Literature DB >> 31321574

Comparison of platelet-rich fibrin (PRF) produced using 3 commercially available centrifuges at both high (~ 700 g) and low (~ 200 g) relative centrifugation forces.

Richard J Miron1,2, Hudi Xu3, Jihua Chai3, Jiaolong Wang3, Shihang Zheng3, Mengge Feng3, Xiaoxin Zhang3, Yan Wei3, Yan Chen3, Carlos Fernando de Almeida Barros Mourão4, Anton Sculean5, Yufeng Zhang6,7.   

Abstract

OBJECTIVES: Platelet-rich fibrin (PRF) has gained tremendous momentum in recent years as a natural autologous growth factor derived from blood capable of stimulating tissue regeneration. Owing to its widespread use, many companies have commercialized various centrifugation devices with various proposed protocols. The aim of the present study was to compare 3 different commercially available centrifuges at both high and low g-force protocols.
MATERIALS AND METHODS: PRF was produced on three commercially available centrifuges including the IntraSpin Device (IntraLock), the Duo Quattro (Process for PRF), and Salvin (Salvin Dental). Two separate protocols were tested on each machine including the original leukocyte and platelet-rich fibrin (L-PRF) protocol (~ 700 RCF max (~ 400 RCF clot) for 12 min) as well as the advanced platelet-rich fibrin (A-PRF+) protocol (~ 200 g RCF max (~ 130 g RCF clot) for 8 min). Each of the tested groups was compared for cell numbers, growth factor release, scanning electron microscopy (SEM) for morphological differences, and clot size (both weight and length/width).
RESULTS: The present study found that PRF clots produced utilizing the low-speed centrifugation speeds (~ 200 g for 8 min) produce clots that (1) contained a higher concentration of evenly distributed platelets, (2) secreted higher concentrations of growth factors over a 10 day period, and (3) were smaller in size. This was irrespective of the centrifugation device utilized and consistently observed on all 3 devices. The greatest impact was found between the protocols utilized (up to a 200%). Interestingly, it was further revealed that the centrifugation tubes used had a much greater impact on the final size outcome of PRF clots when compared to centrifugation devices. It was found that, in general, the Process for PRF tubes produced significantly greater-sized clots when compared to other commercially available tubes. The Salvin Dental tubes also produced significantly greater PRF clots when compared to the IntraLock tubes on each of the tested centrifugation devices.
CONCLUSIONS: The present study demonstrated the reproducibility of a scientific concept (reduction in RCF produces PRF clots with more evenly distributed cells and growth factors) utilizing different devices. Furthermore, (and until now overlooked), it was revealed for the first time that the centrifugation tubes are central to the quality production of PRF. Future research investigating tube characteristics thus becomes critically important for the future optimization of PRF. CLINICAL RELEVANCE: This is the first study to reveal the marked impact of centrifugation tubes on the final production of PRF. Future study thus becomes markedly important to further optimize the quality of PRF-based matrices. It was further found that little variability existed between the centrifugation devices if optimized centrifugation protocols (lower centrifugation speeds) were utilized.

Keywords:  Blood platelets; Centrifugation; Fibrin; Platelet-rich fibrin; Wound healing

Year:  2019        PMID: 31321574     DOI: 10.1007/s00784-019-02981-2

Source DB:  PubMed          Journal:  Clin Oral Investig        ISSN: 1432-6981            Impact factor:   3.573


  18 in total

1.  Clinical and radiographic evaluation of low-speed platelet-rich fibrin (PRF) for the treatment of intra-osseous defects of stage-III periodontitis patients: a randomized controlled clinical trial.

Authors:  Yasser Ali Abdulrahman; Manal Mohamed Hosny; Ahmed Elfana; Karim Mohamed Fawzy El-Sayed
Journal:  Clin Oral Investig       Date:  2022-07-25       Impact factor: 3.606

2.  The effect of resting and compression time post-centrifugation on the characteristics of platelet rich fibrin (PRF) membranes.

Authors:  Yan Wei; Yihong Cheng; Yulan Wang; Xiaoxin Zhang; Richard J Miron; Yufeng Zhang
Journal:  Clin Oral Investig       Date:  2022-04-22       Impact factor: 3.606

3.  Rejuvenating the periorbital area using platelet-rich plasma: a systematic review and meta-analysis.

Authors:  Adam G Evans; Mirjana G Ivanic; Mina A Botros; Rand W Pope; Briana R Halle; Gabriella E Glassman; Rafaella Genova; Salam Al Kassis
Journal:  Arch Dermatol Res       Date:  2021-01-12       Impact factor: 3.017

4.  Impact of g force and timing on the characteristics of platelet-rich fibrin matrices.

Authors:  Ana B Castro; C Andrade; X Li; N Pinto; W Teughels; M Quirynen
Journal:  Sci Rep       Date:  2021-03-16       Impact factor: 4.379

5.  Autologous platelet-rich fibrin stimulates canine periodontal regeneration.

Authors:  Chatvadee Kornsuthisopon; Nopadon Pirarat; Thanaphum Osathanon; Chanin Kalpravidh
Journal:  Sci Rep       Date:  2020-02-05       Impact factor: 4.379

6.  Effect of platelet-rich fibrin on cell proliferation, migration, differentiation, inflammation, and osteoclastogenesis: a systematic review of in vitro studies.

Authors:  Franz-Josef Strauss; Jila Nasirzade; Zahra Kargarpoor; Alexandra Stähli; Reinhard Gruber
Journal:  Clin Oral Investig       Date:  2019-12-26       Impact factor: 3.606

7.  Liquid Platelet-Rich Fibrin and Heat-Coagulated Albumin Gel: Bioassays for TGF-β Activity.

Authors:  Zahra Kargarpour; Jila Nasirzade; Layla Panahipour; Richard J Miron; Reinhard Gruber
Journal:  Materials (Basel)       Date:  2020-08-06       Impact factor: 3.748

8.  Efficacy and safety of plasma gel versus platelet-rich plasma in periorbital rejuvenation: a comparative split-face clinical and Antera 3D camera study.

Authors:  Heba M Diab; Rania Elhosseiny; Nermeen Ibrahim Bedair; Ahmad Hamid Khorkhed
Journal:  Arch Dermatol Res       Date:  2021-07-06       Impact factor: 3.033

9.  Antibacterial effects of platelet-rich fibrin produced by horizontal centrifugation.

Authors:  Mengge Feng; Yulan Wang; Peng Zhang; Qin Zhao; Shimin Yu; Kailun Shen; Richard J Miron; Yufeng Zhang
Journal:  Int J Oral Sci       Date:  2020-11-26       Impact factor: 6.344

10.  Relative Centrifugal Force (RCF; G-Force) Affects the Distribution of TGF-β in PRF Membranes Produced Using Horizontal Centrifugation.

Authors:  Zahra Kargarpour; Jila Nasirzade; Layla Panahipour; Richard J Miron; Reinhard Gruber
Journal:  Int J Mol Sci       Date:  2020-10-15       Impact factor: 6.208

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