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用于肠道细胞培养的三维支架:制造、利用和前景。

Three-Dimensional Scaffolds for Intestinal Cell Culture: Fabrication, Utilization, and Prospects.

机构信息

Department of Food Science and Technology, National University of Singapore (Suzhou) Research Institute, Suzhou, China.

Department of Food Science and Technology, National University of Singapore, Singapore, Singapore.

出版信息

Tissue Eng Part B Rev. 2024 Apr;30(2):158-175. doi: 10.1089/ten.TEB.2023.0124. Epub 2023 Sep 22.

Abstract

The intestine is a visceral organ that integrates absorption, metabolism, and immunity, which is vulnerable to external stimulus. Researchers in the fields such as food science, immunology, and pharmacology have committed to developing appropriate intestinal cell models to study the intestinal absorption and metabolism mechanisms of various nutrients and drugs, or pathogenesis of intestinal diseases. In the past three decades, the intestinal cell models have undergone a significant transformation from conventional two-dimensional cultures to three-dimensional (3D) systems, and the achievements of 3D cell culture have been greatly contributed by the fabrication of different scaffolds. In this review, we first introduce the developing trend of existing intestinal models. Then, four types of scaffolds, including Transwell, hydrogel, tubular scaffolds, and intestine-on-a-chip, are discussed for their 3D structure, composition, advantages, and limitations in the establishment of intestinal cell models. Excitingly, some of the intestinal cell models based on these scaffolds could successfully mimic the 3D structure, microenvironment, mechanical peristalsis, fluid system, signaling gradients, or other important aspects of the original human intestine. Furthermore, we discuss the potential applications of the intestinal cell models in drug screening, disease modeling, and even regenerative repair of intestinal tissues. This review presents an overview of state-of-the-art scaffold-based cell models within the context of intestines, and highlights their major advances and applications contributing to a better knowledge of intestinal diseases. Impact statement The intestine tract is crucial in the absorption and metabolism of nutrients and drugs, as well as immune responses against external pathogens or antigens in a complex microenvironment. The appropriate experimental cell model is needed for in-depth studies of intestines, due to the limitation of animal models in dynamic control and real-time assessment of key intestinal physiological and pathological processes, as well as the "R" principles in laboratory animal experiments. Three-dimensional (3D) scaffold-based cell cultivation has become a developing tendency because of the superior cell proliferation and differentiation and more physiologically relevant environment supported by the customized 3D scaffolds. In this review, we summarize four types of up-to-date 3D cell culture scaffolds fabricated by various materials and techniques for a better recapitulation of some essential physiological and functional characteristics of original intestines compared to conventional cell models. These emerging 3D intestinal models have shown promising results in not only evaluating the pharmacokinetic characteristics, security, and effectiveness of drugs, but also studying the pathological mechanisms of intestinal diseases at cellular and molecular levels. Importantly, the weakness of the representative 3D models for intestines is also discussed.

摘要

肠道是一个具有吸收、代谢和免疫功能的内脏器官,容易受到外部刺激。食品科学、免疫学和药理学等领域的研究人员致力于开发合适的肠细胞模型,以研究各种营养物质和药物的肠吸收和代谢机制,或肠道疾病的发病机制。在过去的三十年中,肠细胞模型已经从传统的二维培养物发展到三维(3D)系统,3D 细胞培养的成果主要得益于不同支架的制造。在这篇综述中,我们首先介绍了现有的肠模型的发展趋势。然后,我们讨论了包括 Transwell、水凝胶、管状支架和肠芯片在内的四种支架,介绍了它们的 3D 结构、组成、优点和局限性,以及在肠细胞模型建立中的应用。令人兴奋的是,一些基于这些支架的肠细胞模型成功地模拟了 3D 结构、微环境、机械蠕动、流体系统、信号梯度或原始人体肠道的其他重要方面。此外,我们还讨论了肠细胞模型在药物筛选、疾病建模甚至肠道组织再生修复中的潜在应用。本文综述了基于支架的肠细胞模型的最新进展,并强调了它们在深入了解肠道疾病方面的主要进展和应用。

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