首页> 外文期刊>Transfusion and apheresis science: official journal of the World Apheresis Association : official journal of the European Society for Haemapheresis >New method to produce hemocomponents for regenerative use from peripheral blood: Integration among platelet growth factors monocytes and stem cells
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New method to produce hemocomponents for regenerative use from peripheral blood: Integration among platelet growth factors monocytes and stem cells

机译:从外周血中产生可再生利用的血液成分的新方法:血小板生长因子单核细胞和干细胞之间的整合

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摘要

Recent studies have shown the importance of monocytes/macrophageses and of CD34+ progenitors in tissue regeneration processes. These cells, obtained generally from bone marrow, are seen in damaged tissue.We have studied a method to collect from the peripheral blood, using a cell separator and without stimulation of the patient/donor, a leukocyte platelet concentrated hemocompo-nent (CLP) for regenerative use which contains platelets, monocytes/macrophages, fibrin-ogen and CD34+ cells. We appraised the composition and cell functionality of the final hemocomponent during production and cryoconservation. The results show a positive increase in concentration values, in comparison with the pre-collection, of the cells that were involved in regeneration; i.e. the platelets, monocytes and CD34+ cells. These concentrations were also maintained at an effective level during cryoconservation of the hemocomponent. The CLP also demonstrated positive clonogenic potential in culture, showing that the CD34+ progenitors involved in CFU formation are functional in the fresh and thawed product. In brief we have shown that it is possible to produce, in a simple way, a hemocomponent for regenerative use that is standardized, reliable, and is economically feasible.
机译:最近的研究表明,单核细胞/巨噬细胞和CD34 +祖细胞在组织再生过程中的重要性。这些细胞通常从骨髓中获得,可见于受损组织中。我们研究了一种使用细胞分离器在不刺激患者/供体的情况下从外周血中收集白细胞血小板浓缩血友病(CLP)的方法。包含血小板,单核细胞/巨噬细胞,血纤维蛋白原和CD34 +细胞的再生用途。我们评估了在生产和冷冻保存过程中最终血液成分的组成和细胞功能。结果表明,与预收集相比,参与再生的细胞的浓度值呈正增长;即血小板,单核细胞和CD34 +细胞。在血液成分的冷冻保存期间,这些浓度也保持在有效水平。 CLP在培养中也显示出正的克隆形成潜力,表明参与CFU形成的CD34 +祖细胞在新鲜和解冻的产品中具有功能。简而言之,我们已经表明,可以以简单的方式生产标准化,可靠且在经济上可行的用于再生用途的血液成分。

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