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Integrated Pharmacokinetic/Pharmacodynamic Analysis for Determining the Minimal Anticipated Biological Effect Level of a Novel Anti-CD28 Receptor Antagonist BMS-931699.
Yang, Zheng; Wang, Haiqing; Salcedo, Theodora W; Suchard, Suzanne J; Xie, Jenny H; Schneeweis, Lumelle A; Fleener, Catherine A; Calore, James D; Shi, Rong; Zhang, Sean X Y; Rodrigues, A David; Car, Bruce D; Marathe, Punit H; Nadler, Steven G.
Afiliación
  • Yang Z; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Wang H; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Salcedo TW; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Suchard SJ; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Xie JH; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Schneeweis LA; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Fleener CA; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Calore JD; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Shi R; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Zhang SX; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Rodrigues AD; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Car BD; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Marathe PH; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
  • Nadler SG; Department of Metabolism and Pharmacokinetics, Pharmaceutical Candidate Optimization (Z.Y., H.W, A.D.R., B.D.C., and P.H.M.), Department of Exploratory Clinical and Translational Research (C.A.F., R.S., S.X.Y.Z.), Department of Protein Structures and Sciences (L.A.S.), Department of Immunology Disco
J Pharmacol Exp Ther ; 355(3): 506-15, 2015 Dec.
Article en En | MEDLINE | ID: mdl-26442523
ABSTRACT
BMS-931699 (lulizumab pegol), a domain antibody (dAb) conjugated with 40-kDa branched polyethylene glycol, is a human anti-CD28 receptor antagonist under development for the treatment of inflammatory and autoimmune diseases. In the present work, the minimal anticipated biologic effect level (MABEL) was determined for BMS-931699 by integrating all the available preclinical data. The relevance of the in vitro mixed lymphocyte reaction (MLR) assay to a whole blood CD28 receptor occupancy (RO) assessment, as well as the relationship between the CD28 RO and the inhibition of T-cell-dependent antibody response to keyhole limpet hemocyanin in vivo, was demonstrated through an integrated pharmacokinetic/pharmacodynamic analysis using anti-hCD28 dAb-001 (differing from BMS-931699 by two additional amino acids at the N-terminus) and a mouse surrogate. Based on this analysis, the EC10 value (0.32 nM) from the human MLR assay and the human plasma volume (0.04 l/kg) were employed to calculate the MABEL (0.01 mg) of BMS-931699 in humans, with a CD28 RO predicted to be ≤10%. The estimated MABEL dose was threefold higher than the value derived from the binding constant and twofold less than the MABEL converted from animal efficacy studies based on the body surface area. Furthermore, it was 2900-fold lower than the human equivalent dose derived from the no observed adverse effect level in monkeys (15 mg/kg/week for 5 doses, intravenous dosing) with a 10-fold safety factor applied. Therefore, the MABEL dose represented a sound approach to mitigate any potential risk in targeting CD28 and was successfully used as the first-in-human starting dose for BMS-931699.
Asunto(s)

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Polietilenglicoles / Antígenos CD28 / Anticuerpos Tipo de estudio: Prognostic_studies Límite: Animals / Female / Humans Idioma: En Revista: J Pharmacol Exp Ther Año: 2015 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Polietilenglicoles / Antígenos CD28 / Anticuerpos Tipo de estudio: Prognostic_studies Límite: Animals / Female / Humans Idioma: En Revista: J Pharmacol Exp Ther Año: 2015 Tipo del documento: Article