Analytische Ultrazentrifuge (Optima AUC)
ideal for characterizing dispersed macromolecules and nanoparticles
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For almost a century, analytical ultracentrifugation (AUC) has been one the most versatile and accurate methods available to characterize proteins, macromolecules, nanoparticles and other heterogeneous solutions. It provides data for the determination of molecular weights and the weights of complexes as well as size, size distribution, stoichiometry and many thermodynamic parameters. This technology delivers a wide spectrum of data for molecules and particles moving freely, either in the formulation buffer or solvent.
As an orthogonal method, analytical ultracentrifugation provides further information for methods such as size-exclusion chromatography (HPLC-SEC), light scattering methods, mass spectrometry or electron microscopy, thus allowing for a highly optimized method validation. The Optima AUC with its new multi-wavelength absorbance optics, resulting from decades of innovation and research at Beckman Coulter, has led to an entirely new generation of analytical ultracentrifuges.
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Analytical ultracentrifuges: Analytische Ultrazentrifuge (Optima AUC)
ideal for characterizing dispersed macromolecules and nanoparticles
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Topic world Protein analytics
Protein analytics provides a deep insight into these complex macromolecules, their structure, function and interactions. It is essential for discovering and developing biopharmaceuticals, understanding disease mechanisms, and identifying therapeutic targets. Techniques such as mass spectrometry, Western blot and immunoassays allow researchers to characterize proteins at the molecular level, determine their concentration and identify possible modifications.
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Topic world Protein analytics
Protein analytics provides a deep insight into these complex macromolecules, their structure, function and interactions. It is essential for discovering and developing biopharmaceuticals, understanding disease mechanisms, and identifying therapeutic targets. Techniques such as mass spectrometry, Western blot and immunoassays allow researchers to characterize proteins at the molecular level, determine their concentration and identify possible modifications.