首页> 外文期刊>PDA journal of pharmaceutical science and technology >Method for qualifying microbial removal performance of 0.1 micron rated filters. Part IV: Retention of hydrogenophaga pseudoflava (ATCC 700892) and Ralstonia pickettii (ATCC 700591) by 0.2 and 0.22 micron rated filters.
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Method for qualifying microbial removal performance of 0.1 micron rated filters. Part IV: Retention of hydrogenophaga pseudoflava (ATCC 700892) and Ralstonia pickettii (ATCC 700591) by 0.2 and 0.22 micron rated filters.

机译:鉴定0.1微米额定过滤器的微生物去除性能的方法。第四部分:用0.2和0.22微米等级的过滤器保留拟金丝桃(Halphophaga pseudoflava)(ATCC 700892)和Ralstonia pickettii(ATCC 700591)。

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Ralstonia pickettii has emerged as a bioburden microorganism of considerable importance in pharmaceutical processes utilizing conventional 0.2 or 0.22 micron rated "sterilizing grade" filters. In this article, we re-evaluated and studied the retention efficiencies of 0.2 micron rated nylon 6.6 and 0.22 microns rated modified polyvinylidene fluoride (PVDF) filters for Hydrogenophaga pseudoflava (ATCC 700892) and R. pickettii (ATCC 700591). Out of a total of forty-four 0.2/0.22 micron rated filters discs tested in this study (spanning different challenge fluids, different challenge conditions, and different filter types), H. pseudoflava penetration was observed for every filter disc tested. Log titer reduction (LTR) values ranged from 0.3 to 2.0 logs for 20-48 hour challenges conducted in Water for Injection (WFI), and 3.8-7.1 logs for 6-hour challenges conducted in Minimal Media Davis (MMD). For 0.2 micron nylon 6.6 filter discs, penetration by R. pickettii was observed only in WFI challenges and was dependent on the culture and challenge conditions used. Penetration by R. pickettii was also restricted to only those membrane discs that were very close to the filter manufacturer's production integrity test (the Quantitative Bubble Point, QBP, test) limit. Where R. pickettii penetration was observed, LTR values were significantly higher than those observed for H. pseudoflava with the same filter discs. This study: 1) supports the use of H. pseudoflava as a worst-case challenge model for R. pickettii in process- and product-specific bacterial retention testing; 2) provides experimental evidence, for the first time, for the need to include filter membrane lots that have a physical integrity test value at or near the filter manufacturer's production (lower) limit in these tests; and 3) demonstrates how a standardized membrane integrity test (such as the QBP test) can be used select such worst-case membranes in these tests, thus serving as the link between the membrane disc used in bacterial retention validation testing and the production process filter.
机译:在使用常规的0.2或0.22微米等级的“灭菌级”过滤器的制药过程中,Ralstonia pickettii已经成为一种重要的生物负载微生物。在本文中,我们重新评估并研究了0.2微米级尼龙6.6和0.22微米级改性聚偏二氟乙烯(PVDF)过滤器对假单胞菌(ATCC 700892)和R. pickettii(ATCC 700591)的保留效率。在这项研究中测试的总共四十四个0.2 / 0.22微米额定滤盘中(跨越不同的挑战液,不同的挑战条件和不同的过滤器类型),每个测试的滤盘均观察到假丝酵母渗透。在注射用水(WFI)中进行20-48小时挑战时,对数滴定度降低(LTR)值的范围从0.3到2.0对数,在最小培养基戴维斯(MMD)中进行6小时挑战时的对数滴度降低(3.8-7.1 log)。对于0.2微米的尼龙6.6滤盘,仅在WFI挑战中观察到了R. pickettii的渗透,这取决于所用的培养条件和挑战条件。 R. pickettii的渗透率也仅限于非常接近过滤器制造商的生产完整性测试(定量泡点,QBP,测试)极限的那些膜片。在观察到R. pickettii穿透的情况下,LTR值显着高于使用相同滤盘的假黄花假丝酵母的LTR值。这项研究:1)支持在生产过程和产品特定的细菌保留测试中,使用拟假丝酵母作为对拟南芥的最坏情况挑战模型; 2)首次提供了实验证据,要求包括滤膜批,这些滤膜批的物理完整性测试值应等于或接近过滤器制造商的生产(下限)限值;和3)展示了如何使用标准化的膜完整性测试(例如QBP测试)在这些测试中选择这种最坏情况的膜,从而将其用作细菌保留验证测试中的膜片和生产过程过滤器之间的链接。

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