A biosensor substrate enables simultaneous surface plasmon resonance binding detection and spectroscopic biological activity measurement.
A method combines virus inactivation and protein purification using acidic negatively charged particles.
Auxiliary channel increases hydraulic resistance to slow fluid flow, enabling spatial patterning of organoids without complex system structures.
A biological reactor converts electricity into methane using methanogenic microorganisms.
Modular cell-free bioreactor produces therapeutic proteins via transcription and translation, eliminating centralized facility delays.
A tissue processor manages reagent resources through group, type, and station nominations to optimize scheduling.
Thin-form-factor RFID tags enable automatic petri-dish tracking without manual intervention, resolving interference from bulky traditional tags.
A rigid cartridge with integrated sensors and connectors enables automated cell therapy production workflows.
Microorganism autolysis separates lipid and non-lipid layers in biodegradable substrates for direct biofuel processing.
A permanent magnet isolates fluorescently labeled target cells in a blood sample for direct imaging and enumeration.
A bioreactor vessel window serves as a foam contact surface coupled to an optical detection unit for reliable sensing.
Confined surface gain reduces background fluorescence and improves detection sensitivity in optofluidic biosensing.
A computer-implemented method adapts production-scale cell culture control by screening media lots in micro-scale vessels to select suitable process set points.
Human SMS cell-derived extracellular matrix replaces murine sources to eliminate species mismatch risks while accelerating endothelial cell reorganization.
Disposable magnetic cell isolation holder positions passages at specific locations within a magnetic field generator to accommodate varying particle sizes.
A microfluidic device replaces bulky pump chambers with a surface gas generation layer, simplifying production and enabling downsizing.
A culture device embeds immune cells in a matrix for continuous perfusion to maintain physiological conditions.
Radial vanes on a disk defoamer remove foam via centrifugal force, solving limited effective area and heavy structure issues.
Electroporation replaces complex genetic manipulation with physical energy application to efficiently generate pluripotent cells.
Chemical cross-linking stabilizes non-covalent protein complexes for high-mass MALDI mass spectrometry analysis, enabling accurate drug effect quantification.
Segmented steps in the separation element isolate stem cells from bulk cord blood, reducing storage volume and cost while maintaining high purity.
Magnetic particles drive circulating flow patterns within a liquid film to collect suspensions, eliminating contamination risks from prefabricated microchips.
A coupling device with integrated heating and separating components automates sample access assembly formation.
Periodic reverse flushing removes protein aggregates from aseptic filters, preventing clogging and maintaining sample integrity.
Capillary gaps distribute reagents evenly across slides while a heating system maintains consistent temperature without manual transfer.
A poly-cationic polyamide coating selectively retains polynucleotides from biological samples while allowing inhibitors to pass through.
A two-stage anaerobic digester uses a raceway configuration to circulate digestate, enabling efficient processing of high solids feedstock.