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原生动物寄生虫刚地弓形虫减毒疫苗株的冷冻保存。

Cryopreservation of an attenuated vaccine strain of the protozoan parasite Toxoplasma gondii.

作者信息

Booth K S, James E R, Popiel I

机构信息

Heska Corporation, Fort Collins, Colorado 80525, USA.

出版信息

Cryobiology. 1996 Jun;33(3):330-7. doi: 10.1006/cryo.1996.0033.

Abstract

Toxoplasma gondii is a protozoan parasite that infects birds and mammals, including humans. T. gondii T-263 is an attenuated mutant strain that is being developed as a live vaccine to protect cats from shedding oocysts. A cryopreservation procedure for T. gondii T-263 bradyzoites has been developed to meet the requirement for product stability. A Me2SO-based procedure for the cryopreservation of tachyzoites was used as a basis for process optimization. A modified cell culture plaque assay was used to determine the effects of selected cryobiological parameters on bradyzoite viability. The major parameters evaluated were: (i) cooling rates; (ii) intermediate plunge temperature; and (iii) thawing and dilution rates and temperatures. The optimized cryopreservation protocol comprised incubation in 12.5% Me2SO and 4% BSA for 30 min at room temperature, cooling at 1 degree C min-1 to -40 degrees C, followed by direct transfer into liquid nitrogen. Rapid thawing (approximately 120 degrees C min-1) followed by slow dilution of cryoprotectant over 15 min resulted in the highest survival. The optimized procedure increased survival 10,000-fold over that obtained using an established tachyzoite protocol. This procedure is to be adapted for the large-scale cryopreservation of T. gondii T-263 bradyzoites in individual vaccine doses.

摘要

刚地弓形虫是一种感染鸟类和哺乳动物(包括人类)的原生动物寄生虫。刚地弓形虫T-263是一种减毒突变株,正在被开发为一种活疫苗,以保护猫不排出卵囊。为满足产品稳定性要求,已开发出一种用于刚地弓形虫T-263缓殖子的冷冻保存程序。一种基于二甲亚砜(Me2SO)的速殖子冷冻保存程序被用作工艺优化的基础。一种改良的细胞培养空斑试验被用于确定所选低温生物学参数对缓殖子活力的影响。评估的主要参数包括:(i)降温速率;(ii)中间投入温度;以及(iii)解冻和稀释速率及温度。优化后的冷冻保存方案包括在室温下于12.5% Me2SO和4%牛血清白蛋白(BSA)中孵育30分钟,以1℃/分钟的速率冷却至-40℃,然后直接转移到液氮中。快速解冻(约120℃/分钟),随后在15分钟内缓慢稀释冷冻保护剂,可获得最高存活率。与使用既定的速殖子方案相比,优化后的程序使存活率提高了10000倍。该程序将适用于以单个疫苗剂量对刚地弓形虫T-263缓殖子进行大规模冷冻保存。

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