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Updated: Aug 29, 2026

Ileectomy-induced Bile Overaccumulation in Mouse Intestine
Published on: August 21, 2017
Ontogenetic development of rat intestinal bile acid transport requires thyroxine but not corticosterone
IonaM Monteiro1, Elmer S David, Ronaldo P Ferraris
1Department of Pediatrics, New Jersey Medical School, 185 S. Orange Avenue, Newark, NJ 07103-2714, USA.
Insights
Thyroxine, not corticosterone, regulates the development of the apical sodium-dependent bile acid transporter (ASBT) in neonatal rat ileum. This hormone is crucial for bile acid absorption during development.
Area of Science:
- Physiology
- Endocrinology
- Developmental Biology
Background:
- Bile acid absorption in the distal ileum is vital for enterohepatic circulation.
- Apical sodium-dependent bile acid transporter (ASBT) expression in neonatal rats increases with serum corticosterone and thyroxine.
- The role of these hormones in ASBT development is unclear.
Purpose of the Study:
- To investigate the hypothesis that corticosterone and thyroxine modulate ASBT expression during ileal development.
- To determine the specific roles of thyroxine and corticosterone in regulating ASBT expression and function.
Main Methods:
- Isolated ileum taurocholate uptake studies in neonatal rats.
- Analysis of ASBT mRNA abundance via quantitative PCR.
- Hormonal manipulation through thyroxine injections and adrenalectomy.
- Measurement of serum thyroxine and corticosterone levels.
Main Results:
- Ileal ASBT mRNA and taurocholate uptake were low in hypothyroid pups but increased with age in euthyroid pups.
- Thyroxine administration restored normal ASBT development in hypothyroid pups.
- ASBT expression and function were independent of corticosterone levels in adrenalectomized rats.
Conclusions:
- Endogenous thyroxine is a key regulator of the developmentally timed appearance of ASBT in the neonatal rat ileum.
- Corticosterone does not appear to play a significant role in ASBT regulation during this developmental period.
- Thyroid hormone is essential for establishing proper bile acid transport capacity in the developing gut.
Abstract:
Absorption of bile acids by the distal ileum is an essential component of the enterohepatic circulation. In neonatal rats, the appearance of the apical sodium-dependent bile acid transporter (ASBT) at 17 d of age coincides with increases in serum corticosterone and thyroxine. We tested the hypothesis that these hormones modulate ASBT expression during ileal development. Taurocholate uptake into the isolated ileum of normal 20-d-old pups exhibited saturable (K(m) = 0.52 mM, J(max) = 0.34 pmol mg/min) and nonsaturable (K(diff) = 0.015 min(-1)) components and was two to five times greater than uptake in the proximal intestine. Hypothyroid or euthyroid pups received daily thyroxine injections starting at 6 d of age. At 12 d of age, serum concentrations of thyroxine, ileal abundance of ASBT mRNA, and ileal rates of taurocholate uptake were low in hypothyroid pups that received an injection of vehicle (HT-) or thyroxine (HT+) and in euthyroid pups that received an injection of vehicle (ET-) or thyroxine (ET+). At 20 and 26 d, ileal ASBT mRNA abundance and taurocholate uptake rate remained low in HT- pups but increased dramatically in ET- and ET+ pups, paralleling the increase in serum thyroxine. Restoration of normal plasma thyroxine in HT- pups by thyroxine injections (HT+) restored normal ASBT development. Sodium-glucose co-transporter activity and mRNA expression were independent of serum thyroxine levels. Corticosterone levels were significantly lower in pups that were adrenalectomized at 10 d of age. ASBT mRNA abundance and taurocholate uptake rate increased markedly with age but were the same in adrenalectomized, sham-operated, and nonoperated pups. Hence, endogenous thyroxine but not corticosterone regulates the developmentally timed appearance of ASBT.
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