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Single-molecule Super-resolution Microscope


Direct Stochastic Optical Reconstruction Microscopy (dSTORM) is a form of Single-Molecule Localization Microscopy (SMLM) that enables super-resolution imaging beyond the diffraction limit of conventional light microscopy. It induces fluorescent dyes to randomly switch between fluorescent and non-fluorescent (dark) states. By capturing thousands of frames and precisely localizing individual molecules in each frame, dSTORM reconstructs a high-resolution image with nanometer-scale accuracy.
The Nanoimager is the world’s first desktop super-resolution fluorescence microscope, designed to bring advanced imaging capabilities to any laboratory setting. Leveraging dSTORM technology, it achieves spatial resolution down to 20 nanometers, enabling detailed visualization of molecular structures and interactions.
Nanoimager supports a wide range of laboratory applications, including:
- Extracellular vesicle (EV) research
- Virus and vaccine development
- Neuroscience
- Protein interactions and molecular dynamics
- Protein can be reverse-purified or subject to direct functional analysis
- Live-cell and 3D imaging
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Automated Sample Preparation Platform


An advanced automation platform designed to streamline sample preparation for the Nanoimager super-resolution microscope. It significantly enhances experimental throughput while minimizing manual intervention.
- High Throughput: Capable of processing up to 12 samples within 4.5 hours, reduces manual labor by approximately 85%
- High Flexibility: Supports over 35 experimental configurations, supports protocols to a wide range of biological model
- Real-Time Analysis: Facilitates dynamic observation of biological processes such as drug delivery, molecular binding, and cellular interactions, providing immediate experimental outcomes
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