miRNA description for miR-425-5p
miRNA accession miR-425-5p
Species Homo sapiens
 miR-425-5p identified in exosomes derived from the following tissue/cell type
Lung cancer cells [Small extracellular vesicles] 35136055   
Lung cancer cells [Small extracellular vesicles] 35136055   
Lung cancer cells [Small extracellular vesicles] 35136055   
Lung cancer cells [Small extracellular vesicles] 35136055   
Lung epithelial cells [Small extracellular vesicles] 35136055   
Plasma [Microvesicles] 19002258   
Pulmonary artery endothelial cells [Exosomes] 32132543   
Pulmonary artery endothelial cells [Exosomes] 32132543   
Serum [Exosomes] 18589210   
Urine [Exosomes] 24352158   
 Experiment description of studies that identified miR-425-5p in exosomes
1
Experiment ID2574
Identified moleculemiRNA
Identification method miRNA array
RT-qPCR
PubMed ID 35136055   
OrganismHomo sapiens
Experiment descriptionSyntenin-1-mediated small extracellular vesicles promotes cell growth, migration, and angiogenesis by increasing onco-miRNAs secretion in lung cancer cells
AuthorsKim O, Hwangbo C, Tran PT, Lee JH.
Journal name Cell Death Dis
Publication year2022
SampleLung cancer cells
Sample nameNCI-H226
Molecules identified in the studyProtein
miRNA
Methods used in the studyWestern blotting
miRNA array
EV-TRACK -
2
Experiment ID2575
Identified moleculemiRNA
Identification method miRNA array
RT-qPCR
PubMed ID 35136055   
OrganismHomo sapiens
Experiment descriptionSyntenin-1-mediated small extracellular vesicles promotes cell growth, migration, and angiogenesis by increasing onco-miRNAs secretion in lung cancer cells
AuthorsKim O, Hwangbo C, Tran PT, Lee JH.
Journal name Cell Death Dis
Publication year2022
SampleLung cancer cells
Sample nameNCI-H226
Molecules identified in the studyProtein
miRNA
Methods used in the studyWestern blotting
miRNA array
EV-TRACK -
3
Experiment ID2594
Identified moleculemiRNA
Identification method RT-qPCR
PubMed ID 35136055   
OrganismHomo sapiens
Experiment descriptionSyntenin-1-mediated small extracellular vesicles promotes cell growth, migration, and angiogenesis by increasing onco-miRNAs secretion in lung cancer cells
AuthorsKim O, Hwangbo C, Tran PT, Lee JH.
Journal name Cell Death Dis
Publication year2022
SampleLung cancer cells
Sample nameBZR
Molecules identified in the studymiRNA
Methods used in the studyRT- qPCR
EV-TRACK -
4
Experiment ID2595
Identified moleculemiRNA
Identification method RT-qPCR
PubMed ID 35136055   
OrganismHomo sapiens
Experiment descriptionSyntenin-1-mediated small extracellular vesicles promotes cell growth, migration, and angiogenesis by increasing onco-miRNAs secretion in lung cancer cells
AuthorsKim O, Hwangbo C, Tran PT, Lee JH.
Journal name Cell Death Dis
Publication year2022
SampleLung cancer cells
Sample nameBZR
Molecules identified in the studymiRNA
Methods used in the studyRT- qPCR
EV-TRACK -
5
Experiment ID2593
Identified moleculemiRNA
Identification method RT-qPCR
PubMed ID 35136055   
OrganismHomo sapiens
Experiment descriptionSyntenin-1-mediated small extracellular vesicles promotes cell growth, migration, and angiogenesis by increasing onco-miRNAs secretion in lung cancer cells
AuthorsKim O, Hwangbo C, Tran PT, Lee JH.
Journal name Cell Death Dis
Publication year2022
SampleLung epithelial cells
Sample nameBEAS-2B
Molecules identified in the studymiRNA
Methods used in the studyRT- qPCR
EV-TRACK -
6
Experiment ID175
Identified moleculemiRNA
Identification method RT-PCR
PubMed ID 19002258   
OrganismHomo sapiens
Experiment descriptionDetection of microRNA Expression in Human Peripheral Blood Microvesicles
AuthorsHunter MP, Ismail N, Zhang X, Aguda BD, Lee EJ, Yu L, Xiao T, Schafer J, Lee ML, Schmittgen TD, Nana-Sinkam SP, Jarjoura D, Marsh CB
Journal name PLoS One
Publication year2008
SamplePlasma
Sample namePlasma - Normal
Molecules identified in the studymiRNA
Methods used in the studyRT-PCR
EV-TRACK -
7
Experiment ID1468
Identified moleculemiRNA
Identification method RT-PCR
PubMed ID 32132543   
OrganismHomo sapiens
Experiment descriptionTherapeutic potential of KLF2-induced exosomal microRNAs in pulmonary hypertension
AuthorsSindi HA, Russomanno G, Satta S, Abdul-Salam VB, Jo KB, Qazi-Chaudhry B, Ainscough AJ, Szulcek R, Jan Bogaard H, Morgan CC, Pullamsetti SS, Alzaydi MM, Rhodes CJ, Piva R, Eichstaedt CA, Grünig E, Wilkins MR, Wojciak-Stothard B.
Journal name Nat Commun
Publication year2020
SamplePulmonary artery endothelial cells
Sample nameHPAEC
Molecules identified in the studymiRNA
Methods used in the studyRT-PCR
EV-TRACK -
8
Experiment ID1469
Identified moleculemiRNA
Identification method RT-PCR
PubMed ID 32132543   
OrganismHomo sapiens
Experiment descriptionTherapeutic potential of KLF2-induced exosomal microRNAs in pulmonary hypertension
AuthorsSindi HA, Russomanno G, Satta S, Abdul-Salam VB, Jo KB, Qazi-Chaudhry B, Ainscough AJ, Szulcek R, Jan Bogaard H, Morgan CC, Pullamsetti SS, Alzaydi MM, Rhodes CJ, Piva R, Eichstaedt CA, Grünig E, Wilkins MR, Wojciak-Stothard B.
Journal name Nat Commun
Publication year2020
SamplePulmonary artery endothelial cells
Sample nameHPAEC
Molecules identified in the studymiRNA
Methods used in the studyRT-PCR
EV-TRACK -
9
Experiment ID45
Identified moleculemiRNA
Identification method 467microRNA Array
PubMed ID 18589210   
OrganismHomo sapiens
Experiment descriptionMicroRNA signatures of tumor-derived exosomes as diagnostic biomarkers of ovarian cancer.
AuthorsTaylor DD, Gercel-Taylor C
Journal name GO
Publication year2008
SampleSerum
Sample nameSerum - Papillary adenocarcinoma of ovary
Molecules identified in the studyProtein
miRNA
Methods used in the studyWestern blotting
MicroRNA array
EV-TRACK -
10
Experiment ID357
Identified moleculemiRNA
Identification method RNA deep sequencing
PubMed ID 24352158   
OrganismHomo sapiens
Experiment descriptionCharacterization and deep sequencing analysis of exosomal miRNA in human urine
AuthorsLesley Cheng, Xin Sun, Bradley M. Coleman, Andrew F. Hill
Journal name Kidney Int
Publication year2014
SampleUrine
Sample nameUrine - Normal
Molecules identified in the studymiRNA
Methods used in the studyRNA deep sequencing
EV-TRACK EV140147: EV-METRIC:44%, 0%, 22%