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1.
Differentiation ; 134: 1-10, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37690144

RESUMEN

Barrett's oesophagus (BO) is a pathological condition in which the squamous epithelium of the distal oesophagus is replaced by an intestinal-like columnar epithelium originating from the gastric cardia. Several somatic mutations contribute to the intestinal-like metaplasia. Once these have occurred in a single cell, it will be unable to expand further unless the altered cell can colonise the surrounding squamous epithelium of the oesophagus. The mechanisms by which this happens are still unknown. Here we have established an in vitro system for examining the competitive behaviour of two epithelia. We find that when an oesophageal epithelium model (Het1A cells) is confronted by an intestinal epithelium model (Caco-2 cells), the intestinal cells expand into the oesophageal domain. In this case the boundary involves overgrowth by the Caco-2 cells and the formation of isolated colonies. Two key transcription factors, normally involved in intestinal development, HNF4α and CDX2, are both expressed in BO. We examined the competitive ability of Het1A cells stably expressing HNF4α or CDX2 and placed in confrontation with unmodified Het1A cells. The key result is that stable expression of HNF4α, but not CDX2, increased the ability of the cells to migrate and push into the unmodified Het1A domain. In this situation the boundary between the cell types is a sharp one, as is normally seen in BO. The experiments were conducted using a variety of extracellular substrates, which all tended to increase the cell migration compared to uncoated plastic. These data provide evidence that HNF4α expression could have a potential role in the competitive spread of BO into the oesophagus as HNF4α increases the ability of cells to invade into the adjacent stratified squamous epithelium, thus enabling a single mutant cell eventually to generate a macroscopic patch of metaplasia.


Asunto(s)
Esófago de Barrett , Carcinoma de Células Escamosas , Humanos , Esófago de Barrett/genética , Esófago de Barrett/metabolismo , Esófago de Barrett/patología , Células CACO-2 , Factor de Transcripción CDX2/genética , Factor de Transcripción CDX2/metabolismo , Expresión Génica Ectópica , Metaplasia , Fenotipo
2.
Genes (Basel) ; 11(10)2020 09 30.
Artículo en Inglés | MEDLINE | ID: mdl-33008122

RESUMEN

The canonical Wnt (Wnt/ß-catenin) signalling pathway is highly conserved and plays a critical role in regulating cellular processes both during development and in adult tissue homeostasis. The Wnt/ß-catenin signalling pathway is vital for correct body patterning and is involved in fate specification of the gut tube, the primitive precursor of liver. In adults, the Wnt/ß-catenin pathway is increasingly recognised as an important regulator of metabolic zonation, homeostatic renewal and regeneration in response to injury throughout the liver. Herein, we review recent developments relating to the key role of the pathway in the patterning and fate specification of the liver, in the directed differentiation of pluripotent stem cells into hepatocytes and in governing proliferation and zonation in the adult liver. We pay particular attention to recent contributions to the controversy surrounding homeostatic renewal and proliferation in response to injury. Furthermore, we discuss how crosstalk between the Wnt/ß-catenin and Hedgehog (Hh) and hypoxia inducible factor (HIF) pathways works to maintain liver homeostasis. Advancing our understanding of this pathway will benefit our ability to model disease, screen drugs and generate tissue and organ replacements for regenerative medicine.


Asunto(s)
Hígado/fisiología , Vía de Señalización Wnt , Animales , Tipificación del Cuerpo , Diferenciación Celular , Gastrulación , Proteínas Hedgehog/metabolismo , Hepatocitos/citología , Hepatocitos/metabolismo , Homeostasis , Humanos , Hígado/citología , Hígado/embriología , Hígado/metabolismo , Regeneración Hepática , Células Madre Pluripotentes/citología , Proteínas Wnt/metabolismo , beta Catenina/metabolismo
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