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                "- Our research requires accurate measurements of the molecular mass of biological macromolecules and particles. Contrary to other techniques, such as size-exclusion chromatography (SEC) and multiple angle light scattering (MALS), the new system will allow us to measure the molecular mass independently of the hydrodynamic radius of the samples, thus enabling the differentiation between samples of similar size but different mass, e.g., unloaded gene delivery viral particles.",
                "- Our research requires the exact characterization of complex samples. As the instrument measures scattering of individual molecules, it provides direct information about sub-populations, which is not possible in other techniques (e.g., SPR, BLI, DLS). Consequently, no extra chromatography step is required prior to the measurements. ",
                "- Our research requires minimal sample amount at pM to nM range as most samples are recombinant proteins that are difficult to purify at high quantities. The required sample concentration is within the sensitivity range of the instrument. Moreover, the required sample volume for each measurement is a few microlitres, bringing the needed amount of the sample to nanogram levels (instrument sensitivity <<1ng).",
                "- The instrument carries out all the required measurements in the absence of any labelling or protein modifications, thus no prior \u2018sample engineering\u2019 is needed.",
                "- Our measurements require high spatial resolution (FWHM) - at least 25 kDa at 66 kDa and 60 kDa at 660 kDa.",
                "- Our research requires screening of various conditions. The instrument offers automated sample measurements with precise (\uf0b12%) and efficient mass characterization of 14 samples automatically measured and analyzed within 1 hr. ",
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