Amniotic Fluid

Amniotic fluid is the liquid-filled environment surrounding the developing fetus, providing mechanical protection and supporting normal growth, including formation of the nervous system. It is maintained through maternal and fetal fluid exchange, fetal swallowing and urination, and placental regulation, while its volume and molecular composition change throughout gestation. In neuroscience and developmental biology, amniotic fluid is studied as a dynamic source of nutrients, signaling molecules, and potential biomarkers of fetal brain and neural-tube development; sampling can help identify developmental abnormalities, while research on its composition may clarify prenatal influences on neurodevelopment.

Amniotic Fluid - Related Videos

Research

JoVE Journal - Developmental Biology

Reprogramming Primary Amniotic Fluid and Membrane Cells to Pluripotency in Xeno-free Conditions

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Cited by 3 •

2017

This protocol describes the reprogramming of primary amniotic fluid and membrane mesenchymal stem cells into induced pluripotent stem cells using a non-integrating episomal approach in fully chemically defined conditions. Procedures of extraction, culture, reprogramming, and characterization of the resulting induced pluripotent stem cells by stringent methods are detailed.

The Production of Pluripotent Stem Cells from Mouse Amniotic Fluid Cells Using a Transposon System

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Cited by 2 •

2017

In this study, we generate induced pluripotent stem cells from mouse amniotic fluid cells, using a non-viral-based transposon system.

Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats

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Cited by 20 •

2015

Encephalopathy of prematurity encompasses the central nervous system abnormalities associated with injury from preterm birth. This report describes a clinically relevant rat model of in utero transient systemic hypoxia-ischemia and intra-amniotic lipopolysaccharide administration (LPS) that mimics chorioamnionitis, and the related impact of infectious stimuli and placental underperfusion on CNS development.

Intravenous and Intra-amniotic In Utero Transplantation in the Murine Model

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Cited by 11 •

2018

We describe a protocol for performing an in utero transplantation (IUT) through intravenous and intra-amniotic routes of injection in the murine model. This protocol can be used to introduce cells, viral vectors, and other substances into the unique immune-tolerant fetal environment.

Lumican Extraction from Amniotic Membrane and Determination of its Storage Temperature

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2022

The present protocol describes the extraction of lumican from the amniotic membrane (AM) and their storing conditions as AM extract (AME) at -20 °C, 4 °C, and room temperature (RT) for 6, 12, 20, and 32 days to quantify its proteins and lumican concentration.

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