绿色/红色荧光蛋白干扰药物用于三维肿瘤球体的实时渗透性跟踪

IF 6.1 2区 医学 Q1 ENGINEERING, BIOMEDICAL Bioengineering & Translational Medicine Pub Date : 2024-12-09 DOI:10.1002/btm2.10731
Maytal Avrashami, Danna Niezni, Dana Meron Azagury, Hagit Sason, Yosi Shamay
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引用次数: 0

摘要

与传统的二维培养相比,三维球体模型提供了更具有生理相关性和复杂的环境,使其成为研究肿瘤生物学和药物反应的有前途的工具。然而,这些模型在实时监测药物扩散、渗透和靶标接触方面经常面临挑战,限制了它们对体内和临床结果的预测能力。本研究介绍了一种实时跟踪药物渗透性的新方法,使用具有与药效相关的GFP/RFP干扰特性的小分子药物。我们利用多种表达GFP/RFP的癌细胞系建立了一个可重复的三维球体模型,用于有效的药物筛选。通过筛选超过20种FDA批准的酶抑制剂,我们确定了三种共价激酶抑制剂-奥西替尼,阿法替尼和纳拉替尼-不可逆地破坏GFP和RFP荧光。我们的研究结果揭示了在表达GFP/RFP‐的球体中不同的药物扩散和渗透曲线,随药物浓度和配方而变化,并与临床分布体积(Vd)值相关。此外,我们证明了我们的方法对评估不同的药物配方以及筛选实体肿瘤的渗透增强剂是有用的。这些发现为研究药物在肿瘤样环境中的渗透性和疗效动力学提供了一个有价值的3D模型,对药物传递研究和配方开发具有潜在的意义。
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Green/red fluorescent protein disrupting drugs for real‐time permeability tracking in three‐dimensional tumor spheroids
Three‐dimensional (3D) spheroid models offer a more physiologically relevant and complex environment compared to traditional two‐dimensional cultures, making them a promising tool for studying tumor biology and drug response. However, these models often face challenges in real‐time monitoring of drug diffusion, penetration, and target engagement, limiting their predictive power for in vivo and clinical outcomes. This study introduces a novel approach for real‐time tracking of drug permeability using small molecule drugs with GFP/RFP‐disrupting properties that correlate with their efficacy. We developed a reproducible 3D spheroid model with various cancer cell lines expressing GFP/RFP for efficient drug screening. Through screening over 20 FDA‐approved enzyme inhibitors, we identified three covalent kinase inhibitors—osimertinib, afatinib, and neratinib—that irreversibly disrupt GFP and RFP fluorescence. Our results reveal distinct drug diffusion and penetration profiles within GFP/RFP‐expressing spheroids, varying with drug concentration and formulation, and correlating with clinical volume of distribution (Vd) values. Additionally, we demonstrate that our approach is useful for evaluating different drug formulations as well as screening penetration enhancers for solid tumors. These findings offer a valuable 3D model for studying kinetics of drug permeability and efficacy in tumor‐like environments, with potential implications for drug delivery research and formulation development.
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来源期刊
Bioengineering & Translational Medicine
Bioengineering & Translational Medicine Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
8.40
自引率
4.10%
发文量
150
审稿时长
12 weeks
期刊介绍: Bioengineering & Translational Medicine, an official, peer-reviewed online open-access journal of the American Institute of Chemical Engineers (AIChE) and the Society for Biological Engineering (SBE), focuses on how chemical and biological engineering approaches drive innovative technologies and solutions that impact clinical practice and commercial healthcare products.
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