1α,25-Dihydroxyvitamin D3 mechanism of action: Modulation of L-type calcium channels leading to calcium uptake and intermediate filament phosphorylation in cerebral cortex of young rats

Author:

Zanatta Leila,Goulart Paola Bez,Gonçalves Renata,Pierozan Paula,Winkelmann-Duarte Elisa C.,Woehl Viviane Mara,Pessoa-Pureur Regina,Silva Fátima Regina Mena Barreto,Zamoner Ariane

Funder

CAPES

CNPq-Brazil

PPG-BQA-UFSC

FUNPESQUISA-UFSC

FAPESC

Pharmacy Postgraduate Program/UFSC-Brazil

Ecole Doctorale Normande de Biologie Intégrative, Santé, Environnement/Université de Caen-France

Publisher

Elsevier BV

Subject

Cell Biology,Molecular Biology

Reference101 articles.

1. Structure–function relationships in the vitamin D endocrine system;Bouillon;Endocr. Rev.,1995

2. Vitamin D, disease and therapeutic opportunities;Plum;Nat. Rev. Drug Discov.,2010

3. Vitamin D and human health: lessons from vitamin D receptor null mice;Bouillon;Endocr. Rev.,2008

4. New clues about vitamin D functions in the nervous system;Garcion;Trends Endocrinol. Metab.,2002

5. Vimentin phosphorylation as a target of cell signaling mechanisms induced by 1alpha,25-dihydroxyvitamin D3 in immature rat testes;Zamoner;Steroids,2008

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