Bioassays for Bispecific Antibodies (BiTEs) Bioassays 2010 Meeting November 8, 2010 Hyun Jun Kim Analytical Biochemistry



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Transcription:

Bioassays for Bispecific Antibodies (BiTEs) Bioassays 2010 Meeting November 8, 2010 Hyun Jun Kim Analytical Biochemistry

Outline Introduction BiTE MoA Bioassay Development Assay Performance Assay Specificity & Ruggedness Summary 2

Introduction: The BiTE Antibody Principle Bispecific T cell Engager (BiTE) Antibody Baeuerle P, Cancer Res 2009; 69(12). June 2009 3

Mechanism of Action: BiTE-mediated Cytotoxicity 4

Research Bioassay Method Day 0: Purify CD3+T cells from Healthy Donor Time: 2-3 h Stimulate the T cells with hil-2 overnight (37 ºC) 24 h Day 1: Assay Setup 1-2 h Label Target cells Stimulated T cells BiTE Antibody Day 3: Incubation at 37 ºC for 48 h FACS Read-out 48 h 2.5-3.5 h Total assay time: >3 days 5

Bioassay Development: Bioassay Optimization Bioassay Optimization: Identify assay critical components Considerations Target and Effector Cell Lines Detection Method Interaction-dependent assay factors Cell Density/Proximity limits Effector to Target Cell Ratio Assay tolerance/robustness parameter range Assay cell density Assay incubation time Assay read time 6

Bioassay Development: Characterization of Target & Effector Cells Identification of Cells: Target Cell-1 Target Cell-2 Effector T cell 91.26% 96.57% CD3 94.92% Target - FITC Target - FITC 7

Bioassay Development: Comparison of Detection Methods Detection Methods Signal to Noise Ratio Calcein AM Release 1-1.25 LDH Release <1.0 Caspase Activation 2.0-3.0 Europium Release n/a (no response) Caspase Activation is optimal detection method 8

Response Bioassay Development: Interaction Dependent Assay Factors E:T Ratio vs S/N Ratio Protein Concentration E:T=1:3 E:T=1:2 E:T=1:1 E:T=2:1 E:T=3:1 S/N Ratio 2.95 2.65 2.11 1.83 1.48 9

Response Bioassay Development: Interaction Dependent Assay Response Cell Density vs S/N Ratio Graph#1 1.13e7 1.03e7 9.3e6 8.3e6 7.3e6 6.3e6 5.3e6 4.3e6 Total Cell Number/well S/N Ratio 15K 2.35 20K 2.53 25K 2.49 30K 2.57 3.3e6 2.3e6 1e-4 0.001 0.01 0.1 1 10 100 Protein Concentration x axis 4-P Fit: y = (A - D)/( 1 + (x/c)^b ) + D: A B C D R^2 15k (15k cells@experiment#1: Concentration vs Mea... 2.4e6 0.928 0.094 5.65e6 0.996 20k (20k cells@experiment#1: Concentration vs Mea... 3.29e6 0.898 0.089 8.33e6 0.998 25k (25k cells@experiment#1: Concentration vs Mea... 3.91e6 0.842 0.106 9.73e6 0.999 30k (30k cells@experiment#1: Concentration vs Mea... 4.47e6 0.77 0.102 1.15e7 1 Curve Fit Option - Fixed Weight Value: 1 10

Bioassay Development: New Bioassay Conditions Caspase activation: Detection method Cell seeding number: 25K cells/well ET ratio: 1:3.5 No need for pre-incubation Incubation time is 23 1.5 h 11

Robustness DoE Target Bioassay Development: Robustness DoE Identify DoE testing range of assay performance parameter Demonstrate acceptable assay robustness tolerance Assay tolerance parameter should account for normal performance variability of 15-20% Conditions Cell Plating Density/Ratio (cells/well) Assay Incubation Time (h) 1 - - 2 0 0 3 + + Full-factorial robustness DoE (N=2) 12

Bioassay Development: Protocol Comparison Day 0: Purify CD3+ T cells from healthy donor + Day 1: Day 3: Research Protocol Stimulate the T cells with human IL-2 Prep. BiTE dilutions + Label the Target Cells + CD3 enriched T cells 96-U Plate, 37 C, 5% CO2 incubator (48 h) Day 0: Day 1: Optimized Protocol Prep. BiTE dilutions + Effector cells + Target cells (E:T=1:3.5) mix 96-W Plate, 37 C, 5% CO 2 incubator (23 h) After 23 h incubation, add Caspase-Glo for 0.5-1 h Luminometer Reader Trypsinize the cells for 5 min and then neutralize the trypsin with FACS buffer Add PI LSR FACS reader 13

Response Bioassay Development: Accuracy & Intermediate Precision Protein Concentration 14

Bioassay Development: Repeatability Repeatability (N=3) Expected Relative Potency (%) 100% 100% 100% 100% 100% Observed Relative Potency (%) Assay 1 105 107 105 115 99 Assay 2 109 101 108 111 103 Assay 3 98 104 97 97 93 % Mean Potency 104 104 103 108 98 % CV 5.4 2.9 5.5 8.8 5.1 Overall % CV 5.5 15

% Potency (Observed) Bioassay Development: Linearity 150 130 y = 0.992x - 6.3333 R 2 = 0.9938 110 90 70 50 30 30 50 70 90 110 130 150 % Potency (Expected) 16

% of Relative Potentcy Bioassay Development: Stability-indicating Ability 120 Heat Stress Study 108.4 100 94.3 80 60 63.1 50 40 20 0 Time=0 3 Days 6 Days 13 Days Incubation Time @ 50 C 17

Highlights of Optimized Assay : More sensitive Fewer cells Fewer steps Faster Homogenous endpoint readout Robust Stability-indicating QC friendly Bioassay Development: Performance Summary 18

Response Response Bioassay MoA Characterization: Specificity Ref Std Spike alone Spike + -Target -Target alone Protein Concentration Ref Std Spike alone Spike + -CD3 -CD3 alone Protein Concentration 19

Response Response Assay Ruggedness: Target & Effector Cell Passage Target Cell Passage Number Effector T Cell Passage Number P55 P51 P3 P3 Protein Concentration Protein Concentration Target Cell P3 P55 Effector Cell P3 P55 S/N Ratio 2.07 2.17 S/N Ratio 2.67 2.75 20

Summary A simple one-day homogeneous bioassay was developed and optimized for BiTE. Assay is reflective of the MoA by directly measuring T cell mediated target cell death. Assay is suitable for use in a QC environment. 21

Acknowledgements Tianmeng Shao Michael Doh Xu-Rong Jiang Robert Strouse Michael Washabaugh Mark Schenerman 22