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Characterization and storage of malaria antigens: Low-temperature preservation of sporozoites of Plasmodium berghei

机译:疟疾抗原的表征和存储:伯氏疟原虫子孢子的低温保存

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摘要

Large numbers of biologically active sporozoites are needed as a source of potential antigen in the development of a malaria vaccine and the most practical method of accumulating sufficient numbers of these forms would be to freeze and store them at low temperature. The purpose of this work was to determine the feasibility of preserving the infectivity of frozen and thawed sporozoites. The results indicate that sporozoites of Plasmodium berghei exhibit a typical response to freezing over a wide range of cooling rates; the distribution around the optimum was a normal one and both the magnitude and position of the peak of their infectivity depended upon the preservative used. The optimum cooling rate with preservatives of high relative molecular mass was between 20 °C and 60 °C per min, but varied with the preservative used. A new apparatus was designed and built to yield reproducible controlled cooling rates over the range studied. A comparison of various commonly used preservatives showed mouse serum alone to be effective, but the combination of serum and hydroxyethyl starch proved to be the best cryopreservative of those examined.
机译:在疟疾疫苗的开发中,需要大量具有生物活性的子孢子作为潜在抗原的来源,而积累足够数量的这些形式的最实用方法是将其冷冻并在低温下保存。这项工作的目的是确定保留冷冻和解冻的子孢子传染性的可行性。结果表明,伯氏疟原虫的子孢子在宽范围的冷却速率下均表现出对冻结的典型响应。最佳值周围的分布是正态分布,其感染力峰值的大小和位置都取决于所使用的防腐剂。相对分子质量较高的防腐剂的最佳冷却速度为每分钟20°C至60°C,但随所用防腐剂的不同而不同。设计并制造了一种新设备,可在研究范围内产生可再现的受控冷却速率。对各种常用防腐剂的比较表明,单独使用小鼠血清是有效的,但血清和羟乙基淀粉的组合被证明是所检查的最佳冷冻保存剂。

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