Microfluidic chips and assay systems
View Patent ↗The systems and methods described herein include a microfluidic chip having a plurality of microfeatures interconnected to provide a configurable fluid transport system for processing at least one reagent. Inserts are provided to removably interfit into one or more of the microfeatures of the chip, wherein the inserts include sites for interactions with the reagent. As will be seen from the following description, the microfluidic chip and the inserts provide an efficient and accurate approach for conducting parallel assays.
1. A microfluidic device, comprising:
a substrate having a plurality of channels disposed therein, each of the channels having an inlet end and an outlet end;
a plurality of reservoirs of a type capable of holding a material, coupled to at least one of the inlet end and the outlet end of at least one of the plurality of channels;
at least one bi-directional diaphragm pump comprising at least three non-elastomeric membrane-based valve structures;
a distribution valve disposed in fluid coupling with the at least one reservoir and at least one of the inlet ends, wherein the distribution valve is adapted to controllably direct a flow of the material between at least two of the plurality of reservoirs via at least one of the channels coupled to the distribution valve; and
at least one insert configured to inter-fit within at least one of the channels and having a reaction surface for interacting with the material, wherein the insert comprises a membrane.
2. The microfluidic device of claim 1 , wherein the insert further comprises at least one membrane disk disposed over an aperture of an adhesive layer of the membrane.
3. The microfluidic device of claim 2 , wherein the aperture is one of a circular shape and a shape comprising a circular region and two opposing rectangular regions open to the circular region.
4. The microfluidic device of claim 2 , wherein the membrane disk is applied with at least one of a chemical agent and a biological agent.
5. The microfluidic device of claim 2 , wherein the membrane disk is made from one of nitrocellulose, PVDF, polystyrene, and nylon.