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From omics technologies to personalized transfusion medicine

机译:从OMICS技术到个性化输血药物

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Introduction: Blood transfusion is the single most frequent in-hospital medical procedure, a life-saving intervention for millions of recipients worldwide every year. Storage in the blood bank is an enabling strategy for this critical procedure, as it logistically solves the issue of making similar to 110 million units available for transfusion every year. Unfortunately, storage in the blood bank promotes a series of biochemical and morphological changes to the red blood cell that compromise the integrity and functionality of the erythrocyte in vitro and in animal models, and could negatively impact transfusion outcomes in the recipient. Areas covered: While commenting on the clinical relevance of the storage lesion is beyond the scope of this manuscript, here we will review recent advancements in our understanding of the storage lesion as gleaned through omics technologies. We will focus on how the omics-scale appreciation of the biological variability at the donor and recipient level is impacting our understanding of red blood cell storage biology. Expert commentary: Omics technologies are paving the way for personalized transfusion medicine, a discipline that promises to revolutionize a critical field in medical practice. The era of recipient-tailored additives, processing, and storage strategies may not be too far distant in the future.
机译:简介:输血是最常见的医院医疗程序,每年全球数百万受助人的救生干预。血库中的存储是这种关键程序的支持策略,因为它逻辑解决了与每年可用于输液的110万台相似的问题。不幸的是,血库中的储存促进了一系列生物化学和形态学变化,对红细胞损害了体外和动物模型的红细胞的完整性和功能,并且可以对接受者产生负面影响输血结果。所涵盖的区域:在评论储存病变的临床相关性时,超出了本手稿的范围,在这里,我们将审查我们对通过OMIC技术收集的存储病变的理解方面的进步。我们将专注于捐助者和受者水平对生物变异性的OMICS规模升值如何影响我们对红细胞储存生物学的理解。专家评论:OMICS技术正在为个性化输血医学铺平道路,这是一项承诺在医疗实践中彻底改变关键领域的纪律。受援人员量身定制的添加剂,加工和存储策略的时代可能不会在未来太远。

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