Rational design of viscosity reducing mutants of a monoclonal antibody: Hydrophobic versus electrostatic inter-molecular interactions

被引:84
作者
Nichols, Pilarin [1 ]
Li, Li [1 ]
Kumar, Sandeep [2 ]
Buck, Patrick M. [2 ]
Singh, Satish K. [2 ]
Goswami, Sumit [2 ]
Balthazor, Bryan [2 ]
Conley, Tami R. [3 ]
Sek, David [1 ]
Allen, Martin J. [4 ]
机构
[1] Pfizer Inc, Biotherapeut Pharmaceut Sci Res & Dev, Andover, MA USA
[2] Pfizer Inc, Biotherapeut Pharmaceut Sci Res & Dev, Chesterfield, MO 63017 USA
[3] Pfizer Inc, Biotherapeut Analyt Res & Dev, Andover, MA USA
[4] Pfizer Inc, Biotherapeut BioProc Res & Dev, Chesterfield, MO USA
关键词
monoclonal antibodies; viscosity; aggregation prone regions; negatively charged patches; molecular modeling; solubility; high concentration; rational design; mAb; monoclonal antibody; V-H; variable domain in the heavy chain; V-L; variable domain in the light chain; Fv; fragment variable; Fab; fragment antigen binding; Fc; fragment crystallizable; C(H)2; second constant domain in the heavy chain; C(H)3; third constant domain in heavy chain; HC; heavy chain; LC; light chain; IgG; immunoglobulin G; cP; centipoise; solution viscosity; (0); solvent viscosity; (rel); relative viscosity; DLS; Dynamic Light Scattering; k(D); protein-protein interaction parameter; CHO; Chinese Hamster Ovary; PEG; polyethylene glycol; ELISA; Enzyme-Linked Immunosorbent Assay; SE-HPLC; Size Exclusion High Performance Liquid Chromatography; T-m; thermal transition temperature; APR; Aggregation Prone Region; NTU; Nephelometric Turbidity Unit; ASA; Accessible Surface Area; ASA(Fv-HYD); hydrophobic accessible surface area of the Fv portion; ASA(Fv-HPH); hydrophilic accessible surface area of the Fv portion; Z(Fv); net charge of the Fv; Z(Fv-app); apparent charge of the Fv; (Fv); zeta-potential of the Fv; D-Fv; dipole moment of Fv; G(Fv); change in Free energy of Fv; D-0; diffusion coefficient at infinite dilution; MD; molecular dynamics; Pagg-VL; aggregation propensity of V-L domain; Pagg-VH; aggregation propensity of V-H domain; MAB; 1; Control; MAB 1 expressed in CHO cells; RPM; revolutions per minute; CE; Capillary Electrophoresis; cIEF; capillary Isoelectric Focusing; Z(DHH); Debye-Huckel Henry Charge; 2ND VIRIAL-COEFFICIENT; AGGREGATION-PRONE REGIONS; SELF-ASSOCIATION; CONCENTRATED-SOLUTIONS; MOLECULAR-DYNAMICS; PROTEIN; BEHAVIOR; PREDICTION; DIFFUSION; CHARGE;
D O I
10.4161/19420862.2014.985504
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
High viscosity of monoclonal antibody formulations at concentrations 100mg/mL can impede their development as products suitable for subcutaneous delivery. The effects of hydrophobic and electrostatic intermolecular interactions on the solution behavior of MAB 1, which becomes unacceptably viscous at high concentrations, was studied by testing 5 single point mutants. The mutations were designed to reduce viscosity by disrupting either an aggregation prone region (APR), which also participates in 2 hydrophobic surface patches, or a negatively charged surface patch in the variable region. The disruption of an APR that lies at the interface of light and heavy chain variable domains, V-H and V-L, via L45K mutation destabilized MAB 1 and abolished antigen binding. However, mutation at the preceding residue (V44K), which also lies in the same APR, increased apparent solubility and reduced viscosity of MAB 1 without sacrificing antigen binding or thermal stability. Neutralizing the negatively charged surface patch (E59Y) also increased apparent solubility and reduced viscosity of MAB 1, but charge reversal at the same position (E59K/R) caused destabilization, decreased solubility and led to difficulties in sample manipulation that precluded their viscosity measurements at high concentrations. Both V44K and E59Y mutations showed similar increase in apparent solubility. However, the viscosity profile of E59Y was considerably better than that of the V44K, providing evidence that inter-molecular interactions in MAB 1 are electrostatically driven. In conclusion, neutralizing negatively charged surface patches may be more beneficial toward reducing viscosity of highly concentrated antibody solutions than charge reversal or aggregation prone motif disruption.
引用
收藏
页码:212 / 230
页数:19
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