← 返回前沿论文

三功能 NK 细胞衔接器机制性转化 PK/PD 模型的构建及其对急性髓系白血病首次人体剂量的预测

英文原题:Developing a mechanistic translational PK/PD model for a trifunctional NK cell engager to predict the first-in-human dose for acute myeloid leukemia.

PubMed 2023/12/03(内容时间) Clin Transl Sci Q2 · IF 4.3(JCR 2025)

研究概要

NK 细胞衔接器(NKCEs)是一种刺激先天免疫的治疗方法,近期因其良好的安全性特征和疗效而受到关注。

中文摘要

NK 细胞接合剂(NKCE)是一种刺激先天免疫的治疗方法,近来因其安全性特征较好且具有疗效而受到关注。NK细胞的活化由药物、NK细胞和肿瘤细胞之间形成免疫突触所驱动。但目前尚无明确的转化建模方法用于估算人源化NKCE首次人体(FIH)试验剂量。我们建立了首个以免疫突触为驱动的三功能NKp46/CD16a-CD123(CD123-NKCE)转化机制性药代动力学/药效学(PK/PD)模型,整合了:(i)不同效靶比和孵育时间下MOLM-13肿瘤细胞系体外靶细胞毒性数据;(ii)非人灵长类PK数据以及CD123阳性细胞和NKp46阳性NK细胞的特征;(iii)健康人或急性髓系白血病患者的系统特异性参数。为描述先天免疫直接杀伤肿瘤细胞,PK/PD模型结构中未设置转运室。模型预测FIH试验可选择每周两次、剂量递增为10/30/100 μg/kg的给药方案作为起始剂量。不过,敏感性分析显示,CD123阳性细胞生长速率常数和最大肿瘤杀伤速率常数是推荐活性剂量的关键不确定因素。这一新型转化模型结构可作为预测CD123-NKCE临床PK/PD数据的基础,该转化策略也可为NKCE后续发展提供依据。

展开英文摘要原文

Natural killer cell engagers (NKCEs), a treatment that stimulates innate immunity, have lately gained attention owing to their favorable safety profile, and their efficacy. Natural killer (NK) cell activation is driven by immune synapse formation between drugs, NK cells, and tumor cells. However, no clear translational modeling approach has been reported for first-in-human (FIH) dose estimation of humanized NKCEs. We developed the first translational mechanistic synapse-driven pharmacokinetic/pharmacodynamic (PK/PD) model for a trifunctional NKp46/CD16a-CD123 (CD123-NKCE) by integrating (i) in vitro target cell cytotoxicity in MOLM-13 tumor cell lines at varying effector-to-tumor cell ratios and incubation intervals; (ii) nonhuman primate PK and profiles of CD123+ cells and NKP46+ NK cells; and (iii) healthy human or patients with acute myeloid leukemia system-specific parameters. To depict direct tumor cell killing by the innate immunity, no transit compartment was included in PK/PD model structures. Model predictions suggested an intrapatient dose escalation of 10/30/100 g/kg twice weekly to be selected as the starting dose in the FIH trial. However, sensitivity analyses revealed that CD123+ cell growth rate constant and maximal tumor killing rate constant were the key uncertainties to the recommended active dose. This novel translational model structure can be used as the basis to predict clinical PK/PD data for CD123-NKCE, and the translational strategy may serve as a foundation for future advancements of NKCEs.

论文信息

作者
Choi SL、Valente D、Virone-Oddos A、Mauriac C
单位
Sanofi, DMPK, Paris, France.France
文献类型
非美国政府资助研究
期刊
Clinical and translational science2024 Jan
原文标识
PubMed 37990450 · DOI 10.1111/cts.13689