| ID | Sequence | Length | GC content |
|---|---|---|---|
| EDRF1-AS1:46 | AUCUGACGCUCAGGCUCCGCCCCCUGCAUGUCUUUGUUGGCAAACAGUU… | 2527 nt | 0.4622 |
| EDRF1-AS1:47 | AUCUGACGCUCAGGCUCCGCCCCCUGCAUGUCUUUGUUGGCAAACAGUU… | 665 nt | 0.4586 |
| EDRF1-AS1:48 | ACGUGAAUUAGUGAGAGGUUCAAACUUCUUCCCCAGGCUUCAGUGUCAC… | 300 nt | 0.4667 |
| EDRF1-AS1:5 | GGAGGCACUGGAGACAAAGAUCAGCCACGUGGCAGUCAACCAUGUCUAU… | 712 nt | 0.4944 |
| EDRF1-AS1:6 | GGAGGCACUGGAGACAAAGAUCAGCCACGUGGCAGUCAACCAUGUCUAU… | 569 nt | 0.4763 |
| EDRF1-AS1:7 | GAGGCACUGGAGACAAAGAUCAGCCACGUGGCAGUCAACCAUGUCUAUC… | 555 nt | 0.4721 |
| EDRF1-AS1:8 | GAGGCACUGGAGACAAAGAUCAGCCACGUGGCAGUCAACCAUGUCUAUC… | 526 nt | 0.4734 |
| EDRF1-AS1:9 | GAGGCACUGGAGACAAAGAUCAGCCACGUGGCAGUCAACCAUGUCUAUC… | 396 nt | 0.4722 |
No relevant information is available at the moment.
A study in human umbilical vein endothelial cells (HUVECs) demonstrated that the EDRF1-AS1 was significantly upregulated (fold change 12.34) in exosomes derived from cells subjected to heat stroke temperature conditions, identifying it as a potential noninvasive biomarker for heat stroke [Chen et al. DOI:10.12659/MSM.909983].