Advanced PRF Education, Jupiter, Florida, USA.
Department of Periodontology, University of Bern, Bern, Switzerland.
Periodontol 2000. 2024 Feb;94(1):114-130. doi: 10.1111/prd.12537. Epub 2023 Nov 20.
Platelet-rich fibrin (PRF) has been characterized as a regenerative biomaterial that is fully resorbed within a typical 2-3 week period. Very recently, however, a novel heating process was shown to extend the working properties of PRP/PRF from a standard 2-3 week period toward a duration of 4-6 months. Numerous clinicians have now utilized this extended-PRF (e-PRF) membrane as a substitute for collagen barrier membranes in various clinical applications, such as guided tissue/bone regeneration. This review article summarizes the scientific work to date on this novel technology, including its current and future applications in periodontology, implant dentistry, orthopedics and facial aesthetics. A systematic review was conducted investigating key terms including "Bio-Heat," "albumin gel," "albumin-PRF," "Alb-PRF," "extended-PRF," "e-PRF," "activated plasma albumin gel," and "APAG" by searching databases such as MEDLINE, EMBASE and PubMed. Findings from preclinical studies demonstrate that following a simple 10-min heating process, the transformation of the liquid plasma albumin layer into a gel-like injectable albumin gel extends the resorption properties to at least 4 months according to ISO standard 10 993 (subcutaneous animal model). Several clinical studies have now demonstrated the use of e-PRF membranes as a replacement for collagen membranes in GTR/GBR procedures, closing lateral windows in sinus grafting procedures, for extraction site management, and as a stable biological membrane during recession coverage procedures. Furthermore, Alb-PRF may also be injected as a regenerative biological filler that lasts extended periods with advantages in joint injections, osteoarthritis and in the field of facial aesthetics. This article highlights the marked improvement in the stability and degradation properties of the novel Alb-PRF/e-PRF technology with its widespread future potential use as a potential replacement for collagen membranes with indications including extraction site management, GBR procedures, lateral sinus window closure, recession coverage among others, and further highlights its use as a biological regenerative filler for joint injections and facial aesthetics. It is hoped that this review will pioneer future opportunities and research development in the field, leading to further progression toward more natural and less costly biomaterials for use in medicine and dentistry.
富血小板纤维蛋白(PRF)已被确定为一种再生生物材料,可在典型的 2-3 周内完全吸收。然而,最近一项新的加热工艺显示可将 PRP/PRF 的工作特性从标准的 2-3 周延长至 4-6 个月。许多临床医生现在将这种延长 PRF(e-PRF)膜用作各种临床应用中胶原屏障膜的替代品,例如引导组织/骨再生。本文综述了该新技术的现有科学工作,包括其在牙周病学、种植牙科、骨科和面部美学中的当前和未来应用。通过在 MEDLINE、EMBASE 和 PubMed 等数据库中搜索包括“Bio-Heat”、“albumin gel”、“albumin-PRF”、“Alb-PRF”、“extended-PRF”、“e-PRF”、“activated plasma albumin gel”和“APAG”等关键词,进行了系统综述。临床前研究结果表明,经过简单的 10 分钟加热过程,将液体血浆白蛋白层转化为凝胶状可注射白蛋白凝胶,可根据 ISO 10993 标准(皮下动物模型)将吸收特性延长至至少 4 个月。现在有几项临床研究已经证明,e-PRF 膜可作为 GTR/GBR 手术中胶原膜的替代品,在窦腔提升手术中关闭侧窗,用于拔牙窝管理,以及在退缩覆盖手术中作为稳定的生物膜。此外,Alb-PRF 也可作为再生生物填充剂注射,持续时间延长,在关节注射、骨关节炎和面部美学领域具有优势。本文重点介绍了新型 Alb-PRF/e-PRF 技术的稳定性和降解特性的显著改善,及其作为胶原膜的潜在替代品的广泛未来应用潜力,包括拔牙窝管理、GBR 手术、侧窦窗口关闭、退缩覆盖等,进一步强调了其作为关节注射和面部美学的生物再生填充剂的用途。希望本文的综述将为该领域的未来机遇和研究发展开辟先河,进一步推动更自然、成本更低的生物材料在医学和牙科中的应用。