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开发新型超敏 IL-11 靶点结合分析方法,支持抗 IL-11 抗体治疗的机制 PK/PD 建模。

Development of novel ultra-sensitive IL-11 target engagement assays to support mechanistic PK/PD modeling for an anti-IL-11 antibody therapeutic.

机构信息

Biotherapeutics Discovery, Research, Ridgefield, CT, USA.

Immunology & Respiratory, Research, Ridgefield, CT, USA.

出版信息

MAbs. 2022 Jan-Dec;14(1):2104153. doi: 10.1080/19420862.2022.2104153.

Abstract

An in-house antibody generation campaign identified a diverse, high affinity set of anti-interleukin-11 (IL-11) monoclonal antibodies (mAbs) to enable successful development of novel, custom ultra-sensitive target engagement assays for detection of "free" (unbound to the dosed anti-IL-11 therapeutic mAb) and "total" (free and mAb-IL-11 complexed form) IL-11 in preclinical species and human. Antibody hits from distinct epitope communities were screened on various platforms, including enzyme-linked immunosorbent assay, Meso Scale Discovery, Simoa HD-1 and Simoa Planar Array (SP-X), and used for assay development and sensitivity optimization. The ultra-sensitive SP-X format achieved a lower limit of quantitation of 0.006 pg/mL, enabling the first reported baseline levels of IL-11 in healthy control plasma determined by custom bioanalytical assays. These newly established baseline levels supported mechanistic pharmacokinetic/pharmacodynamic modeling in mouse, cynomolgus monkey, and human for a greater understanding of preclinical study design and dynamic interaction of soluble IL-11 with an anti-IL-11 antibody therapeutic candidate. Modeling and simulation also helped refine the utility of assays with respect to their potential use as target engagement biomarkers in the clinic. IL-11: Interleukin-11, TE: Target engagement, PK/PD: Pharmacokinetic/pharmacodynamic, mAb: Monoclonal antibody, NHP: Non-human primate, IgG: Immunoglobulin G, Cyno: Cynomolgulus monkey, GFR: Glomerular filtration rate, BQL: Below quantitation levels, DRM: Disease relevant model, kDa: kilodaltons, SPR: Surface plasmon resonance, pSTAT3: phosphorylated STAT3, IL-11R: Interleukin-11 receptor, TPP: Target product protein, LLOQ: Lower limit of quantitation, RLU: Relative light units.

摘要

内部抗体生成活动鉴定了一组多样化的高亲和力抗白细胞介素-11(IL-11)单克隆抗体(mAb),从而成功开发了新型定制超高灵敏度靶标结合分析,用于检测临床前物种和人类中的“游离”(未与给药的抗 IL-11 治疗性 mAb 结合)和“总”(游离和 mAb-IL-11 复合物形式)IL-11。来自不同表位区的抗体命中物在各种平台上进行筛选,包括酶联免疫吸附测定、Meso Scale Discovery、Simoa HD-1 和 Simoa 平面阵列(SP-X),并用于开发测定和优化灵敏度。超灵敏的 SP-X 格式实现了 0.006 pg/mL 的定量下限,从而首次通过定制生物分析测定报告了健康对照血浆中的 IL-11 基线水平。这些新建立的基线水平支持了在小鼠、食蟹猴和人中的机制药代动力学/药效动力学建模,以更好地了解临床前研究设计和可溶性 IL-11 与抗 IL-11 抗体治疗候选物的动态相互作用。建模和模拟还有助于优化测定方法的实用性,以评估它们在临床上作为靶标结合生物标志物的潜力。IL-11:白细胞介素-11,TE:靶标结合,PK/PD:药代动力学/药效动力学,mAb:单克隆抗体,NHP:非人类灵长类动物,IgG:免疫球蛋白 G,Cyno:食蟹猴,GFR:肾小球滤过率,BQL:低于定量水平,DRM:疾病相关模型,kDa:千道尔顿,SPR:表面等离子体共振,pSTAT3:磷酸化 STAT3,IL-11R:白细胞介素-11 受体,TPP:目标产品蛋白,LLOQ:定量下限,RLU:相对光单位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28fa/9348130/44a7bc9cbd2d/KMAB_A_2104153_F0001_OC.jpg

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