DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons

Kaltschmidt B, Kaltschmidt C (2001)
Mech Dev 101(1-2): 11-19.

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Zeitschriftenaufsatz | Veröffentlicht | Englisch
Erscheinungsjahr
Zeitschriftentitel
Mech Dev
Band
101
Zeitschriftennummer
1-2
Seite
11-19
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Kaltschmidt B, Kaltschmidt C. DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons. Mech Dev. 2001;101(1-2):11-19.
Kaltschmidt, B., & Kaltschmidt, C. (2001). DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons. Mech Dev, 101(1-2), 11-19. doi:10.1016/S0925-4773(00)00542-6
Kaltschmidt, B., and Kaltschmidt, C. (2001). DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons. Mech Dev 101, 11-19.
Kaltschmidt, B., & Kaltschmidt, C., 2001. DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons. Mech Dev, 101(1-2), p 11-19.
B. Kaltschmidt and C. Kaltschmidt, “DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons”, Mech Dev, vol. 101, 2001, pp. 11-19.
Kaltschmidt, B., Kaltschmidt, C.: DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons. Mech Dev. 101, 11-19 (2001).
Kaltschmidt, Barbara, and Kaltschmidt, Christian. “DNA array analysis of the developing rat cerebellum: transforming growth factor-beta2 inhibits constitutively activated NF-kappaB in granule neurons”. Mech Dev 101.1-2 (2001): 11-19.

14 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

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Salles A, Boccia M, Blake M, Corbi N, Passananti C, Baratti CM, Romano A, Freudenthal R., Neuroscience 291(), 2015
PMID: 25659345
Canonical TGF-β pathway activity is a predictor of SHH-driven medulloblastoma survival and delineates putative precursors in cerebellar development.
Aref D, Moffatt CJ, Agnihotri S, Ramaswamy V, Dubuc AM, Northcott PA, Taylor MD, Perry A, Olson JM, Eberhart CG, Croul SE., Brain Pathol 23(2), 2013
PMID: 22966790
Role of nitric oxide produced by iNOS through NF-κB pathway in migration of cerebellar granule neurons induced by Lipopolysaccharide.
Arias-Salvatierra D, Silbergeld EK, Acosta-Saavedra LC, Calderon-Aranda ES., Cell Signal 23(2), 2011
PMID: 20955790
Inhibition of nuclear factor kappa-B signaling reduces growth in medulloblastoma in vivo.
Spiller SE, Logsdon NJ, Deckard LA, Sontheimer H., BMC Cancer 11(), 2011
PMID: 21492457
TGF-β1 induces podocyte injury through Smad3-ERK-NF-κB pathway and Fyn-dependent TRPC6 phosphorylation.
Yu L, Lin Q, Liao H, Feng J, Dong X, Ye J., Cell Physiol Biochem 26(6), 2010
PMID: 21220918
Neuroprotection of microglial conditioned medium on 6-hydroxydopamine-induced neuronal death: role of transforming growth factor beta-2.
Polazzi E, Altamira LE, Eleuteri S, Barbaro R, Casadio C, Contestabile A, Monti B., J Neurochem 110(2), 2009
PMID: 19457129
Transforming growth factor-beta1 differentially mediates fibronectin and inflammatory cytokine expression in kidney tubular cells.
Qi W, Chen X, Holian J, Mreich E, Twigg S, Gilbert RE, Pollock CA., Am J Physiol Renal Physiol 291(5), 2006
PMID: 16720864
Signaling via NF-kappaB in the nervous system.
Kaltschmidt B, Widera D, Kaltschmidt C., Biochim Biophys Acta 1745(3), 2005
PMID: 15993497
Apoptosis in podocytes induced by TGF-beta and Smad7.
Schiffer M, Bitzer M, Roberts IS, Kopp JB, ten Dijke P, Mundel P, Böttinger EP., J Clin Invest 108(6), 2001
PMID: 11560950
The functional genomic response of developing embryonic submandibular glands to NF-kappa B inhibition.
Melnick M, Chen H, Min Zhou Y, Jaskoll T., BMC Dev Biol 1(), 2001
PMID: 11716784

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