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新型白细胞-纤维蛋白-血小板膜的生物制造作为细胞和生长因子输送平台在组织工程应用中的应用。

Biofabrication of a novel leukocyte-fibrin-platelet membrane as a cells and growth factors delivery platform for tissue engineering applications.

机构信息

Department of Pharmaceutical and Pharmacological Sciences, University of Padua, Padua, Italy.

Foundation for Biology and Regenerative Medicine, Tissue Engineering and Signaling (TES) ONLUS, Padua, Italy.

出版信息

J Tissue Eng Regen Med. 2018 Aug;12(8):1891-1906. doi: 10.1002/term.2713. Epub 2018 Jul 23.

DOI:10.1002/term.2713
PMID:29956492
Abstract

Autologous platelet-rich hemocomponents have emerged as potential biologic tools for regenerative purpose, but their therapeutic efficacy still remains controversial. This work represents the characterization study of an innovative autologous leukocyte-fibrin-platelet membrane (LFPm), which we prepared according to a novel protocol involving multiple cycles of apheresis. The high content in fibrinogen gave to our hemocomponent the appearance of a manipulable and suturable membrane with high elasticity and deformation capacity. Moreover, being highly enriched with platelets, leukocytes, and monocytes/macrophages, the LFPm sustained the local release of bioactive molecules (platelet derived growth factor, vascular endothelial growth factor, interleukin-10, and tumour necrosis factor alpha). In parallel, the evaluation of stemness potential highlighted also that the LFPm contained cells expressing pluripotency and multipotency markers both at the messenger ribonucleic acid (NANOG, SOX2, THY1, NT5E, and ENG) and surface-protein level (CD44 /CD73 /CD34 /CD117 /CD31 ). Finally, biodegradation analysis interestingly showed a good stability of the membrane for at least 3 weeks in vitro and 1 week in vivo. In both cases, biodegradation was associated with progressive exposure of fibrin scaffold, loss/migration of cellular elements, and release of growth factors. Overall, collected evidence could shed some light on the regenerative effect that LFPms may exert after the autologous implant on a defect site.

摘要

自体富血小板血源性细胞外基质已成为再生目的的有潜力的生物工具,但它们的治疗效果仍存在争议。这项工作代表了一种新型自体白细胞-纤维蛋白-血小板膜(LFPm)的特征研究,我们根据一种新的方案制备了该膜,其中涉及多次离心分离术循环。纤维蛋白原含量高使得我们的血源性细胞外基质具有可操作和可缝合的膜外观,具有高弹性和变形能力。此外,由于富含血小板、白细胞和单核细胞/巨噬细胞,LFPm 维持了生物活性分子(血小板衍生生长因子、血管内皮生长因子、白细胞介素 10 和肿瘤坏死因子-α)的局部释放。同时,对干细胞特性的评估还表明,LFPm 中含有表达多能性和多能性标志物的细胞,这些标志物在信使核糖核酸(NANOG、SOX2、THY1、NT5E 和 ENG)和表面蛋白水平(CD44/CD73/CD34/CD117/CD31)上均有表达。最后,生物降解分析有趣地表明,该膜在体外至少稳定 3 周,体内稳定 1 周。在这两种情况下,生物降解均与纤维蛋白支架的逐渐暴露、细胞成分的损失/迁移以及生长因子的释放有关。总的来说,收集到的证据可以阐明 LFPm 在自体植入缺陷部位后可能发挥的再生作用。

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