DRUGS
IgG CE-Ledif
275 nm
AN 2.001

Monoclonal Antibodies (mAbs) Analysis

Pharmaceutical Antibodies are therapeutics that play an important role in controlling a broad range of diseases such as cancer, allergy, inflammation, infectious and autoimmune diseases. Monoclonal antibodies have become a fast-growing class of biopharmaceutical products.

To support analytical characterization in process development and quality control of therapeutic antibodies, capillary electrophoresis-sodium dodecyl sulfate (CE-SDS) has been recognized as an important tool in place of SDS-Page because of the ease of use and the ability to automate.

The use of 5-carboxytetramethylrhodamine succinimidyl ester (5-TAMRA.SE) and 3-(2-furoyl)-quinoline-2 carboxaldehyde (FQ) as derivatizing agents improves the sensitivity and the reproducibility of the quantification.

FQ Derivatization Method

FQ (λmax. Exc.: 480nm; λmax. Emis.: 590nm) is a fluorogenic reagent: it becomes fluorescent only upon reaction with a primary amine. 

The method of derivatization is rapid and no purification after labeling is necessary.

Instruments

Capillary electrophoresis:Agilent Technologies 7100 CE

Detector: Picometrics ZETALIF LED with 480nm/30nm LED

Sample

Human Ig labeled with FQ

Labeling

rMAb (2mg/mL) was mixed in 35 µL of 0.1 M citrate-phosphate (pH 6.5), 2% SDS, 10 mM  NEM, 1 mM KCN, and 25 nmol FQ;

Labeling reactions were incubated for 5 min at 75℃

Method

– Capillary: 33 cm x 50 µm ID (effective length 19 cm)

– Buffer of commercial Beckman SDS kit

– Voltage: -16 kV

– Injection: -10kV, 10 s

– Cassette temperature  : 40℃

To measure the limit of detection, rMAb sample was spiked with a 28kDa protein size standard at different levels as: 0.2%, 0.5%, 1%, 2%, 5%.

Figure 2 shows that the S/N ratio is 26 at 0.2%.

The extrapolation to a S/N ratio of 3 shows a limit of detection of 0.023% (w/w).

Figure 2A : Separation of human IgG labeled with FQ with five levels of contaminants via CE/LEDIF using a 480nm LED

Figure 2B : Extension of the egram of figure 2A between 9 and 12 minutes.

5-TAMRA.SE Derivatization Method

5-TAMRA.SE (λmax. Exc.: 550nm; λmax. Emis.: 590nm) is commonly used as a labeling reagent of mAbs for fluorescence detection as it increases the sensitivity and maintains the profile of the analyte species.

Figure 3 shows the analysis of human Ig using two LEDs (480nm and 530nm). Optimization of the excitation wavelength (530nm instead of 480nm) magnifies the  S/N ratio by a factor 18.

Instruments

Capillary electrophoresis:

Agilent Technologies 7100 CE

Detector: Picometrics ZETALIF LED with 480nm/30nm LED and 530nm/30nm LED

Sample

Human Ig labeled with 5-TAMRA.SE

Labeling

rMAb samples (2mg/mL) were exchanged into 0.1 M sodium bicarbonate, pH 8.3, using a NAP-5 column. 10µL of 5-TAMRA.SE (1.4 mg/mL) dissolved in DMSO was then added to 190 µL of rmAb solution and the resultant mixture incubated for 2 h at 30℃.

After incubation, 190 µL of the antibody-dye conjugate was loaded onto a second NAP-5 column and collected in 700 µL of 0.1 M sodium bicarbonate, pH 8.3.

Non reduced SDS-rmAb conjugates were prepared by mixing 100 µL of the rmAb-dye conjugate and 100 µL of the CE-SDS sample buffer

Method

Same as FQ method

 

FQ derivatization

5-TAMRA.SE derivatization

Wavelength (nm)

480

480

530

Derivatization method

– Fluorogenic reagent, no purification after labeling

– Rapid method of labeling  (5min at 75℃)

– The excess of dye should be removed with NAP-5 column

– Long  period of time required for labeling and purification  (2 hours  at 30℃  + purification)

Ratio S/N on the main peak

3700

1400

25800

Figure 3 : Analysis of human Ig labeled with 5-TAMRA.SE using 480nm and 530nm LEDs

Conclusion:

This note describes two methods of derivatization of IgG with 5-TAMRA.SE and FQ.

The CE-LEDIF system is used to assess the purity and heterogeneity of IgG and its isoforms.

LED light source presents many advantages : less expensive, less energy consumable and more stable.