MULTIPLE WELL DEVICE AND METHOD OF USE
A multiple well device for processing fluid samples is provided, comprising a plate including a plurality of wells, each well including a first sub-well and a second sub-well, separated by an individual dialysis membrane; each individual dialysis membrane having a top end and a bottom end, having a continuous taper from the top end to the bottom end, each first sub-well and each second sub-well having an upper end and a lower end, and side walls, wherein one side wall is a common side wall shared by the first sub-well and the second sub-well, the common side wall having a continuous tapered cut-out with the individual dialysis membrane fluid-tightly sealed in the continuous tapered cut-out.
1 . A multiple well device for processing fluid samples comprising:
a plate including a plurality of wells, each well including a first sub-well and a second sub-well, separated by an individual dialysis membrane;
each individual dialysis membrane having a top end and a bottom end, having a continuous taper from the top end to the bottom end,
each first sub-well and each second sub-well having an upper end and a lower end, and side walls, wherein one side wall is a common side wall shared by the first sub-well and the second sub-well, the common side wall having a continuous tapered cut-out with the individual dialysis membrane fluid-tightly sealed in the continuous tapered cut-out.
2 . The multiple well device of claim 1 , wherein the individual dialysis membranes each have a pore size in the range of 75 kDa to 165 kDa.
3 . The multiple well device of claim 1 , wherein the individual dialysis membranes are each polyethersulfone or polysulfone membranes.
4 . A method for equilibrating fluid samples, the method comprising placing fluid samples in a plurality of first sub-wells and second sub-wells in a multiple well device comprising a plate including a plurality of wells, each well including a first sub-well and a second sub-well, each first sub-well and second sub-well being separated by an individual dialysis membrane; each individual dialysis membrane having a top end and a bottom end, having a continuous taper from the top end to the bottom end, each first sub-well and each second sub-well having an upper end and a lower end, and side walls, wherein one side wall is a common side wall shared by the first sub-well and the second sub-well, the common side wall having a continuous tapered cut-out with the individual dialysis membrane fluid-tightly sealed in the continuous tapered cut-out; and, allowing equilibrium between the plurality of first sub-wells and second sub-wells to be reached.
5 . A method for analyzing fluid samples, the method comprising placing fluid samples in a plurality of first sub-wells and second sub-wells in a multiple well device comprising a plate including a plurality of wells, each well including a first sub-well and a second sub-well, each first sub-well and second sub-well being separated by an individual dialysis membrane; each individual dialysis membrane having a top end and a bottom end, having a continuous taper from the top end to the bottom end, each first sub-well and each second sub-well having an upper end and a lower end, and side walls, wherein one side wall is a common side wall shared by the first sub-well and the second sub-well, the common side wall having a continuous tapered cut-out with the individual dialysis membrane fluid-tightly sealed in the continuous tapered cut-out;
allowing equilibrium between the plurality of first sub-wells and second sub-wells to be reached; and,
analyzing the fluid samples in each of the plurality of first sub-wells and second sub-wells.
6 . The multiple well device of claim 2 , wherein the individual dialysis membranes are each polyethersulfone or polysulfone membranes.