Tumor-Infiltration Mimicking Model of Contaminated Ovarian Tissue as an Innovative Platform for Advanced Cancer Research.

IF 5 3区 医学 Q1 PHARMACOLOGY & PHARMACY
Saeid Moghassemi, Arezoo Dadashzadeh, Carolina M Lucci, Christiani A Amorim
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引用次数: 0

Abstract

The development of advanced preclinical models is crucial for the evaluation and validation of novel therapeutic strategies in oncology. Three-dimensional (3D) microtumor models, which incorporate both cancer and stromal cells within biomimetic hydrogels, have emerged as powerful tools that more accurately replicate the complex tumor microenvironment compared to traditional two-dimensional (2D) cell culture systems. In this context, our study aims to develop 3D microtumor models by integrating cancer and stromal cells within an extracellular-matrix-mimetic hydrogel, as a physiologically accurate microtumor model that can serve as an innovative platform for advanced cancer research and drug screening. Microtumors composed of varying ratios of leukemia cells (HL-60) to healthy ovarian stromal cells (SCs) (1:1, 1:10, 1:100, or 1:1000) were encapsulated in PEGylated fibrin hydrogel and cultured for 5 days. The proliferation and dynamics of cancerous and healthy cell populations were evaluated using CD43/Ki67 immunofluorescence double staining. Our findings indicate that tumor development and malignancy progression can be influenced by adjusting cell culture ratios and incubation time. Notably, the HL-60:SCs ratio of 1:100 closely replicated leukemia cell invasion in ovarian tissue, demonstrating detectable malignancy on the third and fifth days without significant changes in total cell density dynamics. This 3D leukemia microtumor model offers superior physiological relevance compared to traditional 2D in vitro assays and shows promising potential for applications in cellular analysis and drug screening.

肿瘤浸润模拟受污染卵巢组织模型作为癌症高级研究的创新平台
开发先进的临床前模型对于评估和验证新型肿瘤治疗策略至关重要。与传统的二维(2D)细胞培养系统相比,三维(3D)微瘤模型将癌细胞和基质细胞整合在仿生水凝胶中,已成为更准确地复制复杂肿瘤微环境的强大工具。在此背景下,我们的研究旨在通过将癌细胞和基质细胞整合到仿细胞外基质水凝胶中来开发三维微肿瘤模型,作为一种生理学上准确的微肿瘤模型,为先进的癌症研究和药物筛选提供创新平台。由不同比例的白血病细胞(HL-60)和健康卵巢基质细胞(SCs)(1:1、1:10、1:100 或 1:1000)组成的微瘤被包裹在 PEG 化纤维蛋白水凝胶中并培养 5 天。采用 CD43/Ki67 免疫荧光双重染色法评估癌细胞和健康细胞群的增殖和动态。我们的研究结果表明,调整细胞培养比例和培养时间可影响肿瘤的发展和恶性程度。值得注意的是,HL-60:SCs 的比例为 1:100 与卵巢组织中的白血病细胞侵袭密切相关,在第三天和第五天显示出可检测到的恶性程度,而细胞总密度的动态变化并不明显。与传统的二维体外实验相比,这种三维白血病微瘤模型具有更高的生理相关性,在细胞分析和药物筛选方面具有广阔的应用前景。
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来源期刊
AAPS Journal
AAPS Journal 医学-药学
CiteScore
7.80
自引率
4.40%
发文量
109
审稿时长
1 months
期刊介绍: The AAPS Journal, an official journal of the American Association of Pharmaceutical Scientists (AAPS), publishes novel and significant findings in the various areas of pharmaceutical sciences impacting human and veterinary therapeutics, including: · Drug Design and Discovery · Pharmaceutical Biotechnology · Biopharmaceutics, Formulation, and Drug Delivery · Metabolism and Transport · Pharmacokinetics, Pharmacodynamics, and Pharmacometrics · Translational Research · Clinical Evaluations and Therapeutic Outcomes · Regulatory Science We invite submissions under the following article types: · Original Research Articles · Reviews and Mini-reviews · White Papers, Commentaries, and Editorials · Meeting Reports · Brief/Technical Reports and Rapid Communications · Regulatory Notes · Tutorials · Protocols in the Pharmaceutical Sciences In addition, The AAPS Journal publishes themes, organized by guest editors, which are focused on particular areas of current interest to our field.
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