EP2467709A2

Proton concentration topographies, methods and devices for producing the same

Abstract

This record has no abstract on file.

Term

3.9 yearsto projected expiry

Projected expiry 18 August 2030, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

35 claims: 8 independent, 27 dependent

  1. 1
    Claims of equivalent WO 2011021196 A2 WHAT IS CLAIMED IS:1. A device for isoelectric focusing, comprising: a focusing container having a longitudinal axis and configured to contain an electrolyte solution;and at least one electrolysis unit, mounted in a close proximity to said longitudinal axis, each said electrolysis unit being configured to inject an ion flow into said focusing container so as to create a pH gradient having a plurality of steps in said electrolyte solution along said longitudinal axis, each said step having a substantially uniform pH level, said pH gradient being defined by at le^st one pH ramp between every two sequential steps of said plurality of steps.
  2. 11
    A device for isoelectric focusing, comprising:a focusing container configured to contain an electrolyte solution and having first and second ends and a longitudinal axis, said focusing container having at least one slit along said first and second ends;an anode and a cathode respectively mounted at said first end and said second end and configured to pass a first electric current therebetween via said electrolyte solution;at least one bipolar membrane each mounted in a close proximity to said at least one slit;and at least one controllable electrode each mounted in front of a respective at least one bipolar and configured for applying a second electric current on said at least one respective bipolar membrane so as to promote an ion flow via said at least one slit.
  3. 21
    A method for isoelectric focusing, comprising:providing a focusing container having a longitudinal axis;adding an electrolyte solution having a plurality of biomolecules to said container;applying an electric field on said electrolyte solution along said longitudinal axis;and injecting an ion flow in at least one pbint along said longitudinal axis to establish a pH gradient defined by a plurality of steps ih said electrolyte solution so that said plurality of biomolecules accumulate in at least one concentration in proximity to said at least one point, each said step having a substantially uniform pH level, said pH gradient being defined by at least one pH ramp between every two sequential steps of said plurality of steps.
  4. 28
    A method for isoelectric focusing, comprising:providing a container having an electrolyte solution with at least one biomolecule;adding at least one pH indicator to said electrolyte solution;and creating a pH gradient in said electrolyte solution;capturing at least one image of said electrolyte solution;computing at least one color property of at least a segment of said electrolyte solution according to said at least ope image;and calculating at least one pH level in saijd segment according to said at least one color property.
  5. 29
    A device for isoelectric focusing, comprising:a focusing container configured to detachably hold a porous block wetted with electrolyte solution with a mixture of biomolecules along a longitudinal axis thereof;a plurality of electrodes configured to pass a first electric current via said electrolyte solution in said porous block;and at least one electrolysis unit mounted in a close proximity to said longitudinal axis each configured to inject an ion flow into said focusing container so as to change a pH gradient in said electrolyte solution in said porous block;wherein said mixture of biomolecules are arranged in said porous block according to said pH gradient. i
  6. 31
    A method for isoelectric focusing, comprising:placing a porous block wetted with electrolyte solution with a mixture of biomolecules in a focusing container;creating a pH gradient in said electrolyte solution so at to promote a plurality of concentrations of said biomolecules in said porous block;and segmenting said porous block to a plurality of segments each separately containing one of said plurality of concentrations.
  7. 33
    A removable solution cartridge for isqelectric focusing comprising a porous block sized and shaped to fit intb a focusing channel of an isoelectric focusing system and configured to be wetted with an electrolyte solution having a plurality of biomolecules so as to allow a migration of said plurality of biomolecules according to a pH gradient formed in said electrolyte solution.
  8. 35
    A device for separating a mixture of proteins, comprising an electrophoresis container configured to contain an electrolyte solution and said mixture, said electrophoresis container having a longitudinal axis and first and second opposing sides parallel to said longitudinal axis;first and second bipolar membranes each respectively mounted on said first and second sides;at least one electrode for applying an electric field on said electrolyte solution so as to motivate the proteins along said longitudinal axis;wherein one of said first and second bipolar membranes is configured to inject an ion flow into said electrophoresis container so as to' create a pH gradient having a plurality of steps in said electrolyte solution in perpendicular to said longitudinal axis, each said step having a substantially uniform pH level.