Purification of immunoglubin by ion exchange chromatography Bahiya Osrah

Slides:



Advertisements
Similar presentations
Chromatography Components stationary phase (eg., solid matrix) mobile phase (eg., solvent) solute Solutes which interact differently with the stationary.
Advertisements

Hemoglobin A2.
Sample clean-up (MALDI)
PURIFICATION OF GFP USING HIC CHROMATOGRAPHY. Chromatography  A technique used to separate molecules based on how they tend to cling to or dissolve in.
Protein Purification Molecular weight Charge Solubility Affinity.
Chromatography for Protein purification 1
HPLC Analysis of Ionic Compounds Nicholas H. Snow Seton Hall University.
Ion Exchange Laboratory. Today’s Schedule Pre-lab discussion Ion Exchange and Spectrophotometer Ion exchange experiment.
ION EXCHANGE CHROMATOGRAPHY PREPARED BY- MD.MARUF HASSAN.
Standard Methods for the Examination of Water and Wastewater, 21st Ed
1. 2  A form of “partition chromatography”.  Stationary phase is a porous gelatinous matrix (in the form of beads).  Sample components enter pores.
Chromatography Russian scientist Tswett in 1906 used a glass columns packed with finely divided CaCO3 to separate plant pigments extracted by hexane. The.
Protein Purification and Analysis Solubility of proteins important for purification: 60-80% soluble, 20-40% membrane Size of proteins varies Some proteins.
Created with MindGenius Business 2005® Ion Exchange Chromatography Ion Exchange Chromatography Principles Small K means low affinity – so low RT K is often.
Ion Exchange Chromatography. Cation exchangers They contain immobilized anionic groups that bind to cations. e.g. a matrix with carboxymethyl group(CM)
Cation Exchange Column CHEE450 Leslie Davis. Cation Exchange Following removal of biomass – processes supernatant Separate insulin precursor from glucose,
Separation of proteins by ion exchange chromatography
Chromatography Chapter 4 1 Dr Gihan Gawish. Definition Dr Gihan Gawish  Ion-exchange chromatography (or ion chromatography) is a process that allows.
Ion Exchange Chromatography. Some ion exchangers are regarded as weak, that is functioning best over a comparatively narrow pH range, while others.
Ion Exchange Laboratory
B IOCHEMICAL INSTRUMENTAL ANALYSIS -11 Dr. Maha Al-Sedik.
Gel filtration chromatography y/college/voet/ /animat ed_figures/ch05/f5-6.html.
Chapter 4-1 Chromatography
Chapter Five Protein Purification and Characterization Techniques
Types of Mechanism in the Chromatography
Magnet Analytical Chemistry Unit 4
Protein Purification and Analysis Solubility of proteins important for purification: 60-80% soluble, 20-40% membrane Size of proteins varies Some proteins.
Analysis of Proteins and Peptides Amino acid composition Molecular weight Isoelectric point Subunit structure Prosthetic groups Solubility Biological activity.
BIOCHEMICAL METHODS USED IN PROTEN PURIFICATION AND CHARACTERIZATION
Ion Exchange Laboratory
Bringing Biotech Product to Market Chapter 9. Objectives Purifying product Define chromatography and distinguish between planar and Column chromatography.
Lab 6 Salt fractionation In aqueous environments salt ions interact strongly with their complementary charge on a water molecule If the concentration of.
Ion exchange chromatography
CHROMATOGRAPHY (DEMONSTRATION) Mrs. Chaitali Maitra
CHROMATOGRAPHY. A process to separate molecules to purify them.
High Performance Liquid Chromatography. The chromatogram is a record of detector output Vs time as the analyte passes through the chromatography.
Principle of separation
Chapter 23 An Introduction to Analytical Separations.
HPLC.
Exam next week: Chapter 4?
Biochemical instrumental analysis - 11 Dr. Maha Al-Sedik 2015 CLS 332.
- based on selective non-covalent interaction between an analyte and specific molecules. - is often used in biochemistry in the purification of proteins.
Protein Purification by Ion Exchange Chromatography
Introduction to Instrumental Analysis - Chromatography
T.A Nouf Alshareef KAU-Faculty of Science- Biochemistry department Analytical biochemistry lab (Bioc 343) 2012 False colour scanning.
Desai Chandni  In ion exchange chromatography, retention is based on the attraction between the solute ions and charged sites bound to stationary phase.
Ion exchange chromatography
Food Analysis Lecture 18 (03/27/2012) Basic Principles of Chromatography (3) Qingrong Huang Department of Food Science Read Material: Chapter 27, page.
BY G.SHRAVANI ION EXCHANGE AND GEL PERMEATI ON CHROMATOGRAPHY 1G.SHRAVANI.
Lab 6 Ig Purification What will the Ig be used for? How pure does it need to be? What is the source of the antibody (serum, ascites, cell culture supernatant)
Chromatography PlanarColumn Paper TLC (Thin layer chromatography)
Principles of chromatography
 Laboratory technique for the Separation of mixtures  Chroma -"color" and graphein - "to write”.  Colour bands - separation of individual compounds.
Chromatography 1 Lecture 10 An introduction. What is CHROMATOGRAPHY ? Chromato g raphy.
Purification Of Proteins.
Ion Exchange Chromatography
Ion Exchange Chromatography
Gel Filtration Chromatography.
DNYANASADHANA COLLEGE, THANE
Biophysical Tools '04 - Chromatography
Dnyanasadhana College, Thane.
Practical Clinical Hematology
Separation of Molecules by Ion Exchange Chromatography
Ion Exchange Laboratory
Ion exchange chromatography By Mennatallah Abdelshaheed.
Gel Filtration Chromatography.
Separation of Molecules by Ion Exchange Chromatography
M.S COLLEGE OF ARTS, SCIENCE, COMMERCE AND B.M.S
Experiment 3 Separation of proteins by Anion exchange chromatography
Presentation transcript:

Purification of immunoglubin by ion exchange chromatography Bahiya Osrah

Principle Technique or process used in seperation of ions and polar molecules based on their affinity to ion exchanger Separation based on charge (competitive) Aim: purification and separation of protein (charged molecules or ionizable)

Prepare anion exchanger column

Your colors will be different!

Components of ion exchange chromatography 1.Sample 2.Mobile phase (carries the smple onto column ex: Tris HCL buffer or buffer salin solution 3.Stationary phase (agarose or cellulose beads with covalently bonded functional groups (+ve or –ve) depends on the sample to be separated ex: DEAE (cross linked dextran gel) 4.Column 5.Analyte ( individually seperated components)

Principle Ion exchange chromatography retains analyte molecules on the column based on ionic interaction The stationary phase surface displays ionic functional groups that interacts with analyte ions with opposite charge The elution occurs by increasing the concentration of similary charged molecules that will displace the analyte ions from the stationary phase (competitive)

Types of Ion Exchange chromatography Cation exchange to separate positive charged cations Stationary phase: -ve Elution: increase PH  to make the analyte more negative  elute Increase Salt conc (+ve) to compete with the analyte Anion exchange To separate negative charged anions Stationary phase: +ve Elution: decrease PH  to make the analyte more positive  elute Increase salt conc (-ve) to compete with the analyte

Types of Ion Exchange chromatography

+ve net charge-ve net charge PH< 7 Acidic PH> 7 Basic Some Proteins net charge with different PH PH effect

Salt effect

Anion exchange

Procedure Step1: preparation of stationary phase 2gm of DEAE sephadex + 70ml water Adjust PH=7 Add 1ml of NAOH + 1ml water  to remove any negative molecules attached to the matrix Add tris HCL buffer Adjust PH=8  to make the stationary phase +ve

Procedure Step2: separation of immunoglobulin Sample: serum 1.Add the DEAE to 10ml syringe 2.Add 1 ml of sample to the DEAE 3.Add 12.5 ml of Tris-HCl buffer 4.Collect 5 fractions (2.5 ml for each tubes) 5.Add different concentrations of salt (sodium chloride) from low  high 6.Collect 10 fractions for each concentration

Increasing salt concentration Aim: to compete with the –ve charged analyte and spead up the elution 5 tubes 10 tubes  20mmol/l 10 tubes  50mmol/l 10tubes  100 mmol/l 10tubes  150 mmol/l 10 tubes  200mmol/l  take 0.5ml sample  biuret  Incubate for 15 min at 37C  Read Abs at 540nm

Anion exchange

Results Tube number Abs

Readings of ELISA StandardAbsorbance 2000 mg/ml sample ve high ve low ve