An improved multicellular human organoid model for the study of chemical effects on palatal fusion

类有机物 间充质 胚胎干细胞 畸形学 发育毒性 细胞生物学 生物 前脑 细胞融合 胎儿 细胞 胚胎 生物化学 遗传学 基因 怀孕
作者
Cynthia J. Wolf,Hunter Fitzpatrick,Carrie Becker,Jessica Smith,Carmen R. Wood
出处
期刊:Teratology [Wiley]
卷期号:115 (16): 1513-1533 被引量:1
标识
DOI:10.1002/bdr2.2229
摘要

Abstract Background Tissue fusion is a mechanism involved in the development of the heart, iris, genital tubercle, neural tube, and palate during embryogenesis. Failed fusion of the palatal shelves could result in cleft palate (CP), a common birth defect. Organotypic models constructed of human cells offer an opportunity to investigate developmental processes in the human. Previously, our laboratory developed an organoid model of the human palate that contains human mesenchyme and epithelial progenitor cells to study the effects of chemicals on fusion. Methods Here, we developed an organoid model more representative of the embryonic palate that includes three cell types: mesenchyme, endothelial, and epithelial cells. We measured fusion by a decrease in epithelial cells at the contact point between the organoids and compared the effects of CP teratogens on fusion and toxicity in the previous and current organoid models. We further tested additional suspect teratogens in our new model. Results We found that the three‐cell‐type model is more sensitive to fusion inhibition by valproic acid and inhibitors of FGF, BMP, and TGFβRI/II. In this new model, we tested other suspect CP teratogens and found that nocodazole, topiramate, and Y27632 inhibit fusion at concentrations that do not induce toxicity. Conclusion This sensitive human three‐cell‐type organotypic model accurately evaluates chemicals for cleft palate teratogenicity.
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