Biotechnological advances in 3D modeling of cancer initiation. Examples from pancreatic cancer research and beyond.

IF 8.2 2区 医学 Q1 ENGINEERING, BIOMEDICAL Biofabrication Pub Date : 2025-02-28 DOI:10.1088/1758-5090/adb51c
C Handschin, H Shalhoub, A Mazet, C Guyon, N Dusserre, E Boutet-Robinet, H Oliveira, J Guillermet-Guibert
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Abstract

In recent years, biofabrication technologies have garnered significant attention within the scientific community for their potential to create advancedin vitrocancer models. While these technologies have been predominantly applied to model advanced stages of cancer, there exists a pressing need to develop pertinent, reproducible, and sensitive 3D models that mimic cancer initiation lesions within their native tissue microenvironment. Such models hold profound relevance for comprehending the intricacies of cancer initiation, to devise novel strategies for early intervention, and/or to conduct sophisticated toxicology assessments of putative carcinogens. Here, we will explain the pivotal factors that must be faithfully recapitulated when constructing these models, with a specific focus on early pancreatic cancer lesions. By synthesizing the current state of research in this field, we will provide insights into recent advances and breakthroughs. Additionally, we will delineate the key technological and biological challenges that necessitate resolution in future endeavors, thereby paving the way for more accurate and insightfulin vitrocancer initiation models.

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癌症起始三维建模的生物技术进展。来自胰腺癌研究的例子。
近年来,生物制造技术因其创造先进的玻璃癌模型的潜力而在科学界引起了极大的关注。虽然这些技术主要应用于晚期癌症的建模,但迫切需要开发相关的、可重复的、敏感的3D模型,以在其原生组织微环境中模拟癌症起始病变。这些模型对于理解癌症起始的复杂性、设计早期干预的新策略和/或对假定的致癌物进行复杂的毒理学评估具有深远的意义。在这里,我们将解释在构建这些模型时必须忠实地概括的关键因素,并特别关注早期胰腺癌病变。通过综合该领域的研究现状,我们将提供对最新进展和突破的见解。此外,我们将描述在未来的努力中需要解决的关键技术和生物学挑战,从而为更准确和更有洞察力的玻璃癌启动模型铺平道路。
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来源期刊
Biofabrication
Biofabrication ENGINEERING, BIOMEDICAL-MATERIALS SCIENCE, BIOMATERIALS
CiteScore
17.40
自引率
3.30%
发文量
118
审稿时长
2 months
期刊介绍: Biofabrication is dedicated to advancing cutting-edge research on the utilization of cells, proteins, biological materials, and biomaterials as fundamental components for the construction of biological systems and/or therapeutic products. Additionally, it proudly serves as the official journal of the International Society for Biofabrication (ISBF).
期刊最新文献
Viscoelasticity-tuned hyaluronic acid-gelatin microcarriers with thermoresponsive polymer grafts for scalable cell expansion and gentle harvesting. Synergistic, shape-controlled endothelialized spheroid-hydrogel for wound healing. A cleanroom-free membrane-integrated organ-on-a-chip platform for rapid intestinal tissue formation. Bioprinting of BSA membranes with C2C12 and NIH 3T3 pre-cellularized PLGA microscaffold : a step toward diaphragmatic hernia patches. One-step coaxial bioprinting of aligned and vascularized 3D skeletal muscle constructs.
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