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beta 25-35 alters calcium homeostasis and induces neurotoxicity in cerebellar granule cells.
J Neurochem. 1996 May; 66(5):1995-2003.JN

Abstract

We studied the neurotoxic effects of beta 25-35 amyloid fragment (beta 25-35) on cerebellar granule cells and the intracellular mechanisms involved. Treatment for 3 days with peptide greatly reduced the survival of 1 day in vitro (DIV) cultures kept in 5 mM KCI but slightly modified the survival of 25 mM KCI-cultured cerebellar granule cells. We also studied the effect of glutamate on survival of undifferentiated cerebellar granules. We report no neurotoxic effect of glutamate on 3-DIV-treated cultures; whereas in beta 25-35-pretreated cells, a significant glutamate toxicity was observed. Treatment of 6-DIV cells with beta 25-35, performed with 25 mM KCI, induced a late but significant neurotoxic effect after 5 days of exposure, and death occurred within 8 days. Differentiated cerebellar granule cells were also sensitive to glutamate-related neurotoxicity, and this effect was enhanced by beta 25-35 pretreatment. To study the molecular mechanisms underlying the neurotoxic effects of beta 25-35, changes in calcium homeostasis after glutamate stimulation were evaluated in control and beta 25-35-treated cells. beta 25-35 did not affect basal [Ca2+]i but modified glutamate-induced [Ca2+]i increase, causing a sustained plateau phase that persisted even after the removal of the agonist. These results show that beta 25-35 induces neurotoxicity in cerebellar granule cells and that this effect is related to modifications in the control of calcium homeostasis.

Authors+Show Affiliations

Dipartimento di Oncologia Clinica e Sperimentale, Università degli Studi di Genova, Italia.No affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

8780028

Citation

Scorziello, A, et al. "Beta 25-35 Alters Calcium Homeostasis and Induces Neurotoxicity in Cerebellar Granule Cells." Journal of Neurochemistry, vol. 66, no. 5, 1996, pp. 1995-2003.
Scorziello A, Meucci O, Florio T, et al. Beta 25-35 alters calcium homeostasis and induces neurotoxicity in cerebellar granule cells. J Neurochem. 1996;66(5):1995-2003.
Scorziello, A., Meucci, O., Florio, T., Fattore, M., Forloni, G., Salmona, M., & Schettini, G. (1996). Beta 25-35 alters calcium homeostasis and induces neurotoxicity in cerebellar granule cells. Journal of Neurochemistry, 66(5), 1995-2003.
Scorziello A, et al. Beta 25-35 Alters Calcium Homeostasis and Induces Neurotoxicity in Cerebellar Granule Cells. J Neurochem. 1996;66(5):1995-2003. PubMed PMID: 8780028.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - beta 25-35 alters calcium homeostasis and induces neurotoxicity in cerebellar granule cells. AU - Scorziello,A, AU - Meucci,O, AU - Florio,T, AU - Fattore,M, AU - Forloni,G, AU - Salmona,M, AU - Schettini,G, PY - 1996/5/1/pubmed PY - 1996/5/1/medline PY - 1996/5/1/entrez SP - 1995 EP - 2003 JF - Journal of neurochemistry JO - J Neurochem VL - 66 IS - 5 N2 - We studied the neurotoxic effects of beta 25-35 amyloid fragment (beta 25-35) on cerebellar granule cells and the intracellular mechanisms involved. Treatment for 3 days with peptide greatly reduced the survival of 1 day in vitro (DIV) cultures kept in 5 mM KCI but slightly modified the survival of 25 mM KCI-cultured cerebellar granule cells. We also studied the effect of glutamate on survival of undifferentiated cerebellar granules. We report no neurotoxic effect of glutamate on 3-DIV-treated cultures; whereas in beta 25-35-pretreated cells, a significant glutamate toxicity was observed. Treatment of 6-DIV cells with beta 25-35, performed with 25 mM KCI, induced a late but significant neurotoxic effect after 5 days of exposure, and death occurred within 8 days. Differentiated cerebellar granule cells were also sensitive to glutamate-related neurotoxicity, and this effect was enhanced by beta 25-35 pretreatment. To study the molecular mechanisms underlying the neurotoxic effects of beta 25-35, changes in calcium homeostasis after glutamate stimulation were evaluated in control and beta 25-35-treated cells. beta 25-35 did not affect basal [Ca2+]i but modified glutamate-induced [Ca2+]i increase, causing a sustained plateau phase that persisted even after the removal of the agonist. These results show that beta 25-35 induces neurotoxicity in cerebellar granule cells and that this effect is related to modifications in the control of calcium homeostasis. SN - 0022-3042 UR - https://www.unboundmedicine.com/medline/citation/8780028/beta_25_35_alters_calcium_homeostasis_and_induces_neurotoxicity_in_cerebellar_granule_cells_ L2 - https://onlinelibrary.wiley.com/resolve/openurl?genre=article&sid=nlm:pubmed&issn=0022-3042&date=1996&volume=66&issue=5&spage=1995 DB - PRIME DP - Unbound Medicine ER -