Related Experiment Videos
[Fetal nutrition in intestinal atresia. Studies on the chick embryo]
B López de Torre1, J A Tovar, S Uriarte
1Servicio de Cirugía Pediátrica, Universidad del País Vasco, Hospital Nuestra Señora de Aránzazu, San Sebastián.
Insights
Prenatal intestinal obstruction in chick embryos caused severe malnutrition and growth restriction. This highlights the critical role of amniotic fluid ingestion for fetal development.
Area of Science:
- Developmental Biology
- Gastroenterology
- Comparative Embryology
Context:
- Prenatal intestinal obstruction is a significant cause of fetal growth restriction.
- Avian embryos rely on amniotic fluid as a primary nutrient source due to the absence of a placenta.
- Intestinal atresia (IA) models are crucial for studying prenatal digestive tract development.
Purpose:
- To investigate the impact of experimental prenatal intestinal obstruction on chick embryo growth and blood composition.
- To assess the role of amniotic fluid ingestion in prenatal development using an avian model.
Summary:
- Experimental prenatal intestinal obstruction (IA) in chick embryos resulted in significantly reduced weight and length compared to controls.
- IA chicks exhibited altered blood composition, including decreased hematocrit and specific protein fractions (albumin, alpha/beta globulins), with a notable increase in gamma-globulin.
- Despite normal levels of electrolytes, urea, and glucose, the obstruction led to severe malnutrition, supporting the hypothesis that impaired amniotic fluid transit contributes to fetal undergrowth.
Impact:
- Provides evidence supporting the hypothesis that prenatal interruption of amniotic fluid transit contributes to fetal undergrowth.
- Establishes a valuable avian model for studying the consequences of intestinal obstruction on embryonic development.
- Offers insights into the mechanisms of fetal growth restriction relevant to both avian and human development.
Abstract:
This paper examines the effects of experimental prenatal intestinal obstruction on the growth and blood composition of chick embryos. Intestinal atresia (IA) was produced by bipolar bowel electrocoagulation in fertile eggs on the 14th day of incubation. The chicks sacrificed on the 19th day were measured, weighed and blood-sampled. Twenty-three control, 10 sham-operated and 11 IA chicks were studied. Animals with IA were severely undernourished by weight (43.4 +/- 4.7 vs 70.3 +/- 7.6% of egg weight, p < 0.001) and length (15.3 +/- 1.1 vs 18.1 +/- 9 mm. tibial length, p < 0.001) in comparison with sham-operated ones. Their haematocrit was slightly lower, and total protein increased. Pre-albumin was absent in their sera and albumin, alpha and beta globulins were significantly decreased whereas gamma-globulin was greatly increased. Sodium, potassium chloride, urea and glucose remained within normal limits. The lack of placenta in the avian embryo precludes any supply of nutrients by this route and the ingestion of amniotic fluid, which is protein-rich after the 13th day of incubation, when the opening of the sero-amniotic connection allows albumen to be mixed with it, becomes the main source of nutrients until hatching. Obstruction of the main incoming avenue by IA induces severe malnutrition in this model which relies on this route to a greater extent than the human foetus. In spite of the obvious biological differences between the avian embryo and the human foetus, the present evidence supports the hypothesis that prenatal interruption of the amniotic fluid transit contributes to foetal undergrowth in IA.