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PEG 解毒对白喉疫苗效果的研究。

Investigation of the Effect of PEG Detoxification on Diphtheria Vaccine.

机构信息

Imam Khomeini International University, Qazvin, Iran.

Department of Human Bacterial vaccine, Razi Vaccine and Serum Research Institute, Agricultural Research, Education and Extension Organization (AREEO), Karaj, Iran.

出版信息

Arch Razi Inst. 2022 Apr 30;77(2):739-745. doi: 10.22092/ARI.2021.354020.1621. eCollection 2022 Apr.

Abstract

Immunization has been considered a successful global health program that saves many persons' lives each year. The vaccines reduce the risk of getting the disease by building immunity in the body. Therefore, the constant availability of essential vaccines is an important factor in community health. One of the most important vaccines is the diphtheria vaccine, which is usually used as (DTP) combination vaccines. The production of this vaccine takes about 45 days, from the initial bacterial culture to the end of toxin production. However, the production of this vaccine can be optimized in case the production stages are carried out under normal conditions. In this study, a significant amount of impurities was removed after washing with phosphate buffer saline, and the toxin was then purified by Sephadex G-50. In this method, the toxin was concentrated to be stored in a smaller space (this removes the concerns for the provision of a suitable space). Another problem with the diphtheria vaccine is that it is reversible after detoxification of the toxin using formaldehyde. For this reason, it is suggested to use MPEG for detoxification, which will produce more stable covalent bonds between PEG and the first type of amine groups in the toxin chain. Tests were performed to evaluate factors, such as in vivo cytotoxicity, lack of edemas formation, the neutralizing activity of serum from guinea pigs immunized with the diphtheria toxoid inactivated with MPEG, and the immunogenic activity of the purified and modified toxin. Comparison of this PEG detoxification toxoid with the standard toxoid produced in Razi Vaccine and Serum Institution, Karaj, Iran, showed that washing with PBS and purification with Sephadex G-50 was an efficient method. The stability and reversibility of the toxoid approved by MPEG were acceptable. Therefore, the results of animal tests showed that the obtained product was stable and caused no wound or necrosis in the tested animals.

摘要

免疫接种被认为是一项成功的全球卫生计划,每年为数以百万计的人挽救生命。疫苗通过在体内建立免疫力来降低患病风险。因此,基本疫苗的持续供应是社区健康的一个重要因素。最重要的疫苗之一是白喉疫苗,通常用作 (DTP) 联合疫苗。这种疫苗的生产大约需要 45 天,从最初的细菌培养到毒素生产结束。然而,如果在正常条件下进行生产阶段,这种疫苗的生产可以得到优化。在这项研究中,用磷酸盐缓冲盐水洗涤后去除了大量杂质,然后用 Sephadex G-50 纯化毒素。在这种方法中,毒素被浓缩以储存在较小的空间中(这消除了对提供合适空间的担忧)。白喉疫苗的另一个问题是,在用甲醛解毒毒素后,它是可逆的。因此,建议使用 MPEG 进行解毒,这将在毒素链的第一种胺基之间产生更稳定的共价键。进行了测试以评估以下因素:体内细胞毒性、水肿形成缺乏、用 MPEG 灭活的白喉类毒素免疫豚鼠的血清的中和活性以及纯化和修饰毒素的免疫原性活性。与在伊朗卡拉季的拉齐疫苗和血清研究所生产的标准类毒素相比,该 PEG 解毒类毒素的结果表明,用 PBS 洗涤和用 Sephadex G-50 纯化是一种有效的方法。MPEG 批准的类毒素的稳定性和可逆性是可以接受的。因此,动物试验的结果表明,所获得的产物是稳定的,在测试的动物中不会引起伤口或坏死。

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