34 research outputs found
The effects of ethanol and silymarin treatment during gestation on spatial working memory.
BACKGROUND: Using a rat model we have found that the bioflavonoid silymarin (SY) ameliorates some of the negative consequences of in utero exposure to ethanol (EtOH). In the current study our aim was to determine if spatial working memory (SWM) was impaired in offspring whose mothers were maintained on a liquid diet containing EtOH during different gestational weeks. We also determined if SWM was altered with a concomitant administration of SY with EtOH during specific gestational weeks. METHODS: We provided pregnant Fischer/344 rats with liquid diets containing 35% EtOH derived calories (EDC) during specific weeks of the gestational period. A silymarin/phospholipid compound containing 29.8% silybin co-administered with EtOH was also administered during specific weeks of the gestational period. We tested SWM of the offspring with a radial arm maze on postnatal day (PND) 60. After testing the rats were sacrificed and their brains perfused for later analysis. RESULTS: We observed SWM deficits, as well as a significantly lower brain weight in female offspring born of mothers treated with EtOH during the third week of gestation in comparison to mothers treated during either the first or second weeks of gestation. Rats from any group receiving EtOH in co-administration with SY showed no significant deficits in SWM. CONCLUSION: EtOH treatment during the last week of gestation had the greatest impact on SWM. The addition of SY to the EtOH liquid diet appeared to ameliorate the EtOH-induced learning deficits
Genome-Wide Association Study of Schizophrenia in Japanese Population
Schizophrenia is a devastating neuropsychiatric disorder with genetically complex traits. Genetic variants should explain a considerable portion of the risk for schizophrenia, and genome-wide association study (GWAS) is a potentially powerful tool for identifying the risk variants that underlie the disease. Here, we report the results of a three-stage analysis of three independent cohorts consisting of a total of 2,535 samples from Japanese and Chinese populations for searching schizophrenia susceptibility genes using a GWAS approach. Firstly, we examined 115,770 single nucleotide polymorphisms (SNPs) in 120 patient-parents trio samples from Japanese schizophrenia pedigrees. In stage II, we evaluated 1,632 SNPs (1,159 SNPs of p<0.01 and 473 SNPs of p<0.05 that located in previously reported linkage regions). The second sample consisted of 1,012 case-control samples of Japanese origin. The most significant p value was obtained for the SNP in the ELAVL2 [(embryonic lethal, abnormal vision, Drosophila)-like 2] gene located on 9p21.3 (pâ=â0.00087). In stage III, we scrutinized the ELAVL2 gene by genotyping gene-centric tagSNPs in the third sample set of 293 family samples (1,163 individuals) of Chinese descent and the SNP in the gene showed a nominal association with schizophrenia in Chinese population (pâ=â0.026). The current data in Asian population would be helpful for deciphering ethnic diversity of schizophrenia etiology
Different miRNA profiles in plasma derived small and large extracellular vesicles of neurodegenerative disease patients.
Identifying biomarkers is essential for early diagnosis of neurodegenerative diseases
(NDs). Large (LEVs) and small extracellular vesicles (SEVs) are extracellular vesicles (EVs) of
different sizes and biological functions transported in blood and they may be valid biomarkers for
NDs. The aim of our study was to investigate common and different miRNA signatures in plasma
derived LEVs and SEVs of Alzheimerâs disease (AD), Parkinsonâs disease (PD), Amyotrophic
Lateral Sclerosis (ALS) and FrontoâTemporal Dementia (FTD) patients. LEVs and SEVs were
isolated from plasma of patients and healthy volunteers (CTR) by filtration and differential
centrifugation and RNA was extracted. Small RNAs libraries were carried out by Next Generation
Sequencing (NGS). MiRNAs discriminate all NDs diseases from CTRs and they can provide a
signature for each NDs. Common enriched pathways for SEVs were instead linked to ubiquitin
mediated proteolysis and Tollâlike receptor signaling pathways and for LEVs to neurotrophin
signaling and Glycosphingolipid biosynthesis pathway. LEVs and SEVs are involved in different
pathways and this might give a specificity to their role in the spreading of the disease. The study of
common and different miRNAs transported by LEVs and SEVs can be of great interest for
biomarker discovery and for pathogenesis studies in neurodegeneration