首页> 外文期刊>PDA journal of pharmaceutical science and technology >Evaluation of the BioVigilant IMD-A, a novel optical spectroscopy technology for the continuous and real-time environmental monitoring of viable and nonviable particles. Part II. Case studies in environmental monitoring during aseptic filling, intervention assessments, and glove integrity testing in manufacturing isolators.
【24h】

Evaluation of the BioVigilant IMD-A, a novel optical spectroscopy technology for the continuous and real-time environmental monitoring of viable and nonviable particles. Part II. Case studies in environmental monitoring during aseptic filling, intervention assessments, and glove integrity testing in manufacturing isolators.

机译:对生物警惕IMD-A的评估,这是一种新颖的光谱技术,用于对活的和不活的颗粒进行连续和实时的环境监测。第二部分在制造隔离器中进行无菌灌装,干预评估和手套完整性测试期间的环境监控的案例研究。

获取原文
获取原文并翻译 | 示例
       

摘要

This paper describes the use of the BioVigilant IMD-A, a real-time and continuous monitoring technology based on optical spectroscopy, to simultaneously and instantaneously detect, size, and enumerate both viable and nonviable particles in a variety of filling and transfer isolator environments during an aseptic fill, transfer of sterilized components, and filling interventions. Continuous monitoring of three separate isolators for more than 16 h and representing more than 28 m3 of air per isolator (under static conditions) yielded a mean viable particle count of zero (0) per cubic meter. Although the mean count per cubic meter was zero, the detection of very low levels of single viable particles was randomly observed in each of these sampling runs. No viable particles were detected during the manual transfer of sterilized components from transfer isolators into a filling isolator, and similar results were observed during an aseptic fill, a filling needle change-out procedure, and during disassembly, movement, and reassembly of a vibrating stopper bowl. During the continuous monitoring of a sample transfer port and a simulated mousehole, no viable particles were detected; however, when the sampling probe was inserted beyond the isolator-room interface, the IMD-A instantaneously detected and enumerated both viable and nonviable particles originating from the surrounding room. Data from glove pinhole studies showed no viable particles being observed, although significant viable particles were immediately detected when the gloves were removed and a bare hand was allowed to introduce microorganisms into the isolator. The IMD-A technology offers the industry an unprecedented advantage over growth-based bioaerosol samplers for monitoring the state of microbiological control in pharmaceutical manufacturing environments, and represents significant progress toward the acceptance of microbiology process analytical technology solutions for the industry.
机译:本文介绍了如何使用BioVigilant IMD-A(一种基于光谱的实时连续监测技术)在各种填充和转移隔离器环境中同时,即时检测,确定大小并枚举可生存和不可生存的颗粒的方法。无菌灌装,无菌成分的转移以及灌装干预措施。连续监测三个单独的隔离器超过16小时,并且每个隔离器代表的空气量超过28立方米(在静态条件下),得出的平均可行颗粒数为每立方米零(0)。尽管每立方米的平均计数为零,但在每个采样运行中均随机观察到非常低水平的单个存活颗粒的检测。在将无菌成分从转移隔离器手动转移到填充隔离器的过程中,没有检测到可行的颗粒,并且在无菌填充,填充针更换程序以及拆卸,移动和重新组装振动塞的过程中观察到了相似的结果碗。在连续监测样品传输口和模拟鼠孔的过程中,未检测到可行的颗粒;但是,当将采样探针插入隔离室界面之外时,IMD-A会立即检测并枚举源自周围空间的有生命和无生命的颗粒。手套针孔研究的数据表明,没有观察到可行的颗粒,尽管在摘下手套并允许裸手将微生物引入隔离器后立即检测到明显的可行颗粒。与基于增长的生物气溶胶采样器相比,IMD-A技术为行业提供了前所未有的优势,可用于监测制药生产环境中微生物控制的状态,并且代表了该行业在接受微生物过程分析技术解决方案方面的重大进步。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号