Spheroids from Epithelial and Mesenchymal Cell Phenotypes as Building Blocks in Bioprinting (Review).

Sovremennye tekhnologii v meditsine Pub Date : 2025-01-01 Epub Date: 2025-02-28 DOI:10.17691/stm2025.17.1.11
D P Revokatova, P I Koteneva, N V Kosheleva, A I Shpichka, P S Timashev
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Abstract

Most tissues and organs are based on cells of the epithelial and mesenchymal phenotypes. Epithelial cells build protective barriers, have a key role in absorption and secretion, and participate in metabolism. Characterized by high plasticity and ability to migrate, mesenchymal cells ensure structural support, promote tissue restoration and are important for matrix remodeling. Interaction between these two cell types is critical for maintaining the body integrity and functioning. Modern tissue engineering is aimed at creation of artificial tissues and organs that have the required cellular composition, mechanical properties and functional potential for medical usage. One of the most popular methods of tissue engineering is 3D bioprinting, which allows creating complex three-dimensional structures with specified characteristics. Recently, special attention has been paid to bioprinting with spheroids being three-dimensional cellular aggregates that can be used as building blocks for tissue-engineered structures. Due to numerous cell-to-cell contacts and accumulation of extracellular matrix, spheroids ensure conditions allowing to form anatomical tissues and organs. To optimize bioprinting conditions, one shall precisely understand the mechanical properties of spheroids, as they directly affect the ability of cells to migrate and fuse, and thus the rate of construct formation and its overall morphology. This review summarizes the available data on the differences in mechanical properties of epithelial and mesenchymal spheroids, examines methods for their co-culturing in various applications of regenerative medicine, as well as analyzes the peculiarities of their use in different bioprinting methods to obtain high-quality tissue constructs.

来自上皮细胞和间充质细胞表型的球体作为生物打印的基石(综述)。
大多数组织和器官是基于上皮和间充质表型的细胞。上皮细胞建立保护屏障,在吸收和分泌中起关键作用,并参与代谢。间充质细胞具有高可塑性和迁移能力,保证了结构支持,促进组织修复,对基质重塑具有重要作用。这两种细胞之间的相互作用对于维持身体的完整性和功能至关重要。现代组织工程旨在创造具有所需细胞组成、机械性能和医疗用途功能潜力的人造组织和器官。组织工程中最流行的方法之一是3D生物打印,它允许创建具有特定特征的复杂三维结构。最近,人们特别关注生物打印,球体是三维细胞聚集体,可以用作组织工程结构的构建块。由于大量的细胞间接触和细胞外基质的积累,球体确保了形成解剖组织和器官的条件。为了优化生物打印条件,我们必须精确地了解球体的力学特性,因为它们直接影响细胞迁移和融合的能力,从而影响结构形成的速度和整体形态。本文综述了上皮和间充质球体在力学性能上的差异,探讨了它们在再生医学的各种应用中的共培养方法,并分析了它们在不同生物打印方法中使用的特点,以获得高质量的组织结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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