Rigaku Analytical Devices Supports Pharmaceutical Industry with Compliance to New Raman Calibration Standards

Progeny™ 1064nm handheld Raman analyzer fully compliant with EP 2.2.48 to support pharmaceutical manufacturers with rapid and reliable raw material identification

31 Mar 2016
Alex Waite
Editorial Assistant

Product news

New regulations came into effect today that set acceptable Raman wavelength shifts and associated tolerances for benchtop and handheld Raman instruments for pharmaceutical applications.

Rigaku Analytical Devices’ Progeny™ 1064nm handheld Raman analyzer is fully compliant with the new calibration standards which were published by the European Pharmacopeia (EP) in Supplement 8.7, Chapter 2.2.48 in October 2015.

The need to manufacture pharmaceutical products faster and more safely combined with the pressure to reduce the costs and comply with rigorous regulatory requirements has contributed to the increasing adoption of handheld Raman for raw material identification. The rise in popularity of the technique resulted in the updates to the standards for acceptable tolerances for handheld Raman instrumentation to ensure a set industry standard for instrument performance. In addition to the new tolerances for polystyrene, paracetamol and cyclohexane, appropriate calibration and system performance tests have also been outlined.

Designed to seamlessly integrate into any work environment, Progeny delivers the industry’s widest and most comprehensive range of material identification in a handheld, sealed platform. Unlike other handheld Raman analyzers, Progeny successfully overcomes sample-induced fluorescence interference with the use of a unique 1064nm excitation laser which also enables measurements to be taken through packaging. The device facilitates regulatory compliance by providing a complete IQ/OQ/PQ protocol package, unique and truly compliant 21 CFR Part 11 digital signatures and an integrated camera for barcode reading to ensure error free data entry.

“The introduction of the new regulations demonstrates the increased awareness and popularity of handheld Raman as a solution for rapid, accurate and reliable raw material identification,” commented Bree Allen, General Manager and Vice President of the Molecular business for Rigaku Analytical Devices, “We are committed to supporting our customers in ensuring compliance with the new standards as well as further educating the pharmaceutical industry on the benefits handheld Raman can deliver. Progeny represents the cutting edge of handheld Raman technology helping customers to achieve leaner manufacturing processes and lower costs per analysis without compromising quality and now is a great time to upgrade outdated Raman systems to achieve a streamlined workflow.”

Rigaku Analytical Devices is offering trade-in discounts for those wishing to upgrade their outdated Raman systems and further information can be found at www.rigakuanalytical.com. To request a copy of Rigaku Analytical Devices’ Compliance Statement, please contact a member of the team via info@rigakuanalytical.com.

Progeny™ Handheld Raman Analyzer

Rigaku Corporation

The new generation in handheld Raman analysis that streamlines your material ID workflow. From the evolution of handheld spectroscopy arrives Progeny – the first handheld Raman analyzer designed to be customizable and flexible for seamless integration into any work environment. Now you can perform lab-quality analysis of the widest range of solids, powders, liquids, and other substances to ensure consumer safety around the globe.Progeny provides the power of Raman spectroscopy in a handheld form with no compromises. You are empowered to choose the complexity of the task at hand. Its unique software design provides articulate communication of simple PASS/FAIL decision or more detailed analysis results for a variety of applications in the lab, in the field, or wherever you need data.Progeny™ Handheld Raman Analyzer Features: Accurately analyze your materials through packaging Minimize the learning curve with a smartphone-inspired interface Increase confidence in your material ID with unparalleled sensitivity Measure a wide range of materials with interference-free data Expand your data transfer flexibility (LIMS, wireless, and docking station)

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Sample PreparationSample preparation can improve the quality and speed of separation techniques. Products to assist sample preparation include filtration equipment, evaporators, membranes and sieves.Raman SpectroscopyRaman spectroscopy is used to discern the vibrational and rotational states of molecules and hence the chemical composition of a sample by measuring the inelastic scattering of monochromatic light. Explore a range of Raman spectrometers, including handheld/portable Raman spectrometers for QC/QA labs and in situ spectrometers for processes. Conduct Raman imaging for microanalysis of mixed samples using a Raman microscope. Raman spectrographs are also available. Find the best Raman spectroscopy products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Sample ManagementSample management systems include sample storage devices such as freezers and plate storers, sample environment enclosures and sample organization, retrieval and sorter systems. Useful system features include high-throughput, automation, robotic arms, automated liquid handling and associated database systems. Accessories in sample management include barcode scanners, heat sealers and tubes.Robotic InstrumentsRobotic instruments can be used for high-throughput automation of many lab processes. Such processes use instruments for assays like cell based assays and ELISA, for sample preparation like shakers, centrifuges and incubators, and for analysis such as sequencing and western blot analyzers. Useful features of robotic instruments include speed, reproducibility, barcode readers, software and automation.Particle CharacterizationParticle characterization instruments are used to determine particle size distribution, shape, surface area, zeta potential, density and porosity of particles and materials. Multiple tecchniques are available for determining particle size, shape and count including dynamic light scattering (DLS), laser diffraction, electrozone (Coulter technique), imaging particle analysis and single particle optical sensing. Determine the density of your material with a gas pycnometer or examine its surface area and porosity with gas adsorption analyzers and mercury porosimeters. Find the best particle characterization instruments in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Non-Destructive TechniquesNon-destructive techniques (NDT) describes a variety of analytical techniques used to evaluate the properties of a material. Common methods include ultrasonic, magnetic-particle, liquid penetrant, radiographic, remote visual inspection (RVI), and eddy-current testing. NDT is regularly used in forensic engineering, civil engineering, mechanical engineering, electrical engineering, systems engineering, aeronautical engineering, and medicine.Surface Area TestingPhysisorption studies fundamental parameters essential for the characterization of materials such as the specific surface area and pore size distribution. Properties such as porosity, strength, hardness, permeability, separation selectivity, corrosion, and thermal stress resistance can all be directly correlated to the porous structure of a material.Compound AnalysisCompound analysis is used to discover specific compounds that could be promising candidates for pharmaceutical use. This potential is identified when compounds have the desired effect, such as interaction with a target protein, during high throughput screening.Compound IdentificationPharmaceuticalsPharmaceuticals 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.Calibration