Patent classifications
B01L2200/0615
System and method for processing and detecting nucleic acids
A system and method for processing and detecting nucleic acids from a set of biological samples, comprising: a capture plate and a capture plate module configured to facilitate binding of nucleic acids within the set of biological samples to magnetic beads; a molecular diagnostic module configured to receive nucleic acids bound to magnetic beads, isolate nucleic acids, and analyze nucleic acids, comprising a cartridge receiving module, a heating/cooling subsystem and a magnet configured to facilitate isolation of nucleic acids, a valve actuation subsystem configured to control fluid flow through a microfluidic cartridge for processing nucleic acids, and an optical subsystem for analysis of nucleic acids; a fluid handling system configured to deliver samples and reagents to components of the system to facilitate molecular diagnostic protocols; and an assay strip configured to combine nucleic acid samples with molecular diagnostic reagents for analysis of nucleic acids.
PIPETTE TIP AND LIQUID INJECTION METHOD
A pipette tip includes a body and projections. In the body, a flow passage in which liquid from the syringe flows and an ejection opening that ejects the liquid, which has flowed through the flow passage, to the outside are formed. The ejection opening is formed in a distal end portion. The projections are provided on the distal end portion and protrude from a region around the ejection opening in the ejection direction of liquid. The projections are partially disposed around the central axis of the body. Even in a case where a residual droplet adheres to the ejection opening, the residual droplet does not adhere to an injection opening of a sample container, because the projections guard a region around the residual droplet.
SYSTEMS AND METHODS FOR CONTROLLING FLUID FLOW BETWEEN MULTIPLE CHAMBERS OF A TESTING DEVICE
A device for performing an assay includes a housing, an elongated member, and a vent. The housing has a first end and a second end. The housing defines a first opening at the first end, a first chamber, and a second chamber. The first chamber is fluidly connected to (i) the second chamber, and (ii) an exterior of the housing via the first opening. The elongated member is configured to be received through the first opening such that the elongated member is least partially disposed within the first chamber. The vent is configured to aid in controlling flow of a fluid from the first chamber of the housing to the second chamber of the housing.
MICROFLUIDIC CARTRIDGE FOR PROCESSING AND DETECTING NUCLEIC ACIDS
A microfluidic cartridge, configured to facilitate processing and detection of nucleic acids, comprising: a top layer comprising a set of cartridge-aligning indentations, a set of sample port-reagent port pairs, a shared fluid port, a vent region, a heating region, and a set of Detection chambers; an intermediate substrate, coupled to the top layer comprising a waste chamber; an elastomeric layer, partially situated on the intermediate substrate; and a set of fluidic pathways, each formed by at least a portion of the top layer and a portion of the elastomeric layer, wherein each fluidic pathway is fluidically coupled to a sample port-reagent port pair, the shared fluid port, and a Detection chamber, comprises a turnabout portion passing through the heating region, and is configured to be occluded upon deformation of the elastomeric layer, to transfer a waste fluid to the waste chamber, and to pass through the vent region.
MICROFLUIDIC CARTRIDGE FOR PROCESSING AND DETECTING NUCLEIC ACIDS
A system, configured to facilitate processing and detection of nucleic acids, the system comprising a process fluid container and a cartridge comprising: a top layer, a set of sample port-reagent port pairs, a shared fluid port, a vent region, a heating region, and a set of detection chambers; an intermediate substrate, coupled to the top layer comprising a waste chamber; an elastomeric layer, partially situated on the intermediate substrate; and a set of fluidic pathways, each formed by at least a portion of the top layer and a portion of the elastomeric layer, wherein each fluidic pathway is fluidically coupled to a sample port-reagent port pair, the shared fluid port, and a detection chamber, comprises a portion passing through the heating region, and is configured to be occluded upon deformation of the elastomeric layer, to transfer a waste fluid to the waste chamber, and to pass through the vent region.
Pipetting unit and method of pipetting a test liquid
A pipetting unit and a method of using the pipetting unit for pipetting a volume V1 of test liquid for carrying out an in vitro diagnostic test are presented. The method comprises dipping a nozzle of a pipetting unit into a test liquid and aspirating a volume V4 of the test liquid larger than the volume V1 required for carrying out the test. The method further comprises dipping the pipetting unit into a wash liquid and dispensing a volume V2 equal or smaller than V4 minus V1 of the test liquid into the wash liquid. The method further comprises dipping the pipetting unit into a reaction liquid and dispensing the volume V1 of test liquid required for the test.
Microfluidic cartridge for processing and detecting nucleic acids
A microfluidic cartridge, configured to facilitate processing and detection of nucleic acids, comprising: a top layer comprising a set of cartridge-aligning indentations, a set of sample port-reagent port pairs, a shared fluid port, a vent region, a heating region, and a set of Detection chambers; an intermediate substrate, coupled to the top layer comprising a waste chamber; an elastomeric layer, partially situated on the intermediate substrate; and a set of fluidic pathways, each formed by at least a portion of the top layer and a portion of the elastomeric layer, wherein each fluidic pathway is fluidically coupled to a sample port-reagent port pair, the shared fluid port, and a Detection chamber, comprises a turnabout portion passing through the heating region, and is configured to be occluded upon deformation of the elastomeric layer, to transfer a waste fluid to the waste chamber, and to pass through the vent region.
MICROFLUIDIC DEVICE WITH ANTI-WETTING, VENTING AREAS
A microfluidic device and method for fabrication includes a microfluidic channel that has a closed portion, which comprises: a liquid pathway formed by a wetting area; and an anti-wetting area extending along and contiguously with the liquid pathway. The anti-wetting area is configured so as to provide a vent to evacuate gas along the anti-wetting area.
MICROFLUIDIC DEVICE WITH ANTI-WETTING, VENTING AREAS
A microfluidic device and method for fabrication includes a microfluidic channel that has a closed portion, which comprises: a liquid pathway formed by a wetting area; and an anti-wetting area extending along and contiguously with the liquid pathway. The anti-wetting area is configured so as to provide a vent to evacuate gas along the anti-wetting area.
MICROFLUIDIC CARTRIDGE FOR PROCESSING AND DETECTING NUCLEIC ACIDS
A microfluidic cartridge, configured to facilitate processing and detection of nucleic acids, comprising: a top layer comprising a set of cartridge-aligning indentations, a set of sample port-reagent port pairs, a shared fluid port, a vent region, a heating region, and a set of Detection chambers; an intermediate substrate, coupled to the top layer comprising a waste chamber; an elastomeric layer, partially situated on the intermediate substrate; and a set of fluidic pathways, each formed by at least a portion of the top layer and a portion of the elastomeric layer, wherein each fluidic pathway is fluidically coupled to a sample port-reagent port pair, the shared fluid port, and a Detection chamber, comprises a turnabout portion passing through the heating region, and is configured to be occluded upon deformation of the elastomeric layer, to transfer a waste fluid to the waste chamber, and to pass through the vent region.