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自体和异体脐带血储存经验。

Experience in autologous and allogeneic cord blood banking.

作者信息

Harris D T

机构信息

Cord Blood Stem Cell Bank, Department Microbiology and Immunology, College of Medicine, University of Arizona, Tucson 85721, USA.

出版信息

J Hematother. 1996 Apr;5(2):123-8. doi: 10.1089/scd.1.1996.5.123.

Abstract

Transplantation and gene therapy offer the hope of treating thousands of individuals with various malignancies and genetic disorders. However, if this approach is to become a reality, there must be readily available sources of suitable HLA-A typed stem cells. Cord blood has been demonstrated to be a suitable source of hematopoietic stem cells that can be used in place of bone marrow stem cells for transplant. However, to implement the widespread clinical use of cord blood, it is necessary to establish both autologous and allogeneic cord blood banks from which stem cell specimens can be obtained. These cord blood banks must be large in size, reflect the ethnic diversity of the patient populations in need, and be financially and logistically feasible. At the Cord Blood Stem Cell Bank at the University of Arizona, we have addressed many of these issues and have taken the necessary steps to create both autologous and allogeneic cord blood banks. We have developed simple, efficient, and reproducible methods for cord blood collection that can be used by any physician without need for previous training. Further, we have developed methodologies to process the cord blood specimen so that samples can be stored in cryovials. This approach to cord blood banking allows for the storage of more than 10,000 independent cord blood specimens in a single liquid nitrogen freezer, reducing the costs and physical space requirements for such a facility. We also have developed the use of electronic integration of laboratory worksheets and controlled rate freezers that permit high laboratory throughput with reduced problems of reproducibility, data entry, and management errors. In terms of allogeneic cord blood banking, we have based our bank on several important assumptions regarding HLA haplotype frequency, ethnic diversity, and the need for less than perfect HLA matching between donor and recipient. These assumptions have allowed us to begin to create an allogeneic cord blood bank that can rapidly attain the size needed for clinical utility without exorbitant costs or time involved. Results of our efforts in autologous and allogeneic cord blood banking are presented (including factors that positively and negatively affect cord blood collection and banking).

摘要

移植和基因治疗为治疗成千上万患有各种恶性肿瘤和遗传性疾病的患者带来了希望。然而,要使这种方法成为现实,必须有现成的合适HLA - A分型干细胞来源。脐带血已被证明是一种合适的造血干细胞来源,可用于替代骨髓干细胞进行移植。然而,要实现脐带血的广泛临床应用,有必要建立自体和异体脐带血库,从中获取干细胞标本。这些脐带血库必须规模庞大,反映有需求的患者群体的种族多样性,并且在经济和后勤方面可行。在亚利桑那大学脐带血干细胞库,我们已经解决了许多此类问题,并采取了必要步骤来创建自体和异体脐带血库。我们开发了简单、高效且可重复的脐带血采集方法,任何医生都可以使用,无需事先培训。此外,我们还开发了处理脐带血标本的方法,以便样本能够储存在冻存管中。这种脐带血库的方法允许在单个液氮冷冻箱中存储超过10000份独立的脐带血标本,降低了此类设施的成本和物理空间需求。我们还开发了实验室工作表和程序降温冷冻箱的电子集成系统,可实现高实验室通量,同时减少重复性、数据录入和管理错误等问题。在异体脐带血库方面,我们的血库基于关于HLA单倍型频率、种族多样性以及供体和受体之间不太完美的HLA匹配需求的几个重要假设。这些假设使我们能够开始创建一个异体脐带血库,该血库能够在不产生过高成本或不花费过多时间的情况下迅速达到临床应用所需的规模。本文展示了我们在自体和异体脐带血库方面的工作成果(包括对脐带血采集和建库有积极和消极影响 的因素)。

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