Suppr超能文献

使用化学改性 PET 管和 Bio-Cool 装置扩展富含血小板的液体纤维蛋白的工作性能。

Extending the working properties of liquid platelet-rich fibrin using chemically modified PET tubes and the Bio-Cool device.

机构信息

Department of Periodontology, School of Dental Medicine, University of Bern, Bern, Switzerland.

The Miron Research Lab, Fort Lauderdale, FL, USA.

出版信息

Clin Oral Investig. 2022 Mar;26(3):2873-2878. doi: 10.1007/s00784-021-04268-x. Epub 2021 Nov 23.

Abstract

OBJECTIVES

Platelet-rich fibrin (PRF) has been utilized in regenerative medicine as a concentration of autologous platelets and growth factors that stimulates tissue regeneration. More recently, liquid-PRF (also called injectable-PRF; i-PRF) has been brought to market utilizing PET plastic tubes. Due to new advances made in tube technology, the first aim of the present study was to investigate the liquid consistency of liquid-PRF utilizing both standard and chemically modified PET plastic tubes. Furthermore, it is well known that the conversion of PRF into a fibrin matrix is derived from the temperature-controlled enzymatic process that converts liquid fibrinogen and thrombin to solid fibrin. This study also investigated for the first time the use of a cooling device (Bio-Cool) to extend the liquid working properties of liquid-PRF.

MATERIALS AND METHODS

In total, 30 participants enrolled in this study. From each patient, four tubes of liquid-PRF were drawn, two standard white Vacuette tubes and two blue chemically modified hydrophobic tubes. Following centrifugation at 700 RCF-max for 8 min in a Bio-PRF horizontal centrifuge, one white and one blue tube were kept upright at room temperature, while the other white and blue tube were placed within the cooling device. Thereafter, the liquid-PRF layers were monitored over time until clotting occurred. Patient gender, age, and altitude above sea level (+ 5000 ft) were recorded and compared for clotting times.

RESULTS

The findings from the present study demonstrated that the chemically modified PET tubes performed 37% better than the control tubes (extended the working properties of liquid-PRF by over 20 min). Most surprisingly, tubes kept in the cooling device demonstrated an average of 90 min greater working time (270% improvement). While patients living at altitude did significantly improve the clotting ability of liquid-PRF, no differences were observed when comparing male vs female or younger vs older patients in liquid-PRF clotting times.

CONCLUSIONS

Cooling of blood following centrifugation represented a 270% improvement in working properties of liquid-PRF. Optimization of liquid-PRF tubes utilizing chemically modified hydrophobic PET tubes also delayed the clotting process by 37%. Patient gender and age had little relevance on liquid-PRF.

CLINICAL RELEVANCE

The present findings demonstrate for the first time that cooling of liquid-PRF is able to extend the working properties of liquid-PRF by over 90 min. Thus for clinicians performing longer clinical procedures, the cooling of blood may represent a viable strategy to improve the working time of liquid-PRF in clinical practice.

摘要

目的

富含血小板的纤维蛋白 (PRF) 已被用于再生医学,作为一种浓缩的自体血小板和生长因子,可刺激组织再生。最近,液体 PRF(也称为可注射 PRF;i-PRF)已利用 PET 塑料管推向市场。由于管技术的新进展,本研究的首要目标是利用标准和化学改性的 PET 塑料管来研究液体 PRF 的液体稠度。此外,众所周知,PRF 转化为纤维蛋白基质源自温度控制的酶促过程,该过程将液体纤维蛋白原和凝血酶转化为固体纤维蛋白。本研究还首次研究了使用冷却装置 (Bio-Cool) 来延长液体 PRF 的液体工作性能。

材料和方法

总共有 30 名参与者参加了这项研究。从每位患者中抽取 4 管液体 PRF,其中 2 管为标准白色 Vacuette 管,2 管为蓝色化学改性疏水管。在 Bio-PRF 水平离心机中以 700 RCF-max 的速度离心 8 分钟后,将一个白色和一个蓝色管直立放置在室温下,而另一个白色和蓝色管则放置在冷却装置中。此后,监测液体-PRF 层随时间的凝结情况。记录患者的性别、年龄和海拔高度(+5000 英尺),并比较凝结时间。

结果

本研究的结果表明,化学改性的 PET 管的性能比对照管好 37%(将液体 PRF 的工作性能延长了 20 多分钟)。最令人惊讶的是,置于冷却装置中的管的工作时间平均延长了 90 分钟(提高了 270%)。虽然生活在高海拔地区的患者确实可以提高液体 PRF 的凝结能力,但在比较男性与女性或年轻与老年患者的液体 PRF 凝结时间时,没有观察到差异。

结论

离心后血液的冷却使液体 PRF 的工作性能提高了 270%。利用化学改性疏水性 PET 管优化液体 PRF 管也使凝结过程延迟了 37%。患者的性别和年龄对液体 PRF 的影响很小。

临床相关性

本研究首次证明,冷却液体-PRF 可将液体-PRF 的工作性能延长 90 分钟以上。因此,对于进行较长临床手术的临床医生来说,血液冷却可能是一种可行的策略,可以提高液体 PRF 在临床实践中的工作时间。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验