对靶组织中未包封药物的定量分析证明了托泊替康脂质体 (FF-10850) 的药理特性和治疗效果。

IF 3.5 3区 医学 Q2 CHEMISTRY, MULTIDISCIPLINARY Pharmaceutical Research Pub Date : 2024-04-01 Epub Date: 2024-03-27 DOI:10.1007/s11095-023-03652-4
Toshifumi Kimura, Ken Okada, Yasushi Morohashi, Yukio Kato, Mikinaga Mori, Hiroshi Kato, Takeshi Matsumoto, Susumu Shimoyama
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引用次数: 0

摘要

目的量化组织中的未包封药物浓度对于了解脂质体药物的疗效和安全性机制至关重要;然而,这方面的方法尚未完全确立。在此,我们旨在通过分析托泊替康(FF-10850)未胶囊化药物在靶组织中的浓度,研究托泊替康聚乙二醇脂质体制剂的增强治疗潜力,从而指导改进其给药方案:我们开发了一种测量肿瘤和骨髓间质(BM-ISF)中未包封托泊替康浓度的方法,并将此方法应用于药代动力学评估。计算了肿瘤和骨髓间质液中总托泊替康和未包囊托泊替康的浓度-时间曲线下面积(AUC)的比率。在 ES-2 小鼠异种移植模型中评估了 FF-10850 或非脂质体托泊替康 (TPT) 的 DNA 损伤和抗肿瘤效果:与 TPT(0.833)相比,FF-10850 对未包封的拓扑替康(2.96),但对全部拓扑替康(0.752)而言,在肿瘤和 BM-ISF 之间显示出更大的 AUC 比值。与 TPT 相比,FF-10850 对骨髓中 DNA 损伤的促进作用较轻;但是,FF-10850 和 TPT 在肿瘤中引起的 DNA 损伤程度相当。这些发现突出表明,与TPT相比,未包囊的托泊替康对肿瘤的暴露更大,而FF-10850对骨髓的暴露更小。根据未包封的托泊替康和DNA损伤的动力学,成功改进了给药方案:结论:未包封的托泊替康的组织药代动力学阐明了FF-10850的良好药理特性。用适当的药效学指标评估组织对未包封药物的暴露,对优化脂质体药物和给药方案很有价值。
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Quantification of Unencapsulated Drug in Target Tissues Demonstrates Pharmacological Properties and Therapeutic Effects of Liposomal Topotecan (FF-10850).

Purpose: Quantifying unencapsulated drug concentrations in tissues is crucial for understanding the mechanisms underlying the efficacy and safety of liposomal drugs; however, the methodology for this has not been fully established. Herein, we aimed to investigate the enhanced therapeutic potential of a pegylated liposomal formulation of topotecan (FF-10850) by analyzing the concentrations of the unencapsulated drug in target tissues, to guide the improvement of its dosing regimen.

Methods: We developed a method for measuring unencapsulated topotecan concentrations in tumor and bone marrow interstitial fluid (BM-ISF) and applied this method to pharmacokinetic assessments. The ratios of the area under the concentration-time curves (AUCs) between tumor and BM-ISF were calculated for total and unencapsulated topotecan. DNA damage and antitumor effects of FF-10850 or non-liposomal topotecan (TPT) were evaluated in an ES-2 mice xenograft model.

Results: FF-10850 exhibited a much larger AUC ratio between tumor and BM-ISF for unencapsulated topotecan (2.96), but not for total topotecan (0.752), than TPT (0.833). FF-10850 promoted milder DNA damage in the bone marrow than TPT; however, FF-10850 and TPT elicited comparable DNA damage in the tumor. These findings highlight the greater tumor exposure to unencapsulated topotecan and lower bone marrow exposure to FF-10850 than TPT. The dosing regimen was successfully improved based on the kinetics of unencapsulated topotecan and DNA damage.

Conclusions: Tissue pharmacokinetics of unencapsulated topotecan elucidated the favorable pharmacological properties of FF-10850. Evaluation of tissue exposure to an unencapsulated drug with appropriate pharmacodynamic markers can be valuable in optimizing liposomal drugs and dosing regimens.

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来源期刊
Pharmaceutical Research
Pharmaceutical Research 医学-化学综合
CiteScore
6.60
自引率
5.40%
发文量
276
审稿时长
3.4 months
期刊介绍: Pharmaceutical Research, an official journal of the American Association of Pharmaceutical Scientists, is committed to publishing novel research that is mechanism-based, hypothesis-driven and addresses significant issues in drug discovery, development and regulation. Current areas of interest include, but are not limited to: -(pre)formulation engineering and processing- computational biopharmaceutics- drug delivery and targeting- molecular biopharmaceutics and drug disposition (including cellular and molecular pharmacology)- pharmacokinetics, pharmacodynamics and pharmacogenetics. Research may involve nonclinical and clinical studies, and utilize both in vitro and in vivo approaches. Studies on small drug molecules, pharmaceutical solid materials (including biomaterials, polymers and nanoparticles) biotechnology products (including genes, peptides, proteins and vaccines), and genetically engineered cells are welcome.
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