诊深度降低(平均±标准差,3.2±1.9毫米)、临床附着获得(2.5±2.6毫米)以及影像学骨高度增加(2.3±1.8毫米)。这些治疗效果在平均55±19个月的随访期内持续存在,且未出现严重不良事件。

结论

本研究结果证实了自体PDL来源细胞片在严重牙周缺损中的安全性和有效性,以及这种有效性在中长期随访期间的稳定性。这种基于细胞片工程的细胞治疗方法为满足治疗严重牙周缺损这一公认的未满足需求提供了一种创新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7f2/6222282/3b7d03cad7bf/gr1.jpg

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