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纳米结构碳酸羟基磷灰石与变性白蛋白和富血小板纤维蛋白的关联:对生长因子释放和成骨细胞行为的影响。

The Association of Nanostructured Carbonated Hydroxyapatite with Denatured Albumin and Platelet-Rich Fibrin: Impacts on Growth Factors Release and Osteoblast Behavior.

作者信息

de Lima Barbosa Renata, Rodrigues Santiago Rocha Neilane, Stellet Lourenço Emanuelle, de Souza Lima Victor Hugo, Mavropoulos Elena, Mello-Machado Rafael Coutinho, Spiegel Carolina, Mourão Carlos Fernando, Alves Gutemberg Gomes

机构信息

Graduate Program in Science and Biotechnology, Fluminense Federal University, Niteroi 24210-201, Brazil.

Clinical Research Unit, Antonio Pedro Hospital, Fluminense Federal University, Niteroi 24033-900, Brazil.

出版信息

J Funct Biomater. 2024 Jan 5;15(1):18. doi: 10.3390/jfb15010018.

Abstract

Platelet-rich Fibrin (PRF), a second-generation blood concentrate, offers a versatile structure for bone regeneration due to its composition of fibrin, growth factors, and cytokines, with adaptations like denatured albumin-enriched with liquid PRF (Alb-PRF), showing potential for enhanced stability and growth factor dynamics. Researchers have also explored the combination of PRF with other biomaterials, aiming to create a three-dimensional framework for enhanced cell recruitment, proliferation, and differentiation in bone repair studies. This study aimed to evaluate a combination of Alb-PRF with nanostructured carbonated hydroxyapatite microspheres (Alb-ncHA-PRF), and how this association affects the release capacity of growth factors and immunomodulatory molecules, and its impact on the behavior of MG63 human osteoblast-like cells. Alb-PRF membranes were prepared and associated with nanocarboapatite (ncHA) microspheres during polymerization. MG63 cells were exposed to eluates of both membranes to assess cell viability, proliferation, mineralization, and alkaline phosphatase (ALP) activity. The ultrastructural analysis has shown that the spheres were shattered, and fragments were incorporated into both the fibrin mesh and the albumin gel of Alb-PRF. Alb-ncHA-PRF presented a reduced release of growth factors and cytokines when compared to Alb-PRF ( < 0.05). Alb-ncHA-PRF was able to stimulate osteoblast proliferation and ALP activity at lower levels than those observed by Alb-PRF and was unable to positively affect in vitro mineralization by MG63 cells. These findings indicate that the addition of ncHA spheres reduces the biological activity of Alb-PRF, impairing its initial effects on osteoblast behavior.

摘要

富血小板纤维蛋白(PRF)是第二代血液浓缩物,由于其由纤维蛋白、生长因子和细胞因子组成,为骨再生提供了一种多功能结构,通过富含变性白蛋白的液体PRF(Alb-PRF)等改良形式,显示出增强稳定性和生长因子动态变化的潜力。研究人员还探索了PRF与其他生物材料的组合,旨在为骨修复研究中增强细胞募集、增殖和分化创建一个三维框架。本研究旨在评估Alb-PRF与纳米结构碳酸羟基磷灰石微球(Alb-ncHA-PRF)的组合,以及这种组合如何影响生长因子和免疫调节分子的释放能力,及其对MG63人成骨样细胞行为的影响。制备了Alb-PRF膜,并在聚合过程中与纳米碳磷灰石(ncHA)微球结合。将MG63细胞暴露于两种膜的洗脱液中,以评估细胞活力、增殖、矿化和碱性磷酸酶(ALP)活性。超微结构分析表明,微球破碎,碎片并入Alb-PRF的纤维蛋白网和白蛋白凝胶中。与Alb-PRF相比,Alb-ncHA-PRF的生长因子和细胞因子释放减少(<0.05)。Alb-ncHA-PRF能够刺激成骨细胞增殖和ALP活性,但水平低于Alb-PRF观察到的水平,并且无法对MG63细胞的体外矿化产生积极影响。这些发现表明,添加ncHA微球会降低Alb-PRF的生物活性,损害其对成骨细胞行为的初始影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27d1/10817063/d4b70676787a/jfb-15-00018-g001.jpg

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