Department of Dental Clinical Specialties, Faculty of Dentistry, Complutense University of Madrid, 28040 Madrid, Spain.
Department of Nursery and Stomatology, Rey Juan Carlos University, 28922 Madrid, Spain.
Medicina (Kaunas). 2023 Oct 27;59(11):1903. doi: 10.3390/medicina59111903.
Platelet-rich fibrin (PRF) is a second-generation platelet concentrate whose use in clinical practice has been widely disseminated. This has led to the development of several commercial protocols, creating great confusion as to the terminology and implications of each of them. This integrative review aims to identify the critical factors of each of the phases of the solid-based PRF matrix protocol and their possible influence on their macro- and microscopic characteristics. An electronic search of the MEDLINE database (via PubMed), Web of Science, Scopus, LILACS, and OpenGrey was carried out. The search was temporarily restricted from 2001 to 2022. After searching, 43 studies were included that met the established criteria. There were numerous factors to consider in the PRF protocol, such as the material of the blood collection tubes, the duration of phlebotomy, the parameters related to blood centrifugation, the time from centrifugation to dehydration of the fibrin clots and their dehydration into membranes, as well as the time to clinical use. These factors influenced the macro- and microscopic characteristics of the PRF and its physical properties, so knowledge of these factors allows for the production of optimised PRF by combining the protocols and materials.
富血小板纤维蛋白(PRF)是第二代血小板浓缩物,其在临床实践中的应用已得到广泛传播。这导致了几种商业方案的发展,使得每个方案的术语和含义都非常混乱。本综述旨在确定固体基础 PRF 基质方案各阶段的关键因素及其对其宏观和微观特征的可能影响。通过 MEDLINE 数据库(通过 PubMed)、Web of Science、Scopus、LILACS 和 OpenGrey 进行了电子搜索。搜索暂时限制在 2001 年至 2022 年。搜索后,符合既定标准的有 43 项研究。PRF 方案中有许多因素需要考虑,例如血液采集管的材料、采血时间、与血液离心相关的参数、从离心到纤维蛋白凝块脱水以及将其脱水成膜的时间,以及临床使用的时间。这些因素影响 PRF 的宏观和微观特征及其物理性质,因此了解这些因素可以通过结合方案和材料来生产优化的 PRF。