优化Wnt在无胎牛血清(FCS)类器官扩增培养基中的激活。

IF 3.6 Q2 TOXICOLOGY
Frontiers in toxicology Pub Date : 2025-05-14 eCollection Date: 2025-01-01 DOI:10.3389/ftox.2025.1504469
Esther J M Liefting, Jeffrey J Bajramovic
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引用次数: 0

摘要

类器官技术可以通过增加实验结果的转化价值,同时减少对实验动物的使用,从而彻底改变生物医学研究。然而,在大多数情况下,类器官培养工作流程依赖于含有胎牛血清(FCS)的扩增培养基。FCS的生产会给动物带来痛苦,而且它的使用也会受到一些负面因素的阻碍,这些因素会影响到可重复性(如FCS的批量间差异大,成分不确定)、相关性(如诱导非生理细胞表型)以及临床可翻译性(如可能导致异种免疫或含有异种病原体)。因此,寻找不含动物的替代品来替代FCS的使用是一种强烈的推动力。大多数当代类器官培养的扩增培养基都不含fcs。这主要得益于FCS用于重组生产生长因子Wnt3A。在扩增培养基中加入wnt3a条件培养基,诱导Wnt信号传导,这是类器官增殖所必需的。反过来,FCS对稳定和溶解Wnt3A蛋白至关重要,而不是对细胞的存活、粘附或增殖起作用。这篇小型综述探讨了在类器官扩增介质中诱导Wnt信号传导的替代方法,包括使用可溶性Wnt模拟物、使用载体和使用小分子抑制剂。最后,对不同实验目标的Wnt激活方法进行了回顾和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing Wnt activation in fetal calf serum (FCS)-free organoid expansion media.

Organoid technology can revolutionize biomedical research by increasing the translational value of experimental results while at the same time reducing the need for experimental animal use. However, in most cases the organoid culture workflow relies on expansion media that contain fetal calf serum (FCS). The production of FCS causes animal suffering, and the use of it is hampered by factors that negatively impact the reproducibility (such as the large inter-batch variation and the undefined composition of FCS), relevance (such as the induction of a non-physiological cellular phenotype), as well as the clinical translatability (such as the potential to cause xeno-immunization or to contain xenogeneic pathogens). There is thus a strong impetus to find animal-free alternatives to the use of FCS. Most contemporary expansion media for organoid culture are not FCS-free. This is mainly contributable to the use of FCS for the recombinant production of the growth factor Wnt3A. Wnt3A-conditioned medium is added to expansion media to induce Wnt signaling, which is necessary for organoid proliferation. In turn, FCS is pivotal to stabilize and solubilize the Wnt3A protein, and not perse for the survival, adhesion or proliferation of cells. This mini-review explores alternative methods to induce Wnt signaling in organoid expansion media, encompassing the use of soluble Wnt mimetics, the use of carriers, and the use of small molecule inhibitors. Ultimately, alternative Wnt activation approaches for different experimental goals are reviewed and discussed.

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CiteScore
3.80
自引率
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