Artificial Decidualization

Artificial decidualization is the laboratory induction of decidual transformation in endometrial stromal cells, a process that models the uterine preparation required for embryo implantation and early pregnancy. In vitro, hormonal signals such as progesterone and agents that elevate cyclic AMP drive stromal cells to change morphology and express decidual markers, including prolactin and insulin-like growth factor-binding protein 1. This model enables researchers to examine cellular communication, implantation biology, and maternal-fetal interface development without relying exclusively on animal or clinical samples. It also supports investigation of pregnancy complications, including implantation failure, impaired placentation, and disorders linked to abnormal decidual responses.

Artificial Decidualization - Related Videos

Research

JoVE Journal - Developmental Biology

Generation of a Mouse Artificial Decidualization Model with Ovariectomy for Endometrial Decidualization Research

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Cited by 7 •

2022

Here, we describe the method of generating an artificial decidualization model using the ovariectomized mouse, a classic endometrial decidualization experiment in the research field of endometrial decidualization.

Research

JoVE Journal - Developmental Biology
Free Sample

Isolation of Mouse Endometrial Epithelial and Stromal Cells for In Vitro Decidualization

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Cited by 86 •

2017

This study presents a standardized and validated method for the isolation and culture of primary mouse endometrial stromal and epithelial cells, which can be used in a coculture system to study in vitro decidualization.

Human Placental and Decidual Organ Cultures to Study Infections at the Maternal-fetal Interface

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Cited by 7 •

2016

A simple method to establish primary human placental (villous) and decidual organ cultures is described. Villous and decidual organ cultures are invaluable tools for studying pathogenesis at the human maternal-fetal interface. Infection with the facultative intracellular bacterium Listeria monocytogenes is demonstrated.

Establishing Villous and Decidual Organ Cultures as Ex Vivo Models of Human Maternal-Fetal Interface

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2025

This video demonstrates the establishment of primary human placental villous and decidual organ cultures in ex vivo conditions. These models are well-suited for studying pathogenesis at the human maternal-fetal interface.

Education

JoVE Lab Manual - Biology

Artificial Selection - Concepts

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2019

Natural Selection and Adaptive Evolution In natural settings, adaptive evolution takes place by natural selection, a process in which differences in traits lead to differences in survival and reproductive success between individuals. This happens because individuals with certain phenotypes have a higher probability of survival and/or produce more surviving offspring than individuals with other phenotypes. A classic example of this was demonstrated by Rosemary and Peter Grant studying the...

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