在体外模型中,β-TCP 陶瓷负载的生长因子的释放动力学。

IF 4.3 3区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Frontiers in Bioengineering and Biotechnology Pub Date : 2024-09-27 eCollection Date: 2024-01-01 DOI:10.3389/fbioe.2024.1441547
Marco Waldmann, Marc Bohner, Anna Baghnavi, Bianca Riedel, Michael Seidenstuecker
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引用次数: 0

摘要

导言:β-TCP 陶瓷是一种骨替代材料,最近已被测试为一种药物输送系统,有可能用于血小板中的生长因子等内源性物质,以促进积极的属性:在这项工作中,我们使用流动室加载法将富含血小板血浆(PRP)、贫血小板血浆(PPP)或水衣(BC)特性的血液悬浮液加载到β-TCP镙钉上。PRP 和 BC 的血小板数量通过稀释调整到相同水平。随后使用 ELISA 方法测定了 5 天内镙丝钉周围培养基中 TGF-β1、PDGF-AB 和 IGF-1 的浓度。此外,还测试了海藻酸盐对改变释放的影响:结果:与 PPP 相比,TGF-β1 和 PDGF-AB 在 PRP 和 BC 中的浓度增加,并最终显示出从血小板中的释放。在 BC 样品中,藻酸盐涂层减少了 PDGF-AB 的释放,但并没有减少 TGF-β1,反而增加了 TGF-β1。IGF-1 浓度在 PPP 中最高,这表明循环水平而非血小板释放是驱动因素。藻酸盐样本的 IGF-1 浓度往往较低,但差异并不显著:讨论:β-TCP 作为一种给药系统,成功地证明了不同血液悬浮液中生长因子的释放,其释放模式与 Ca2+ 触发激活后的血小板活化相一致。海藻酸盐涂层部分改变了释放模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Release kinetics of growth factors loaded into β-TCP ceramics in an in vitro model.

Introduction: β-TCP ceramics are bone replacement materials that have recently been tested as a drug delivery system that can potentially be applied to endogenous substances like growth factors found in blood platelets to facilitate positive attributes.

Methods: In this work, we used flow chamber loading to load β-TCP dowels with blood suspensions of platelet-rich plasma (PRP), platelet-poor plasma (PPP), or buffy coat (BC) character. PRP and BC platelet counts were adjusted to the same level by dilution. Concentrations of TGF-β1, PDGF-AB, and IGF-1 from dowel-surrounding culture medium were subsequently determined using ELISA over 5 days. The influence of alginate was additionally tested to modify the release.

Results: Concentrations of TGF-β1 and PDGF-AB increased and conclusively showed a release from platelets in PRP and BC compared to PPP. The alginate coating reduced the PDGF-AB release but did not reduce TGF-β1 and instead even increased TGF-β1 in the BC samples. IGF-1 concentrations were highest in PPP, suggesting circulating levels rather than platelet release as the driving factor. Alginate samples tended to have lower IGF-1 concentrations, but the difference was not shown to be significant.

Discussion: The release of growth factors from different blood suspensions was successfully demonstrated for β-TCP as a drug delivery system with release patterns that correspond to PRP activation after Ca2+-triggered activation. The release pattern was partially modified by alginate coating.

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来源期刊
Frontiers in Bioengineering and Biotechnology
Frontiers in Bioengineering and Biotechnology Chemical Engineering-Bioengineering
CiteScore
8.30
自引率
5.30%
发文量
2270
审稿时长
12 weeks
期刊介绍: The translation of new discoveries in medicine to clinical routine has never been easy. During the second half of the last century, thanks to the progress in chemistry, biochemistry and pharmacology, we have seen the development and the application of a large number of drugs and devices aimed at the treatment of symptoms, blocking unwanted pathways and, in the case of infectious diseases, fighting the micro-organisms responsible. However, we are facing, today, a dramatic change in the therapeutic approach to pathologies and diseases. Indeed, the challenge of the present and the next decade is to fully restore the physiological status of the diseased organism and to completely regenerate tissue and organs when they are so seriously affected that treatments cannot be limited to the repression of symptoms or to the repair of damage. This is being made possible thanks to the major developments made in basic cell and molecular biology, including stem cell science, growth factor delivery, gene isolation and transfection, the advances in bioengineering and nanotechnology, including development of new biomaterials, biofabrication technologies and use of bioreactors, and the big improvements in diagnostic tools and imaging of cells, tissues and organs. In today`s world, an enhancement of communication between multidisciplinary experts, together with the promotion of joint projects and close collaborations among scientists, engineers, industry people, regulatory agencies and physicians are absolute requirements for the success of any attempt to develop and clinically apply a new biological therapy or an innovative device involving the collective use of biomaterials, cells and/or bioactive molecules. “Frontiers in Bioengineering and Biotechnology” aspires to be a forum for all people involved in the process by bridging the gap too often existing between a discovery in the basic sciences and its clinical application.
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