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PMID: 23922875 已发表 · epublish 英语

SAHA enhances synaptic function and plasticity in vitro but has limited brain availability in vivo and does not impact cognition.

PloS one ·第 8 卷 ·第 7 期 ·2014-04-29

Hanson Jesse E, La Hank, Plise Emile, Chen Yung-Hsiang, Ding Xiao, Hanania Taleen, Sabath Emily V, Alexandrov Vadim, Brunner Dani, Leahy Emer, Steiner Pascal, Liu Lichuan, Scearce-Levie Kimberly, Zhou Qiang

摘要

Suberoylanilide hydroxamic acid (SAHA) is an inhibitor of histone deacetylases (HDACs) used for the treatment of cutaneous T cell lymphoma (CTCL) and under consideration for other indications. In vivo studies suggest reducing HDAC function can enhance synaptic function and memory, raising the possibility that SAHA treatment could have neurological benefits. We first examined the impacts of SAHA on synaptic function in vitro using rat organotypic hippocampal brain slices. Following several days of SAHA treatment, basal excitatory but not inhibitory synaptic function was enhanced. Presynaptic release probability and intrinsic neuronal excitability were unaffected suggesting SAHA treatment selectively enhanced postsynaptic excitatory function. In addition, long-term potentiation (LTP) of excitatory synapses was augmented, while long-term depression (LTD) was impaired in SAHA treated slices. Despite the in vitro synaptic enhancements, in vivo SAHA treatment did not rescue memory deficits in the Tg2576 mouse model of Alzheimer's disease (AD). Along with the lack of behavioral impact, pharmacokinetic analysis indicated poor brain availability of SAHA. Broader assessment of in vivo SAHA treatment using high-content phenotypic characterization of C57Bl6 mice failed to demonstrate significant behavioral effects of up to 150 mg/kg SAHA following either acute or chronic injections. Potentially explaining the low brain exposure and lack of behavioral impacts, SAHA was found to be a substrate of the blood brain barrier (BBB) efflux transporters Pgp and Bcrp1. Thus while our in vitro data show that HDAC inhibition can enhance excitatory synaptic strength and potentiation, our in vivo data suggests limited brain availability may contribute to the lack of behavioral impact of SAHA following peripheral delivery. These results do not predict CNS effects of SAHA during clinical use and also emphasize the importance of analyzing brain drug levels when interpreting preclinical behavioral pharmacology.

文献信息
期刊
PloS one
期刊简称
PLoS One
发表日期
2014-04-29
收录日期
2013-08-07
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
101285081
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