The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S Dossena, A Maccagni, V Vezzoli… - European journal of …, 2005 - academic.oup.com
Abstract Objective The SLC26A4 protein (pendrin) seems to be involved in the exchange of
chloride with other anions, therefore being responsible for iodide organification in the thyroid …

[引用][C] The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S DOSSENA, A MACCAGNI… - European journal of …, 2005 - pascal-francis.inist.fr
The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293
Phoenix) cells leads to the activation of cationic currents CNRS Inist Pascal-Francis CNRS …

The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S Dossena, A Maccagni, V Vezzoli… - European journal …, 2005 - pubmed.ncbi.nlm.nih.gov
Objective The SLC26A4 protein (pendrin) seems to be involved in the exchange of chloride
with other anions, therefore being responsible for iodide organification in the thyroid gland …

[PDF][PDF] The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S Dossena, A Maccagni, V Vezzoli, C Bazzini… - European Journal of …, 2005 - Citeseer
Abstract Objective: The SLC26A4 protein (pendrin) seems to be involved in the exchange of
chloride with other anions, therefore being responsible for iodide organification in the thyroid …

The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents.

S Dossena - European Journal of Endocrinology, 2005 - search.ebscohost.com
Abstract OBJECTIVE: The SLC26A4 protein (pendrin) seems to be involved in the exchange
of chloride with other anions, therefore being responsible for iodide organification in the …

The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents.

S Dossena, A Maccagni, V Vezzoli… - EUROPEAN …, 2005 - iris.unisalento.it
OBJECTIVE: The SLC26A4 protein (pendrin) seems to be involved in the exchange of
chloride with other anions, therefore being responsible for iodide organification in the thyroid …

[PDF][PDF] The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S Dossena, A Maccagni, V Vezzoli, C Bazzini… - European Journal of …, 2005 - air.unimi.it
Abstract Objective: The SLC26A4 protein (pendrin) seems to be involved in the exchange of
chloride with other anions, therefore being responsible for iodide organification in the thyroid …

[PDF][PDF] The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S Dossena, A Maccagni, V Vezzoli… - European Journal of …, 2005 - researchgate.net
Abstract Objective: The SLC26A4 protein (pendrin) seems to be involved in the exchange of
chloride with other anions, therefore being responsible for iodide organification in the thyroid …

[PDF][PDF] The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S Dossena, A Maccagni, V Vezzoli… - European Journal of …, 2005 - academia.edu
Abstract Objective: The SLC26A4 protein (pendrin) seems to be involved in the exchange of
chloride with other anions, therefore being responsible for iodide organification in the thyroid …

[PDF][PDF] The expression of wild-type pendrin (SLC26A4) in human embryonic kidney (HEK 293 Phoenix) cells leads to the activation of cationic currents

S Dossena, A Maccagni, V Vezzoli, C Bazzini… - European Journal of …, 2005 - core.ac.uk
Abstract Objective: The SLC26A4 protein (pendrin) seems to be involved in the exchange of
chloride with other anions, therefore being responsible for iodide organification in the thyroid …