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Items: 1 to 20 of 52

1.

Ventral hippocampal transcriptome analysis after acute corticosterone exposure.

(Submitter supplied) Aim: We investigated the effect of acute corticosterone exposure 3 hours after subcutaneous injection on the ventral hippocampus transcriptome. Methods: Adult male mice were used in the experiment. Mice were sacrificed 3 hours after corticosterone (3mg/kg) of vehicle injection and the ventral hippocampus was dissected and snap-frozen. Subsequently, total RNA was isolated and send for 100bp paired-end sequencing by BGI.
Organism:
Mus musculus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL28457
8 Samples
Download data: TSV
Series
Accession:
GSE184924
ID:
200184924
2.

Hepatic transcriptome analysis after acute and chronic glucocorticoid exposure combined with androgen receptor antagonism.

(Submitter supplied) Aim: We investigated the effect of acute and chronic glucocorticoid exposure on the hepatic transcriptome and its dependency on active androgen signaling. Methods: Adult male mice were used in the experiments. For the chronic exposure, mice were implanted with CORT (20mg) or vehicle pellets and administered ENZA (40mg/kg/day) or solvent via oral gavage. For the acute exposure, mice were pre-treated with ENZA (40mg/kg/day) or solvent every 12 hours for 24 hours via oral gavage and subsequently subcutaneously injected with 3mg/kg CORT or vehicle. more...
Organism:
Mus musculus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL28457
42 Samples
Download data: TSV
Series
Accession:
GSE180445
ID:
200180445
3.

Reproductive tract extracellular vesicles are sufficient to transmit intergenerational stress and program neurodevelopment

(Submitter supplied) We report reproductive tract extracellular vesicles (EVs) transmit information regarding stress in the paternal environment to sperm, ultimately altering fetal development. Using intracytoplasmic sperm injection, we found that sperm incubated with EVs collected from stress-treated epididymal epithelial cells produced offspring with altered neurodevelopment and adult stress reactivity. Proteomic and transcriptomic assessment of these EVs showed dramatic changes in protein and miRNA content long after stress treatment had ended.
Organism:
Homo sapiens; Mus musculus
Type:
Expression profiling by high throughput sequencing; Non-coding RNA profiling by high throughput sequencing
Platforms:
GPL19057 GPL18573
132 Samples
Download data: CSV
Series
Accession:
GSE145051
ID:
200145051
4.

Transcriptomic response of the arcuate nucleus to oral corticosterone treatment

(Submitter supplied) Glucocorticoids (GCs) are widely prescribed to treat inflammatory and autoimmune conditions. However, patients often develop adverse metabolic effects, including hyperphagia, obesity, and hyperglycemia.The arcuate nucleus has an established role in the central control of energy balance. In this study we examined the transcriptomic response of the arcuate nucleus to oral corticosterone treatment. Gene expression changes were measured after 2 days and 4 weeks of Cort treatment in ad libitum fed C57BL6/J mice.
Organism:
Mus musculus
Type:
Expression profiling by high throughput sequencing
Platforms:
GPL21103 GPL17021
20 Samples
Download data: TXT
Series
Accession:
GSE128148
ID:
200128148
5.

Sample_8_CORT

Organism:
Mus musculus
Source name:
ventral hippocampus_Corticosterone
Platform:
GPL28457
Series:
GSE184924
Download data
Sample
Accession:
GSM5600434
ID:
305600434
6.

Sample_7_CORT

Organism:
Mus musculus
Source name:
ventral hippocampus_Corticosterone
Platform:
GPL28457
Series:
GSE184924
Download data
Sample
Accession:
GSM5600433
ID:
305600433
7.

Sample_6_CORT

Organism:
Mus musculus
Source name:
ventral hippocampus_Corticosterone
Platform:
GPL28457
Series:
GSE184924
Download data
Sample
Accession:
GSM5600432
ID:
305600432
8.

Sample_5_CORT

Organism:
Mus musculus
Source name:
ventral hippocampus_Corticosterone
Platform:
GPL28457
Series:
GSE184924
Download data
Sample
Accession:
GSM5600431
ID:
305600431
9.

Sample_acute_L36A_CORT_ENZA

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462932
ID:
305462932
10.

Sample_acute_L32A_CORT

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462930
ID:
305462930
11.

Sample_acute_L30A_CORT_ENZA

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462928
ID:
305462928
12.

Sample_acute_L26A_CORT

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462926
ID:
305462926
13.

Sample_acute_L24A_CORT_ENZA

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462924
ID:
305462924
14.

Sample_acute_L20A_CORT

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462922
ID:
305462922
15.

Sample_acute_L18A_CORT_ENZA

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462920
ID:
305462920
16.

Sample_acute_L14A_CORT

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462918
ID:
305462918
17.

Sample_acute_L12A_CORT_ENZA

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462916
ID:
305462916
18.

Sample_acute_L8A_CORT

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462914
ID:
305462914
19.

Sample_acute_L6A_CORT_ENZA

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462912
ID:
305462912
20.

Sample_acute_L2A_CORT

Organism:
Mus musculus
Source name:
liver
Platform:
GPL28457
Series:
GSE180445
Download data
Sample
Accession:
GSM5462910
ID:
305462910
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