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Development and Application of New Storage-Technologies for Effective and Secure Cryobanking

机译:新存储技术的开发与应用,有效和安全低温

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HI virus collections are essential instruments for the development of new vaccines, because endless virus varia-tions consistently raise new, unpredictable problems. In studies performed with HIV patients, blood samples are usually ana-lyzed in laboratories located hundreds of kilometers away from sample origin, because of complicated conditions in the field. Thus, essential aspects for transporting blood samples are efficient cryopreservation without loss of viability or func-tionality, as well as a safe sample identification. Therefore, the Global HIV Vaccine Research Cryorepository (GHRC) was funded by the Bill&Melinda Gates Foundation. Goal of GHRC is to establish the first large-scale centralized biobank for low-temperature storage of HIV-I related specimens, providing standardized access to these important samples. Fraunhofer IBMT, member of GHRC designed a novel cryosubstrate, which is securely attached to an electronic memory chip in combination with a conventional barcode and a low tempera-ture RFID-tag to prevent mismatches [1]. The recovery of peripheral blood mononuclear cells (PBMCs) after cryopre-servation in the new cryosubstrates showed, especially for small sample volumes (0.1 ml), an increased viability in com-parison to the preservation in standard cryovials. For optimi-zation of cryopreservation procedures, an improvement of sample handling and transport conditions is also important. Therefore, the effects of temperature changes on PBMC viabil-ity and lymphocyte lethality were investigated.
机译:HI病毒藏品是新疫苗的发展是必不可少的手段,因为无休止的病毒杂物,蒸发散一致提出了新的,不可预知的问题。在HIV的患者进行的研究中,血液样本通常是ANA-裂解位于数百公里从样本原点最远的实验室,因为在野外复杂的条件。因此,用于输送血液样品基本方面是有效率的冷冻保存而不活力或FUNC-族体的损失,以及作为一个安全的样品标识。因此,全球艾滋病疫苗研究Cryorepository(GHRC)是由比尔和梅琳达·盖茨基金会资助。 GHRC的目标是建立低温存储HIV-1相关标本的第一次大规模集中式生物样本库,提供标准化的访问这些重要的样本。弗劳恩霍夫IBMT,GHRC的构件设计的新颖cryosubstrate,其被牢固地连接到一个电子存储芯片,结合一个传统的条形码和低彩画-TURE RFID标签,以防止不匹配[1]。外周血单核细胞(PBMC)中的新cryosubstrates cryopre-servation之后的恢复表明,尤其是对于小样品体积(0.1毫升),在COM-型坯在标准冷冻管保存增加的存活力。对于冷冻保存程序优化解 - 矩阵特殊积,样品处理和运输条件的改善也很重要。因此,对PBMC viabil-两者均和淋巴细胞杀伤力温度变化的影响进行了调查。

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