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“粘性骨”制备装置:细胞因子和生长因子释放的初步研究

"Sticky Bone" Preparation Device: A Pilot Study on the Release of Cytokines and Growth Factors.

作者信息

Gheno Ezio, Alves Gutemberg Gomes, Ghiretti Roberto, Mello-Machado Rafael Coutinho, Signore Antonio, Lourenço Emanuelle Stellet, Leite Paulo Emílio Correa, Mourão Carlos Fernando de Almeida Barros, Sohn Dong-Seok, Calasans-Maia Mônica Diuana

机构信息

Post-Graduation Program in Dentistry, Fluminense Federal University, Niteroi 24220-140, RJ, Brazil.

Surgical Sciences and Integrated Diagnostics Department, University of Genoa, 16132 Genoa, Italy.

出版信息

Materials (Basel). 2022 Feb 16;15(4):1474. doi: 10.3390/ma15041474.

Abstract

Sticky bone, a growth factor-enriched bone graft matrix, is a promising autologous material for bone tissue regeneration. However, its production is strongly dependent on manual handling steps. In this sense, a new device was developed to simplify the confection of the sticky bone, named Sticky Bone Preparation Device (SBPD). The purpose of this pilot study was to investigate the suitability of the SBPD to prepare biomaterials for bone regeneration with autologous platelet concentrates. The SBPD allows the blending of particulate samples from synthetic, xenograft, or autogenous bone with autologous platelet concentrates, making it easy to use and avoiding the need of further manipulations for the combination of the materials. The protocol for the preparation of sticky bone samples using the SBPD is described, and the resulting product is compared with hand-mixed SB preparations regarding in vitro parameters such as cell content and the ability to release growth factors and cytokines relevant to tissue regeneration. The entrapped cell content was estimated, and the ability to release biological mediators was assessed after 7 days of incubation in culture medium. Both preparations increased the leukocyte and platelet concentrations compared to whole-blood samples ( < 0.05), without significant differences between SB and SBPD. SBPD samples released several growth factors, including VEGF, FGFb, and PDGF, at concentrations physiologically equivalent to those released by SB preparations. Therefore, the use of SBPD results in a similar product to the standard protocol, but with more straightforward and shorter preparation times and less manipulation. These preliminary results suggest this device as a suitable alternative for combining bone substitute materials with platelet concentrates for bone tissue regeneration.

摘要

粘性骨是一种富含生长因子的骨移植基质,是用于骨组织再生的一种很有前景的自体材料。然而,其生产强烈依赖手工操作步骤。从这个意义上说,开发了一种新设备来简化粘性骨的制作,名为粘性骨制备装置(SBPD)。这项初步研究的目的是调查SBPD制备含自体血小板浓缩物的骨再生生物材料的适用性。SBPD能将来自合成骨、异种骨或自体骨的颗粒样本与自体血小板浓缩物混合,使用方便,且无需对材料组合进行进一步操作。描述了使用SBPD制备粘性骨样本的方案,并将所得产品与手工混合的粘性骨制备物在体外参数方面进行比较,如细胞含量以及释放与组织再生相关的生长因子和细胞因子的能力。评估了包埋的细胞含量,并在培养基中培养7天后评估释放生物介质的能力。与全血样本相比,两种制备物均提高了白细胞和血小板浓度(<0.05),SB和SBPD之间无显著差异。SBPD样本释放了几种生长因子,包括血管内皮生长因子(VEGF)、碱性成纤维细胞生长因子(FGFb)和血小板衍生生长因子(PDGF),其浓度在生理上与SB制备物释放的浓度相当。因此,使用SBPD得到的产品与标准方案相似,但制备时间更直接、更短,且操作更少。这些初步结果表明,该设备可作为将骨替代材料与血小板浓缩物结合用于骨组织再生的合适替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9599/8879971/e50140e2efb8/materials-15-01474-g002.jpg

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