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Research ArticleRESEARCH ARTICLE

Pharmaceutical Container/Closure Integrity I: Mass Spectrometry-Based Helium Leak Rate Detection for Rubber-Stoppered Glass Vials

Lee E. Kirsch, Lida Nguyen and Craig S. Moeckly
PDA Journal of Pharmaceutical Science and Technology September 1997, 51 (5) 187-194;
Lee E. Kirsch
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Lida Nguyen
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Craig S. Moeckly
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Abstract

The development of mass spectrometry-based leak detection for pharmaceutical container integrity was undertaken to provide an alternative to microbial challenge testing. Standard 10-mL vials were modified to contain pinholes (0.5 to 10 microns) by affixing micropipettes with epoxy into 2-mm vial side wall holes. The absolute leak rate was determined using vials that were sealed in a tracer (helium) environment with butyl rubber stoppers and crimps. Alternatively leak rates were determined using vials that were sealed in room air and exposed to tracer under pressure (charging or bombing). Tracer leak rates were measured with mass spectrometry leak rate detectors. The absolute leak rate was correlated the squared nominal leak radius which suggested that the mode of gas flow through the glass pipette leaks was more turbulent than viscous even at low leak rates typically associated with viscous flow. The minimum observed absolute leak rate was about 10−6.6 std cc/sec and was likely due to helium permeation through the rubber stoppers. Heat-stressed rubber stoppers did not affect the baseline absolute leak rate. Adsorption of helium tracer to the test unit surfaces was found to confound baseline leak rate measurement reliability but was eliminated as a source of variation by exposing the test units to ambient air for ≥12 hours. The absolute leak rate and the leak rate measured after charging were related in a mathematically predictable way.

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PDA Journal of Pharmaceutical Science and Technology
Vol. 51, Issue 5
September-October 1997
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Pharmaceutical Container/Closure Integrity I: Mass Spectrometry-Based Helium Leak Rate Detection for Rubber-Stoppered Glass Vials
Lee E. Kirsch, Lida Nguyen, Craig S. Moeckly
PDA Journal of Pharmaceutical Science and Technology Sep 1997, 51 (5) 187-194;
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  • Single-Use System Integrity IV: A Holistic Approach Based on Compiled Scientific Study Data
  • A Multicompany Survey Study for Helium Leak Container Closure Integrity Test
  • A Vial Container Closure System Performance Optimization Case Study Using Comprehensive Dimensional Stack-Up Analyses
  • Time Temperature Superposition Evaluation and Modeling for Container Closure System's Seal Performance at Low Temperatures
  • Single-Use System Integrity I: Using a Microbial Ingress Test Method to Determine the Maximum Allowable Leakage Limit (MALL)
  • Comparing Physical Container Closure Integrity Test Methods and Artificial Leak Methodologies
  • Time-Dependent Testing Evaluation and Modeling for Rubber Stopper Seal Performance
  • Method Development for Container Closure Integrity Evaluation via Headspace Gas Ingress by Using Frequency Modulation Spectroscopy
  • Container Closure Integrity Testing--Practical Aspects and Approaches in the Pharmaceutical Industry
  • Artificial Leaks in Container Closure Integrity Testing: Nonlinear Finite Element Simulation of Aperture Size Originated by a Copper Wire Sandwiched between the Stopper and the Glass Vial
  • Feasibility of Using Fluorescence Spectrophotometry to Develop a Sensitive Dye Immersion Method for Container Closure Integrity Testing of Prefilled Syringes
  • Impact of Vial Capping on Residual Seal Force and Container Closure Integrity
  • Mass Extraction Container Closure Integrity Physical Testing Method Development for Parenteral Container Closure Systems
  • Visualization Techniques for Assessing Design Factors That Affect the Interaction between Pharmaceutical Vials and Stoppers
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Pharmaceutical Container/Closure Integrity I: Mass Spectrometry-Based Helium Leak Rate Detection for Rubber-Stoppered Glass Vials
Lee E. Kirsch, Lida Nguyen, Craig S. Moeckly
PDA Journal of Pharmaceutical Science and Technology Sep 1997, 51 (5) 187-194;

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