Bačenková Darina, Trebuňová Marianna, Čížková Daša, Hudák Radovan, Dosedla Erik, Findrik-Balogová Alena, Živčák Jozef
Department of Biomedical Engineering and Measurement, Faculty of Mechanical Engineering, Technical University of Košice, 04200 Košice, Slovakia.
Centre for Experimental and Clinical Regenerative Medicine, The University of Veterinary Medicine and Pharmacy, 04181 Košice, Slovakia.
Biomedicines. 2022 Apr 15;10(4):904. doi: 10.3390/biomedicines10040904.
The complex process of placental implantation and development affects trophoblast progenitors and uterine cells through the regulation of transcription factors, cytokines, adhesion receptors and their ligands. Differentiation of trophoblast precursors in the trophectoderm of early ontogenesis, caused by the transcription factors, such as CDX2, TEAD4, Eomes and GATA3, leads to the formation of cytotrophoblast and syncytiotrophoblast populations. The molecular mechanisms involved in placental formation inside the human body along with the specification and differentiation of trophoblast cell lines are, mostly due to the lack of suitable cell models, not sufficiently elucidated. This review is an evaluation of current technologies, which are used to study the behavior of human trophoblasts and other placental cells, as well as their ability to represent physiological conditions both in vivo and in vitro. An in vitro 3D model with a characteristic phenotype is of great benefit for the study of placental physiology. At the same time, it provides great support for future modeling of placental disease.
胎盘植入和发育的复杂过程通过转录因子、细胞因子、黏附受体及其配体的调控影响滋养层祖细胞和子宫细胞。在个体发育早期,由CDX2、TEAD4、Eomes和GATA3等转录因子引起的滋养外胚层中滋养层前体细胞的分化,导致细胞滋养层和合胞体滋养层群体的形成。由于缺乏合适的细胞模型,人体胎盘形成过程中涉及的分子机制以及滋养层细胞系的特化和分化尚未得到充分阐明。本综述评估了当前用于研究人类滋养层细胞和其他胎盘细胞行为的技术,以及它们在体内和体外代表生理状况的能力。具有特征性表型的体外三维模型对胎盘生理学研究大有裨益。同时,它为未来胎盘疾病的建模提供了有力支持。