| Description | Fast, decisive, low-volume particle characterization analysis for biotherapeutic workflows
When you need the flexibility to conduct particle characterization analyses on different types of biologics, including protein and antibody therapeutics, cell therapies, and gene therapies, the Aura+ System Fast, decisive, low-volume particle characterization analysis for biotherapeutic workflows
When you need the flexibility to conduct particle characterization analyses on different types of biologics, including protein and antibody therapeutics, cell therapies, and gene therapies, the Aura+ System has you covered.
Fully configured to support applications across protein, antibody, cell, and gene therapy workflows, Aura+ brings particle characterization to earlier stages of therapeutic development, so you can make better decisions sooner.
Powered by the backgrounded membrane imaging (BMI) and fluorescence membrane microscopy (FMM) technology shared within the Aura family of instruments, Aura+ System enables applications from late discovery to development and manufacturing, enhancing decision-making and accelerating your success.
Features:- Save precious material with just 5 µL sample volume requirements
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Get actionable results from a full 96 well plate of labeled samples to data in just 90 minutes
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Boost efficiency with 96-well membrane plate high-throughput capability
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Gain deeper particle insights with advanced imaging
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Rely only on one platform for proteins, antibodies, and cell and gene therapies development
... Read More | Fast, decisive, low-volume AAV characterization for gene therapy development workflows
Adeno-associated viruses (AAVs) have revolutionized gene therapy product development. With limited material available, allocating valuable samples for aggregate testing may have seemed impractical—until now.
AuraFast, decisive, low-volume AAV characterization for gene therapy development workflows
Adeno-associated viruses (AAVs) have revolutionized gene therapy product development. With limited material available, allocating valuable samples for aggregate testing may have seemed impractical—until now.
Aura GT System is the first and only system designed to detect, count, and characterize AAV particles with just 5 µL. Combining backgrounded membrane imaging (BMI) with fluorescence membrane microscopy (FMM) dual-channel technology, confident decisions can be made earlier—one step closer to success.
Analyze small volumes. Only 5 µL of sample is needed, allowing particle characterization in early phase development.
Characterize and identify viral vectors. Aura GT System distinguishes between capsid and non-capsid aggregates and enables you to confirm whether DNA leakage is the root cause of aggregation straight from the box.
Gain deeper gene therapy understanding. Gain insight with Aura GT System’s duo of BMI and FMM, which distinguish and characterize different serotypes for aggregation and product features for deeper understanding of gene therapy – without tedious, labor-intensive assays.
Features:- Characterize AAV, lentivirus, and other viral vectors across key applications like aggregation and stability.
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Detect, count, and characterize AAV particles with just 5 µL of sample. Identify capsid and DNA aggregates in your gene therapy sample with confidence.
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Make direct comparisons between different formulations, AAV serotypes, storage conditions, and lots.
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Detect and count particles from 1 µm up to 5 mm.
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Save time with measurements under one minute per sample.
... Read More | Delivering up to 4× faster runs with half the sample, the omniDAWN™ multi-angle static light scattering (MALS) photometer is purpose-built for UPLC™ and UHPLC systems for non-destructive absolute molar mass and size characterization of macromolecules and nanoparticles in solution. It provides Delivering up to 4× faster runs with half the sample, the omniDAWN™ multi-angle static light scattering (MALS) photometer is purpose-built for UPLC™ and UHPLC systems for non-destructive absolute molar mass and size characterization of macromolecules and nanoparticles in solution. It provides exceptional sensitivity across a broad range of molecular weights, sizes, and concentrations, supported by advanced analysis modules, practical implementation guides, and intelligent system health monitoring to ensure reliable performance and streamlined workflows.... Read More |