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重组人透明质酸酶(rHuPH20)对西妥昔单抗在大鼠皮下给药的作用的机制建模。

Mechanistic Modeling of the Effect of Recombinant Human Hyaluronidase (rHuPH20) on Subcutaneous Delivery of Cetuximab in Rats.

机构信息

Department of Pharmaceutics, Ernest Mario School of Pharmacy, Rutgers, The State University of New Jersey, 160 Frelinghuysen Road, Piscataway, New Jersey, 08854, USA.

Center of Excellence for Pharmaceutical Translational Research and Education, Ernest Mario School of Pharmacy, Rutgers, The State University of New Jersey, Piscataway, New Jersey, 08854, USA.

出版信息

Pharm Res. 2022 Aug;39(8):1867-1880. doi: 10.1007/s11095-022-03294-y. Epub 2022 Jul 1.

Abstract

PURPOSE

To evaluate the duration of effect of rHuPH20 on SC absorption of cetuximab and to develop a mechanistic pharmacokinetic model linking the kinetics of rHuPH20 action with hyaluronan (HA) homeostasis and absorption of cetuximab from the SC space.

METHODS

Serum pharmacokinetics of cetuximab was evaluated after IV and SC dosing at 0.4 and 10 mg/kg (control groups). In test groups, SC cetuximab was administered simultaneously with rHuPH20 (Co-Injection) or 12 h after injection of rHuPH20 (Pre-Injection). Mechanistic pharmacokinetic model was developed to simultaneously capture cetuximab kinetics in all groups.

RESULTS

Administration of rHuPH20 resulted in a faster absorption of cetuximab; the difference between co-injection and pre-injection groups appeared to be dependent on the dose level. The model combined three major components: kinetics of rHuPH20 at SC site; HA homeostasis and its disruption by rHuPH20; and cetuximab systemic disposition and the effect of HA disruption on cetuximab SC absorption. The model provided good description of experimental data obtained in this study and collected previously.

CONCLUSIONS

Proposed model can serve as a potential translational framework for capturing the effect of rHuPH20 across multiple preclinical species and in human studies and can be used for optimization of SC delivery of biotherapeutics.

摘要

目的

评估 rhupH20 对西妥昔单抗经皮吸收的作用持续时间,并建立一个将 rhupH20 作用动力学与透明质酸(HA)动态平衡和西妥昔单抗经皮吸收从 SC 空间联系起来的机制药代动力学模型。

方法

在 0.4 和 10mg/kg(对照组)静脉和皮下给药后评估西妥昔单抗的血清药代动力学。在试验组中,rhupH20 与西妥昔单抗同时皮下给药(共注射组)或 rhupH20 注射后 12 小时皮下给药(预注射组)。建立机制药代动力学模型以同时捕获所有组中西妥昔单抗的动力学。

结果

rhupH20 的给药导致西妥昔单抗吸收加快;共注射组和预注射组之间的差异似乎取决于剂量水平。该模型结合了三个主要组成部分:rhupH20 在 SC 部位的动力学;HA 动态平衡及其被 rhupH20 破坏;以及西妥昔单抗的全身处置和 HA 破坏对西妥昔单抗经皮吸收的影响。该模型很好地描述了本研究和以前收集的实验数据。

结论

所提出的模型可以作为一种潜在的转化框架,用于捕获 rhupH20 在多种临床前物种和人类研究中的作用,并可用于优化生物治疗药物的经皮给药。

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