| Literature DB >> 25009532 |
Eva K Wirth1, Ulrich Schweizer2, Josef Köhrle1.
Abstract
Thyroid hormone (TH) transport into the brain is not only pivotal for development and differentiation, but also for maintenance and regulation of adult central nervous system (CNS) function. In this review, we highlight some key factors and structures regulating TH uptake and distribution. Serum TH binding proteins play a major role for the availability of TH since only free hormone concentrations may dictate cellular uptake. One of these proteins, transthyretin is also present in the cerebrospinal fluid (CSF) after being secreted by the choroid plexus. Entry routes into the brain like the blood-brain-barrier (BBB) and the blood-CSF-barrier will be explicated regarding fetal and adult status. Recently identified TH transmembrane transporters (THTT) like monocarboxylate transporter 8 (Mct8) play a major role in uptake of TH across the BBB but as well in transport between cells like astrocytes and neurons within the brain. Species differences in transporter expression will be presented and interference of TH transport by endogenous and exogenous compounds including endocrine disruptors and drugs will be discussed.Entities:
Keywords: Mct8; blood–brain-barrier; deiodinase; endocrine disruptors; flavonoids; l-type amino acid transporter; organic anion transporters; transthyretin
Year: 2014 PMID: 25009532 PMCID: PMC4067591 DOI: 10.3389/fendo.2014.00098
Source DB: PubMed Journal: Front Endocrinol (Lausanne) ISSN: 1664-2392 Impact factor: 5.555
Summary of expression profiles of thyroid hormone transmembrane transporters (THTT) in various cell types of the brain of several species.
| Transporter | Species | Areas of the brain | References |
|---|---|---|---|
| Slc16a2 (Mct8) | Mouse | Protein: cortex, hippocampus, cerebellum, choroid plexus, hypothalamus, tanycytes, vessels | ( |
| Human | Protein: cortex, hippocampus, choroid plexus, hypothalamus, tanycytes | ||
| Widespread expression in fetal brain | ( | ||
| Rat | Protein: hippocampus, tanycytes, vessels | ( | |
| Chicken | Transcript: brain | ( | |
| Siberian hamster | Transcript: hypothalamus | ( | |
| Rabbit | Transcript: hypothalamus | ( | |
| Zebrafish | Transcript: brain | ( | |
| Fathead minnow | Transcript: cortex, cerebellum, hypothalamus | ( | |
| Transcript: brain | ( | ||
| Slc16a10 (Mct10) | Mouse | Transcript: cortex, hippocampus, choroid plexus | ( |
| Human | Protein: cortex, choroid plexus, hypothalamus | ( | |
| Rabbit | Transcript: hypothalamus | ( | |
| Fathead minnow | Transcript: cortex, cerebellum, hypothalamus | ( | |
| Transcript: brain | ( | ||
| Slc7a5 (Lat1) | Mouse | Transcript: hippocampus, choroid plexus | ( |
| Protein: cortex, cerebellum | |||
| Human | Transcript: cortex | ( | |
| Transcript: brain | ( | ||
| Slc7a8 (Lat2) | Mouse | Protein: cortex, hippocampus, cerebellum, choroid plexus | ( |
| Human | Protein: adult: cortex, hippocampus, choroid plexus; fetal: microglia | ( | |
| Slco1c1 (Oatp14) | Mouse | Transcript: cortex, hippocampus | ( |
| Protein: choroid plexus, tanycytes, vessels | |||
| Human | Transcript: cortex | ( | |
| Protein: choroid plexus, hypothalamus | |||
| Rat | Protein: choroid plexus, vessels | ( | |
| Chicken | Transcript: brain | ( | |
| Rabbit | Transcript: hypothalamus | ( | |
| Fathead minnow | Transcript: cortex, cerebellum, hypothalamus | ( | |
| Transcript: brain | ( |
If available, protein data is preferably mentioned. Transcript data is only mentioned if no or only minimal protein data is available.