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对单个巨核细胞的均匀影响对于高效的体外血小板生成至关重要。

Uniform impact on individual megakaryocytes is essential for efficient in vitro platelet production.

作者信息

Garzon Dasgupta Andrei K, Pongérard Anaïs, Mallo Léa, Eckly Anita, Lanza François, Boiron Olivier, Knapp Yannick, Strassel Catherine

机构信息

Université de Strasbourg, INSERM, EFS Grand-Est, BPPS UMR-S1255, FMTS, Strasbourg, F-67065, France.

CNRS, Université Aix-Marseille, Ecole Centrale Marseille, IRPHE UMR7342, Marseille, F-13000, France.

出版信息

Sci Rep. 2025 Jan 13;15(1):1809. doi: 10.1038/s41598-024-79949-0.

Abstract

Different approaches are being developed to efficiently produce in vitro platelets from cultured megakaryocytes to meet the constant demand of platelet transfusion and serve for research purposes. Recent works have shown that turbulence and periodic stress can significantly enhance platelet yield. Here we have developed and characterized a platelet production device that takes in account these properties. This device is based on the Taylor-Couette reactor in which a suspension is confined and sheared between two concentric cylinders. We have demonstrated that such a system allows obtaining high number of in vitro platelets per megakaryocyte with native-like morphology and functional properties. Using the combination of in silico and in vitro techniques, we claimed that overall turbulent conditions are not sufficient for efficient platelet release, and highlighted the importance of the uniform impact of flow on each megakaryocyte, a property that must be taken into account along with general flow characteristics when designing platelet release bioreactors. In addition, we have demonstrated that our system can be scaled up to large volumes without loss of efficiency, a significant advantage for the industrialization of platelet culture. In conclusion, we have developed a platelet production device with a predictable and highly precise effect on each megakaryocyte.

摘要

为了满足血小板输注的持续需求并服务于研究目的,人们正在开发不同的方法以从培养的巨核细胞高效地体外生成血小板。最近的研究表明,湍流和周期性应力可显著提高血小板产量。在此,我们开发并表征了一种考虑到这些特性的血小板生产装置。该装置基于泰勒-库埃特反应器,其中悬浮液被限制在两个同心圆柱之间并受到剪切作用。我们已经证明,这样的系统能够从每个巨核细胞获得大量具有天然形态和功能特性的体外血小板。通过结合计算机模拟和体外技术,我们认为整体湍流条件不足以实现高效的血小板释放,并强调了流体对每个巨核细胞均匀冲击的重要性,这一特性在设计血小板释放生物反应器时必须与一般流动特性一并考虑。此外,我们已经证明我们的系统可以扩大到大规模生产而不损失效率,这对血小板培养的工业化来说是一个显著优势。总之,我们开发了一种对每个巨核细胞具有可预测且高度精确作用的血小板生产装置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0de/11730292/7b23605a2782/41598_2024_79949_Fig1_HTML.jpg

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