This menu provides the list of EV miRNAs identified by high-throughput analyses.
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Search:
Dataset accession
miRBase accession
Mature name
Orthologous group
Superdomain:
All
Prokaryote
Eukaryote
Filter datasets:
- "Sample type" indicates the source from which EVs originated (e.g. B cell, serum).
- "Sample status" indicates the condition of the source from which EVs originated (e.g. Normal, miR-146a-treated, Patients of hernia).
By species
Bos taurus
Homo sapiens
Mus musculus
In vitro/In vivo
In vitro
In vivo
By sample type
Breast cancer cells (4T1)
Breast cancer cells (MCF7)
Breast cancer cells (MDA-MB-231)
Mammary gland cells (MCF10A)
Plasma
Seminal plasma
By sample status
24 hr culture
72 hr culture
Grain-fed
Grazing
Grazing_0 month
Grazing_1 month
Grazing_2 month
Grazing_4 month
Housed_0 month
Housed_2 month
Housed_4 month
Normal
Vasectomy
Vasovasostomy
Maximum false positive rate (FPR):
Maximum true positive rate (TPR):
- FPR is the probability that an absent miRNA accidently have higher intensity than that miRNA.
- TPR is the percentile of miRNA among the present miRNAs.
Please see user manual in the contact us/help menu for detail.
Number of molecules in one page:
100
200
All
The downloaded CSV file is not exactly the same as the displayed table. Opening CSV file with Excel can impair its content.
Since there are multiple primers in the microarray, the same miRNA can have several FPR and TPR values.
Mature name
miRBase accession
FPR
TPR
Publication
Orthologous group
Identification count
All / Prokaryote / Eukaryote
(FPR<0.05,TPR<0.5)
bta-miR-2888
MIMAT0013846
0.0e+0
1.3e-1
microRNA signature is altered in both human epididymis and seminal microvesicles following vasectomy.
Hum Reprod. 2013 Jun;28(6):1455-67. doi: 10.1093/humrep/det088. Epub 2013 Mar 28.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
1.7e-1
microRNA signature is altered in both human epididymis and seminal microvesicles following vasectomy.
Hum Reprod. 2013 Jun;28(6):1455-67. doi: 10.1093/humrep/det088. Epub 2013 Mar 28.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
1.7e-1
microRNA signature is altered in both human epididymis and seminal microvesicles following vasectomy.
Hum Reprod. 2013 Jun;28(6):1455-67. doi: 10.1093/humrep/det088. Epub 2013 Mar 28.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
5.6e-3
Cancer Exosomes Perform Cell-Independent MicroRNA Biogenesis and Promote Tumorigenesis.
Cancer Cell. 2014 Nov 10;26(5):707-721. doi: 10.1016/j.ccell.2014.09.005. Epub 2014 Oct 23.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
9.7e-5
Cancer Exosomes Perform Cell-Independent MicroRNA Biogenesis and Promote Tumorigenesis.
Cancer Cell. 2014 Nov 10;26(5):707-721. doi: 10.1016/j.ccell.2014.09.005. Epub 2014 Oct 23.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
9.4e-8
Cancer Exosomes Perform Cell-Independent MicroRNA Biogenesis and Promote Tumorigenesis.
Cancer Cell. 2014 Nov 10;26(5):707-721. doi: 10.1016/j.ccell.2014.09.005. Epub 2014 Oct 23.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
1.5e-6
Cancer Exosomes Perform Cell-Independent MicroRNA Biogenesis and Promote Tumorigenesis.
Cancer Cell. 2014 Nov 10;26(5):707-721. doi: 10.1016/j.ccell.2014.09.005. Epub 2014 Oct 23.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
4.2e-3
Cancer Exosomes Perform Cell-Independent MicroRNA Biogenesis and Promote Tumorigenesis.
Cancer Cell. 2014 Nov 10;26(5):707-721. doi: 10.1016/j.ccell.2014.09.005. Epub 2014 Oct 23.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
4.8e-1
Cancer Exosomes Perform Cell-Independent MicroRNA Biogenesis and Promote Tumorigenesis.
Cancer Cell. 2014 Nov 10;26(5):707-721. doi: 10.1016/j.ccell.2014.09.005. Epub 2014 Oct 23.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
2.1e-1
Grazing Affects Exosomal Circulating MicroRNAs in Cattle.
PLoS One. 2015 Aug 26;10(8):e0136475. doi: 10.1371/journal.pone.0136475. eCollection 2015.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
1.6e-2
1.6e-2
Grazing Affects Exosomal Circulating MicroRNAs in Cattle.
PLoS One. 2015 Aug 26;10(8):e0136475. doi: 10.1371/journal.pone.0136475. eCollection 2015.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
3.2e-2
3.2e-2
Grazing Affects Exosomal Circulating MicroRNAs in Cattle.
PLoS One. 2015 Aug 26;10(8):e0136475. doi: 10.1371/journal.pone.0136475. eCollection 2015.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
3.1e-4
3.1e-4
Grazing Affects Exosomal Circulating MicroRNAs in Cattle.
PLoS One. 2015 Aug 26;10(8):e0136475. doi: 10.1371/journal.pone.0136475. eCollection 2015.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
1.2e-2
1.2e-2
Grazing Affects Exosomal Circulating MicroRNAs in Cattle.
PLoS One. 2015 Aug 26;10(8):e0136475. doi: 10.1371/journal.pone.0136475. eCollection 2015.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
4.7e-3
4.7e-3
Grazing Affects Exosomal Circulating MicroRNAs in Cattle.
PLoS One. 2015 Aug 26;10(8):e0136475. doi: 10.1371/journal.pone.0136475. eCollection 2015.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
3.0e-1
Grazing Affects Exosomal Circulating MicroRNAs in Cattle.
PLoS One. 2015 Aug 26;10(8):e0136475. doi: 10.1371/journal.pone.0136475. eCollection 2015.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
8.0e-2
Differences in Circulating microRNAs between Grazing and Grain-Fed Wagyu Cattle Are Associated with Altered Expression of Intramuscular microRNA, the Potential Target PTEN, and Lipogenic Genes.
PLoS One. 2016 Sep 9;11(9):e0162496. doi: 10.1371/journal.pone.0162496. eCollection 2016.
Not available
18
/
0
/
18
bta-miR-2888
MIMAT0013846
0.0e+0
8.8e-2
Differences in Circulating microRNAs between Grazing and Grain-Fed Wagyu Cattle Are Associated with Altered Expression of Intramuscular microRNA, the Potential Target PTEN, and Lipogenic Genes.
PLoS One. 2016 Sep 9;11(9):e0162496. doi: 10.1371/journal.pone.0162496. eCollection 2016.
Not available
18
/
0
/
18
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