SAMPLE PREPARATION DEVICES AND METHODS FOR PROCESSING ANALYTES
Disclosed herein are sample preparation devices, such as pipette tips useful for associating and releasing biological molecules.
1 . (canceled)
2 . A polymer pipette tip device which comprises:
a continuous and tapered polymer wall defining a first void and a second void located at opposite termini, wherein the first void is a slot and the cross section of the second void is substantially circular;
a plug in contact with the inner surface of the wall and disposed within the pipette tip device between the slot and the second void, which plug is constructed from a porous material; and
beads located within the interior of the pipette tip device between the first plug and the slot, wherein:
the slot width is less than the bead diameter,
the slot and plug contain the beads within the pipette tip device, and
the beads interact with an analyte under analyte interaction conditions.
3 . The polymer pipette tip device of claim 2 , wherein the beads can reversibly interact with the analyte.
4 . The polymer pipette tip device of claim 2 , wherein the beads can interact with a biomolecule.
5 . The polymer pipette tip device of claim 4 , wherein the biomolecule comprises a nucleic acid, peptide, polypeptide, or cell.
6 . The polymer pipette tip device of claim 2 , wherein the beads comprise silica gel, glass, nylon, Sephadex®, Sepharose®, cellulose, a metal surface, a magnetic material, a plastic material, Wang resin, Merrifield resin or Dynabeads®.
7 . The polymer pipette tip device of claim 2 , wherein the beads are free beads.
8 . The polymer pipette tip device of claim 2 , wherein the beads are sintered.
9 . The polymer pipette tip device of claim 2 , wherein the beads comprise hydrophobic material.
10 . A method for isolating an analyte, which comprises:
contacting an analyte with a polymer pipette tip device under conditions in which the analyte associates with the beads; and
exposing the beads to conditions that elute the analyte from the insert;
which polymer pipette tip device comprises:
a continuous and tapered polymer wall defining a first void and a second void located at opposite termini, wherein the first void is a slot and the cross section of the second void is substantially circular;
a plug in contact with the inner surface of the wall and disposed within the pipette tip device between the slot and the second void, which plug is constructed from a porous material; and
beads located within the interior of the pipette tip device between the first plug and the slot, wherein:
the slot width is less than the bead diameter,
the slot and plug contain the beads within the pipette tip device, and
the beads interact with an analyte under analyte interaction conditions.
11 . The method of claim 10 , comprising exposing the beads to conditions that selectively remove non-analyte components associated with the beads before exposing the insert to conditions that elute the analyte.
12 . The method of claim 10 , wherein the analyte comprises a biomolecule.
13 . The method of claim 12 , wherein the biomolecule comprises a nucleic acid, peptide, polypeptide, or cell.
14 . The method of claim 10 , wherein the beads comprise silica gel, glass, nylon, Sephadex®, Sepharose®, cellulose, a metal surface, a magnetic material, a plastic material, Wang resin, Merrifield resin or Dynabeads®.
15 . The method of claim 10 , wherein the beads are free beads.
16 . The method of claim 10 , wherein the beads are sintered.
17 . The method of claim 10 , wherein the beads comprise hydrophobic material.
18 . A method for attaching a pipette tip extension device to a pipette tip, comprising:
contacting a pipette tip comprising a fluid dispensing portion with a pipette tip extension device comprising:
a continuous and tapered polymer wall defining a first void and a second void located at opposite termini, wherein the first void is a slot and the cross section of the second void is substantially circular,
a plug in contact with the inner surface of the wall and disposed within the pipette tip device between the slot and the second void, which plug is constructed from a porous material, and
beads located within the interior of the pipette tip device between the first plug and the slot, wherein:
the slot width is less than the bead diameter,
the slot and plug contain the beads within the pipette tip device, and
the beads interact with an analyte under analyte interaction conditions;
applying pressure between the pipette tip and the pipette tip extension device, and
optionally twisting the pipette tip extension device with reference to the pipette tip,
whereby the pipette tip extension device is seated onto the fluid dispensing portion of the pipette tip, and
wherein the continuous and tapered polymer wall at the first void of the pipette tip extension device is in contact with the fluid delivery terminus of a pipette tip.
19 . The method of claim 18 , wherein the pipette tip extension device is contacted with a fluid comprising an analyte.
20 . The method of claim 18 , wherein the beads comprise silica gel, glass, nylon, Sephadex®, Sepharose®, cellulose, a metal surface, a magnetic material, a plastic material, Wang resin, Merrifield resin or Dynabeads®.
21 . The method of claim 18 , wherein the beads are free beads.