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Updated: Aug 6, 2026

Using Multi-fluorinated Bile Acids and In Vivo Magnetic Resonance Imaging to Measure Bile Acid Transport
Published on: November 27, 2016
Postnatal development of intestinal bile salt transport. Relationship to membrane physico-chemical changes
Insights
Ileal active bile salt transport develops in rats by the third postnatal week, linked to changes in microvillus membrane lipid composition and fluidity. This study details the maturation of intestinal nutrient absorption.
Area of Science:
- Gastroenterology and Hepatology
- Developmental Biology
- Membrane Biophysics
Background:
- Intestinal bile salt transport is crucial for nutrient absorption and digestion.
- The postnatal development of this transport system in rats is not fully understood.
- Changes in microvillus membrane properties may influence transport maturation.
Purpose of the Study:
- To investigate the postnatal development of intestinal bile salt transport in rats.
- To correlate the emergence of ileal active transport with microvillus membrane physico-chemical changes.
- To examine the role of membrane lipid composition and fluidity in transport maturation.
Main Methods:
- Utilized the rat villus technique to assess jejunal and ileal taurocholate uptake.
- Analyzed microvillus membrane cholesterol, phospholipid, and fatty acid composition.
- Measured microvillus membrane fluorescence anisotropy to determine fluidity.
Main Results:
- Jejunal taurocholate uptake was linear with concentration at all ages.
- Ileal active transport developed by the third postnatal week, showing saturable kinetics.
- Increased membrane cholesterol and cholesterol/phospholipid ratio, alongside a shift to unsaturated fatty acids, were observed with age. Membrane fluidity changed, particularly at lower temperatures.
Conclusions:
- Ileal active bile salt transport matures during the third postnatal week in rats.
- This maturation is associated with significant alterations in microvillus membrane lipid composition and fluidity.
- Physico-chemical membrane changes play a key role in the development of ileal bile salt transport.
Abstract:
The postnatal development of intestinal bile salt transport in the rat was examined using the villus technique. Jejunal uptake of taurocholate was linear with respect to incubation concentration at all study ages. Ileal uptake was linear with taurocholate concentration during the first 2 postnatal weeks; a curvilinear relationship indicating the presence of saturable transport appeared during the third week. With the appearance of ileal active transport at age 3 weeks, the Km (app) was constant at 0.49 mM, 0.59 mM, and 0.50 mM in 3-week, 4-week, and adult animals, respectively. The V(app) was 14.65 nmol X mg-1 (dry wt) X min-1 at 3 weeks and declined with age to 11.40 and 10.51 nmol X mg-1 (dry wt) X min-1 in 4-week and adult animals, respectively. The role of physico-chemical changes in the microvillus membrane in the development of ileal active transport was examined. With increasing postnatal age, microvillus membrane cholesterol content rose while the phospholipid content remained unchanged in both ileum and jejunum. Corresponding rises in the cholesterol/phospholipid ratio were observed in both sites. Simultaneously, the microvillus membrane fatty acid composition was changing from predominantly saturated to unsaturated species in both ileum and jejunum. The microvillus membrane fluorescence anisotropy (r) increased with postnatal age in jejunum when measured at 25 degrees C and 37 degrees C and ileum when measured at 25 degrees C; however, no change was noted in ileum when measured at 37 degrees C. Ileal active bile salt transport develops during the third postnatal week, and is associated with concurrent changes in membrane lipid composition and fluidity when measured at 25 degrees C.(ABSTRACT TRUNCATED AT 250 WORDS)
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