150 Beach Road, #25-02 Gateway West, Singapore 189720.
150 Beach Road, #25-02 Gateway West, Singapore 189720.

BioPro HIC BF

BioPro HIC BF

YMC BioPro HIC BF is a hydrophobic interaction chromatography (HIC) column with butyl (C4) stationary phase bonded to hydrophilic polymer resin. BioPro HIC BF is useful for the separation of low hydrophobic proteins as well as purifying proteins such as antibody without denaturation.

BioPro HIC BF

YMC BioPro HIC BF is a hydrophobic interaction chromatography (HIC) column with butyl (C4) stationary phase bonded to hydrophilic polymer resin. BioPro HIC BF is useful for the separation of low hydrophobic proteins as well as purifying proteins such as antibody without denaturation.

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Specification:

Base
Hydrophilic polymer
Base
Hydrophilic polymer
Stationary phase
Butyl (C4)
Stationary phase
Butyl (C4)
Particle size
4 μm
Particle size
4 μm
Pore size
Non-porous
Pore size
Non-porous
Usable pH range
2 ~ 12
Usable pH range
2 ~ 12
Temp. range
10-60°C
Temp. range
10-60°C

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

Higher hydrophobicity of HIC stationary phase

BioPro HIC BF shows stronger retention of proteins due to higher hydrophobicity of its stationary phase compared to other commercially available HIC columns. This indicates that BioPro HIC BF could be preferred for the separation of low hydrophobic proteins.

Column 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0) containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
0%B (0-1 min), 0-100%B (1-11 min), 100%B (11-15 min)
Flow rate 0.5 mL/min
Temperature 25ºC
Detection UV at 280 nm
Injection 15 µL
Sample 1. Adalimumab (0.5 mg/mL)
2. Trastuzumab (0.5 mg/mL)

 

Analysis of papain-digested oxidized Mab

The papain-digests of NISTmAb samples with and without the oxidization were analyzed by using BioPro HIC BF column. The Fab and Fc fragments were characterized from the chromatogram of the papain-digested MAb. In the chromatogram of the papain-digested oxidized MAb, the multiple peaks appeared at earlier elution times compared to the peaks assigned to the Fab and Fc fragments, and would be corresponding to the oxidized fragments. According to the previous report*, the oxidized fragments elute earlier than the non-oxidized ones.

 

*Journal of Chromatography A, 2008, 1214, 81-89

Column BioPro HIC BF 4 µm, 100 X 4.6 mmI.D.
Eluent A) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
containing 2.0 M (NH4)2SO4
B) 100 mM NaH2PO4-Na2HPO4 (pH 7.0)
40-80%B (0-10 min)
Flow rate 1.0 mL/min
Temperature 25°C
Detection UV at 280 nm
Injection 5 µL (0.5 mg/mL)

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150 Beach Road, #25-02 Gateway West, Singapore 189720.

Tel : +65 6392 2643

Fax : +65 6392 2856

Email : sales@ymc.sg

YMC Singapore Tradelinks Pte. Ltd.

150 Beach Road, #25-02 Gateway West, Singapore 189720.

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