Abstract:
Disclosed is a microfluidic device that includes a sealed body having an inlet port and an outlet port; and a plurality of channels formed in the sealed body, each of the channels being in fluid communication between the inlet port and the outlet port, the channels being defined by a support material and a nanoporous or microporous membrane connected to the support material; and a chamber inside the sealed body separated from the fluid communication of the inlet port, the plurality of channels, and the outlet port via the nanoporous or microporous membranes of the channels. Use of these devices for filtration of fluids, including for dialysis, is also disclosed.
Abstract:
Methods for preparing low volume microfluidic devices are disclosed along with the resulting microfluidic devices, the use of these microfluidic devices, and kits for forming the microfluidic devices of the present invention.
Abstract:
Methods for preparing low volume microfluidic devices are disclosed along with the resulting microfluidic devices, the use of these microfluidic devices, and kits for forming the microfluidic devices of the present invention.