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一种全身循环中性粒细胞模型,可用于根据体外研究预测临床中性粒细胞减少症。

A whole-body circulatory neutrophil model with application to predicting clinical neutropenia from in vitro studies.

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, California, USA.

Pfizer Worldwide Research, Development and Medicine, San Diego, California, USA.

出版信息

CPT Pharmacometrics Syst Pharmacol. 2021 Jul;10(7):671-683. doi: 10.1002/psp4.12620. Epub 2021 Jun 8.

Abstract

A circulatory model of granulopoiesis and its regulation is presented that includes neutrophil trafficking in the lungs, liver, spleen, bone marrow, lymph nodes, and blood. In each organ, neutrophils undergo transendothelial migration from vascular to interstitial space, clearance due to apoptosis, and recycling via the lymphatic flow. The model includes cell cycling of progenitor cells in the bone marrow, granulocyte colony-stimulating factor (G-CSF) kinetics and its neutrophil regulatory action, as well as neutrophil margination in the blood. From previously reported studies, In-labeled neutrophil kinetic data in the blood and sampled organs were used to estimate the organ trafficking parameters in the model. The model was further developed and evaluated using absolute neutrophil count (ANC), band cell, and segmented neutrophil time course data from healthy volunteers following four dose levels of pegfilgrastim (r  = 0.77-0.99), along with ANC time course responses following filgrastim (r  = 0.96). The baseline values of various cell types in bone marrow and blood, as well as G-CSF concentration in the blood, predicted by the model are consistent with available literature reports. After incorporating the mechanism of action of both paclitaxel and carboplatin, as determined from an in vitro bone marrow studies, the model reliably predicted the observed ANC time course following paclitaxel plus carboplatin observed in a phase I trial of 46 patients (r  = 0.70). The circulatory neutrophil model may provide a mechanistic framework for predicting multi-organ neutrophil homeostasis and dynamics in response to therapeutic agents that target neutrophil dynamics and trafficking in different organs.

摘要

提出了一个粒细胞生成的循环模型及其调节机制,包括中性粒细胞在肺部、肝脏、脾脏、骨髓、淋巴结和血液中的迁移。在每个器官中,中性粒细胞都经历了从血管到间质空间的跨内皮迁移、凋亡导致的清除以及通过淋巴流的再循环。该模型包括骨髓中祖细胞的细胞周期、粒细胞集落刺激因子 (G-CSF) 的动力学及其对中性粒细胞的调节作用,以及血液中的中性粒细胞边缘。根据之前的研究报告,使用血液和采样器官中的放射性标记中性粒细胞动力学数据来估计模型中的器官迁移参数。该模型使用来自健康志愿者的 pegfilgrastim(r 为 0.77-0.99)的四个剂量水平下的绝对中性粒细胞计数 (ANC)、带状细胞和分段中性粒细胞时间过程数据,以及 filgrastim 后的 ANC 时间过程响应进行了进一步开发和评估。模型预测的骨髓和血液中各种细胞类型的基线值以及血液中的 G-CSF 浓度与可用的文献报告一致。在将紫杉醇和卡铂的作用机制纳入模型后,该机制是从体外骨髓研究中确定的,该模型可靠地预测了在 46 例患者的 I 期试验中观察到的紫杉醇加卡铂的 ANC 时间过程(r 为 0.70)。循环中性粒细胞模型可为预测针对靶向不同器官中性粒细胞动力学和迁移的治疗药物的多器官中性粒细胞稳态和动力学提供机制框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbec/8302245/bcf366ae21e4/PSP4-10-671-g002.jpg

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