Mechanism of acetylcholine-induced calcium signaling, proliferation and differentiation effects during In vitro neuronal differentiation of embryonal cells (2007)
- Authors:
- USP affiliated authors: BRITTO, LUIZ ROBERTO GIORGETTI DE - ICB ; ULRICH, ALEXANDER HENNING - IQ
- Unidades: ICB; IQ
- Subjects: BIOQUÍMICA; PROLIFERAÇÃO CELULAR
- Language: Inglês
- Imprenta:
- Source:
- Título: Abstracts
- Conference titles: Reunião Anual da Sociedade Brasileira de Bioquímica e Biologia Molecular
-
ABNT
GOMES, Katia Neves et al. Mechanism of acetylcholine-induced calcium signaling, proliferation and differentiation effects during In vitro neuronal differentiation of embryonal cells. 2007, Anais.. São Paulo: SBBq, 2007. . Acesso em: 28 dez. 2025. -
APA
Gomes, K. N., Resende, R. R., Britto, L. R. G. de, & Ulrich, H. (2007). Mechanism of acetylcholine-induced calcium signaling, proliferation and differentiation effects during In vitro neuronal differentiation of embryonal cells. In Abstracts. São Paulo: SBBq. -
NLM
Gomes KN, Resende RR, Britto LRG de, Ulrich H. Mechanism of acetylcholine-induced calcium signaling, proliferation and differentiation effects during In vitro neuronal differentiation of embryonal cells. Abstracts. 2007 ;[citado 2025 dez. 28 ] -
Vancouver
Gomes KN, Resende RR, Britto LRG de, Ulrich H. Mechanism of acetylcholine-induced calcium signaling, proliferation and differentiation effects during In vitro neuronal differentiation of embryonal cells. Abstracts. 2007 ;[citado 2025 dez. 28 ] - Role of acetylcholine receptors in proliferation and differentiation of P19 embryonal carcinoma cells
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- Neuronal cell fate determination in P19 embryonic carcinoma cells is dependent on spontaneous calcium oscillations
- Pharmacological properties of purinergic receptors and their effects on proliferation and induction of neuronal differentiation of P19 embryonal carcinoma cells
- Proliferation and differentiation of embryonic cells to neurons depende on purinergic receptor-induced calcium transients
- P19 embryonal carcinoma cells as in vitro model for studying purinergic receptor expression and modulation of N-methyl-D-aspartate-glutamate and acetylcholine receptors during neuronal differentiation
- Carvacrol promotes neuroprotection in the mouse hemiparkinsonian model
- Mechanism of acetylcholine-induced calcium signaling during neuronal differentiation of P19 embryonal carcinoma cells In vitro
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