Graduate Institute of Biomedical Engineering, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.
Adjunct Appointment to the Department of Biomedical Engineering, National Defense Medical Center, Taipei 11490, Taiwan.
Int J Mol Sci. 2023 Aug 9;24(16):12608. doi: 10.3390/ijms241612608.
In recent years, several types of platelet concentrates have been investigated and applied in many fields, particularly in the musculoskeletal system. Platelet-rich fibrin (PRF) is an autologous biomaterial, a second-generation platelet concentrate containing platelets and growth factors in the form of fibrin membranes prepared from the blood of patients without additives. During tissue regeneration, platelet concentrates contain a higher percentage of leukocytes and a flexible fibrin net as a scaffold to improve cell migration in angiogenic, osteogenic, and antibacterial capacities during tissue regeneration. PRF enables the release of molecules over a longer period, which promotes tissue healing and regeneration. The potential of PRF to simulate the physiology and immunology of wound healing is also due to the high concentrations of released growth factors and anti-inflammatory cytokines that stimulate vessel formation, cell proliferation, and differentiation. These products have been used safely in clinical applications because of their autologous origin and minimally invasive nature. We focused on a narrative review of PRF therapy and its effects on musculoskeletal, oral, and maxillofacial surgeries and dermatology. We explored the components leading to the biological activity and the published preclinical and clinical research that supports its application in musculoskeletal therapy. The research generally supports the use of PRF as an adjuvant for various chronic muscle, cartilage, and tendon injuries. Further clinical trials are needed to prove the benefits of utilizing the potential of PRF.
近年来,已经有几种类型的血小板浓缩物被研究并应用于许多领域,特别是在肌肉骨骼系统中。富血小板纤维蛋白(PRF)是一种自体生物材料,是第二代血小板浓缩物,由患者的血液制备而成,不含添加剂,呈纤维蛋白膜状,其中含有血小板和生长因子。在组织再生过程中,血小板浓缩物含有更高比例的白细胞和灵活的纤维蛋白网络作为支架,以提高血管生成、成骨和抗菌能力,促进细胞迁移。PRF 能够更长时间地释放分子,从而促进组织愈合和再生。PRF 能够模拟伤口愈合的生理学和免疫学特性,这也是由于其释放的生长因子和抗炎细胞因子浓度较高,这些因子刺激血管形成、细胞增殖和分化。由于其自体来源和微创性质,这些产品已安全地应用于临床。我们重点对 PRF 治疗及其对肌肉骨骼、口腔和颌面外科以及皮肤科的影响进行了叙述性综述。我们探讨了导致其具有生物学活性的成分,以及支持其在肌肉骨骼治疗中应用的已发表的临床前和临床研究。研究普遍支持将 PRF 用作各种慢性肌肉、软骨和肌腱损伤的辅助治疗手段。需要进一步的临床试验来证明利用 PRF 潜力的益处。