Expanding Solutions for Elemental Impurity Analysis in Pharmaceutical Products

Shimadzu releases the ICPMS-2030 inductively coupled plasma mass spectrometer

14 Mar 2016
Weylan Kiam-Laine
Microbiologist

Product news

The new ICPMS-2030 is designed to meet the requirements of the ICH (International Council for Harmonisation of Technical Requirements for Pharmaceuticals for Human Use) Q3D guidelines for elemental impurities in pharmaceutical products. The ICH Q3D specifies allowable limits of daily intake of 24 elements of toxicological concern, and requires highly sensitive and high-precision measurement of such elements.

The ICPMS-2030 satisfies these requirements with ppt level high sensitivity. This is achieved by the newly developed collision cell and the optimized internal structure, offering FDA 21 CFR Part 11 compliance, automated analytical method development function, and unique measurement result evaluation function to provide analytical results with exceptionally high reliability.

The US pharmacopoeia indicates limits of elemental impurities (USP) and detection techniques using ICP-MS (USP), which will be in effect in January 2018. In USP, X-ray Fluorescence Spectrometry is adopted as general analytical method. For those demands, Shimadzu offers total solution for elemental impurities analysis from screening without sample preparation using the EDX-7000/8000, FDA 21 CFR Part 11 compliant Energy Dispersive X-ray Fluorescence Spectrometers, to highly sensitive and high-precision analysis using the ICPMS-2030.

“Critical Mass Tour” – The ICPMS-2030 European Launch Tour

Newly released during the Pittcon Expo in March 2016, the ICPMS-2030 will be launched in Europe as of March. During the “Critical Mass Tour” Shimadzu will travel to several countries such as Belgium, Hungary, France, and others. In Germany, the ICPMS-2030 will be introduced during the analytica trade fair in Munich, May 10-13.

Features:

The ICPMS-2030 combines benefits covering performance features such as sensitivity and reliability, as well as operational, handling and economic aspects.

1. Designed for high sensitivity and easy maintenance
The optimized internal structure including the newly developed collision cell enables analysis at ppt level sensitivity; depending on the elements even sub-ppt levels can be reached. This outstanding sensitivity is achieved by minimized spectral interference and improved transmission efficiency of atomic ions, so that precise quantitation results in elemental impurity analysis become more reliable. The sample injection unit and interface unit, where ionized atoms go through can be easily removed for maintenance so that stable analysis for longer period can be ensured.

2. Simplified analysis and higher data reliability by assistant functions and LabSolutions software
In ICP-MS analysis, conventionally users needed to be skilful and often spent a long time to find the ions that interfere with spectra, select the optimum mass number of the elements to be measured, and determine the calibration curve sample concentration.
Using the “Development Assistant" function, users can now simply perform qualitative analysis by selecting the elements to be measured. The software then automatically sets the suitable analysis conditions. When performing routine analysis, the “Diagnosis Assistant” automatically checks if there is spectral interference and indicates problems if there are any. Shimadzu’s FDA 21 CFR Part 11 compliant LabSolutions software provides ensured analytical data management.

3. Reduction of argon gas consumption and lower running costs via the mini-torch and Eco mode
Shimadzu’s unique mini-torch plasma unit significantly reduces the consumption of argon gas. The Eco mode automatically reduces the argon gas flow during standby. In addition, the use of 99.95 % purity argon gas is guaranteed. Therefore, analysis can be performed using the relatively lower cost argon gas, instead of 99.999 % or higher purity argon gas generally used. These features greatly reduce costs in laboratory operations.

For research use only. Not for use in diagnostic procedures.

ICPE-9800 Series: Simultaneous ICP Emission Spectrometers

Shimadzu Corporation

  Featuring user-friendly software and a proprietary design, the simultaneous ICPE-9800 series instruments enable sensitive, high-speed simultaneous analysis of multiple elements regardless of concentration levels while significantly reducing operating costs.   Key features include a vertically oriented plasma torch with dual view (axial/radial) capabilities that achieves the ideal combination of sensitivity and dynamic range, and a leading-edge CCD (charge-coupled device) detector with one million pixels. Eco Mode and a mini-torch system significantly minimize argon gas consumption, resulting in substantial cost savings. Easy-to-use, 21 CFR compliant software helps users optimize methods and enables a smooth analysis process. The Assistant functions help users optimize methods by automatically acquiring wavelength data, selecting optimal wavelengths, diagnosing methods and providing inter-element correction for an all-around smooth analysis process. In addition to the standard accessories, additional torches, chambers, nebulizers, drains and other parts are available for the ICPE-9800 series so users can customize their systems for their specific application needs.

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ICPE-9000

ICPE-9000 is a simultaneous ICP-OES spectrometer utilizing a vacuum type Echelle optical system in combination with a large scale CCD detector designed for stable performance over extended periods. The ICPE-9000’s innovative Mini Torch minimizes cost by reducing consumption of argon gas to half that of conventional torches. The ICPE-9000 features easy-to-use, innovative ICPEsolution Software, which offers such features as a Method Development Assistant and a Diagnosis Assistant and easily handles automatic wavelength optimization as well as interference corrections.

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Mass SpectrometryMass spectrometry (MS) is a powerful analytical technique used to identify and quantify molecules based on the mass-to-charge ratio of gas-phase ions. It provides detailed information about the structure, composition, and properties of compounds and is widely used across fields such as environmental monitoring, materials science, drug discovery and development, food and beverage testing, and wider chemical research. Key MS techniques include tandem mass spectrometry (MS/MS), liquid chromatography–mass spectrometry (LS-MS) and inductively coupled plasma (ICP-MS). Choosing from these wide range of techniques and technologies can be a daunting task, so keep up to date with scientific applications, performance expectations, and customer reviews here all in one place. Visit our product directory to receive quotes direct from the manufacturer. Sample PreparationSample preparation can improve the quality and speed of separation techniques. Products to assist sample preparation include filtration equipment, evaporators, membranes and sieves.AutomationAutomation in laboratories and manufacturing processes enhances efficiency, precision, and scalability by reducing the need for manual intervention. It plays a critical role in improving productivity, minimizing human error, and accelerating workflows in fields like diagnostics, drug development, and industrial testing. Automation technologies include robotic systems, automated liquid handlers, and process control systems that streamline complex tasks and ensure consistent, reproducible results. Explore our peer-reviewed product directory to discover the best automation solutions, compare options, read user reviews, and get prices directly from manufacturers.Targeted ScreeningTrace Level ImpuritiesTrace level impurities refer to low concentrations of unwanted substances found in chemicals, pharmaceuticals, and other products. Detecting and removing these impurities is crucial for product safety and regulatory compliance. Explore trace impurity analysis tools in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.Elemental AnalysisElemental analysis involves determining the elemental composition of a sample, often used in environmental, pharmaceutical, and material sciences. Techniques like ICP-MS, X-ray fluorescence, and atomic absorption spectroscopy allow precise quantification of elements such as metals and nonmetals in complex matrices. Browse our peer-reviewed product directory to find the best elemental analysis tools, compare products, check reviews, and get pricing directly from manufacturers.PharmaceuticalsPharmaceuticals are medicinal drugs used in healthcare to diagnose, prevent, cure and treat illnesses. Pharmaceuticals that are excreted after use appear in wastewater and can have detrimental effects on the environment.