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纤维蛋白联合光生物调节作为改善组织工程再生的一种有前景策略的应用:一项系统综述

Application of Fibrin Associated with Photobiomodulation as a Promising Strategy to Improve Regeneration in Tissue Engineering: A Systematic Review.

作者信息

Reis Carlos Henrique Bertoni, Buchaim Daniela Vieira, Ortiz Adriana de Cássia, Fideles Simone Ortiz Moura, Dias Jefferson Aparecido, Miglino Maria Angelica, Teixeira Daniel de Bortoli, Pereira Eliana de Souza Bastos Mazuqueli, da Cunha Marcelo Rodrigues, Buchaim Rogerio Leone

机构信息

UNIMAR Beneficent Hospital (HBU), University of Marilia (UNIMAR), Marilia 17525-160, Brazil.

Department of Biological Sciences, Bauru School of Dentistry (FOB/USP), University of São Paulo, Bauru 17012-901, Brazil.

出版信息

Polymers (Basel). 2022 Aug 2;14(15):3150. doi: 10.3390/polym14153150.

Abstract

Fibrin, derived from proteins involved in blood clotting (fibrinogen and thrombin), is a biopolymer with different applications in the health area since it has hemostasis, biocompatible and three-dimensional physical structure properties, and can be used as scaffolds in tissue regeneration or drug delivery system for cells and/or growth factors. Fibrin alone or together with other biomaterials, has been indicated for use as a biological support to promote the regeneration of stem cells, bone, peripheral nerves, and other injured tissues. In its diversity of forms of application and constitution, there are platelet-rich fibrin (PRF), Leukocyte- and platelet-rich fibrin (L-PRF), fibrin glue or fibrin sealant, and hydrogels. In order to increase fibrin properties, adjuvant therapies can be combined to favor tissue repair, such as photobiomodulation (PBM), by low-level laser therapy (LLLT) or LEDs (Light Emitting Diode). Therefore, this systematic review aimed to evaluate the relationship between PBM and the use of fibrin compounds, referring to the results of previous studies published in PubMed/MEDLINE, Scopus and Web of Science databases. The descriptors "fibrin AND low-level laser therapy" and "fibrin AND photobiomodulation" were used, without restriction on publication time. The bibliographic search found 44 articles in PubMed/MEDLINE, of which 26 were excluded due to duplicity or being outside the eligibility criteria. We also found 40 articles in Web of Science and selected 1 article, 152 articles in Scopus and no article selected, totaling 19 articles for qualitative analysis. The fibrin type most used in combination with PBM was fibrin sealant, mainly heterologous, followed by PRF or L-PRF. In PBM, the gallium-aluminum-arsenide (GaAlAs) laser prevailed, with a wavelength of 830 nm, followed by 810 nm. Among the preclinical studies, the most researched association of fibrin and PBM was the use of fibrin sealants in bone or nerve injuries; in clinical studies, the association of PBM with medication-related treatments osteonecrosis of the jaw (MRONJ). Therefore, there is scientific evidence of the contribution of PBM on fibrin composites, constituting a supporting therapy that acts by stimulating cell activity, angiogenesis, osteoblast activation, axonal growth, anti-inflammatory and anti-edema action, increased collagen synthesis and its maturation, as well as biomolecules.

摘要

纤维蛋白由参与血液凝固的蛋白质(纤维蛋白原和凝血酶)衍生而来,是一种生物聚合物,在健康领域有不同应用,因为它具有止血、生物相容性和三维物理结构特性,可用于组织再生的支架或细胞和/或生长因子的药物递送系统。单独的纤维蛋白或与其他生物材料一起,已被表明可作为生物支持物来促进干细胞、骨骼、外周神经和其他受损组织的再生。在其多样的应用形式和组成中,有富血小板纤维蛋白(PRF)、富白细胞和血小板纤维蛋白(L-PRF)、纤维蛋白胶或纤维蛋白密封剂以及水凝胶。为了增强纤维蛋白的特性,可以联合辅助治疗来促进组织修复,如通过低强度激光疗法(LLLT)或发光二极管(LED)进行的光生物调节(PBM)。因此,本系统评价旨在评估PBM与纤维蛋白化合物使用之间的关系,参考先前发表在PubMed/MEDLINE、Scopus和科学网数据库中的研究结果。使用了描述词“纤维蛋白与低强度激光疗法”和“纤维蛋白与光生物调节”,对发表时间无限制。文献检索在PubMed/MEDLINE中找到44篇文章,其中26篇因重复或不符合纳入标准而被排除。我们在科学网中还找到40篇文章并选择了1篇,在Scopus中找到152篇文章且未选择任何文章,总共19篇文章进行定性分析。与PBM联合使用最多的纤维蛋白类型是纤维蛋白密封剂,主要是异源的,其次是PRF或L-PRF。在PBM中,波长为830nm的砷化镓铝(GaAlAs)激光占主导,其次是810nm。在临床前研究中,纤维蛋白与PBM研究最多的联合应用是在骨骼或神经损伤中使用纤维蛋白密封剂;在临床研究中,是PBM与药物相关治疗颌骨坏死(MRONJ)的联合应用。因此,有科学证据表明PBM对纤维蛋白复合材料有贡献,构成一种通过刺激细胞活性、血管生成、成骨细胞活化、轴突生长、抗炎和抗水肿作用、增加胶原蛋白合成及其成熟以及生物分子而起作用的支持性治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ae9/9370794/a5a4a933fbb2/polymers-14-03150-g001.jpg

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