Human pre-microRNA Expression Construct let-7e
- Known as:
- Human pre-microRNA Expression Construct let-7e
- Catalog number:
- pmirhlet7epa-1
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- USD
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- -
- Supplier:
- Sbi systeme bioscience
- Gene target:
- Human pre-microRNA Expression Construct let-7e
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- Gene regulation is influenced by microRNAs (miRNAs), a class of non-coding RNAs currently being studied as biomarkers for various diseases. miRNAs, which act as regulators of gene expression and potential biomarkers, were profiled in endometrioid type endometrial cancer (EEC). 28 miRNAs were selected based on their role in regulating EEC-related oncogenes and tumor suppressors (e.g., PTEN, KRAS, β-CATENIN), maintaining tissue stability, and their previous associations with endometrial cancer. This study investigated the expression of miRNAs and their association with key signalling pathways (PI3K/AKT, RAS/MAPK, Wnt/β-Catenin) and their potential as diagnostic biomarkers for EEC. The study also investigated the relationship between miRNA regulation, endometrial pathology, and PTEN, KRAS, and β-CATENIN mRNA expression levels. Women who had received an EEC diagnosis participated in a 14-month prospective cohort study at Gazi University Hospital. Samples were obtained from patients with EEC during frozen sections and healthy women who underwent hysterectomy for benign disease. qPCR examined the miRNA and mRNA levels. 97 women participated, comprising 47 EEC patients and 50 healthy controls. The association was identified between miRNA expression levels and cancer grade. As the tumor grade increases, the expression of miRNAs (miR-let-7c, miR-18a-3p, miR-21, miR-30b, miR-96, miR-130a, miR-141, miR-181b, miR-182, miR-183, miR-2001, miR-200b, miR-200c, miR-203, miR-205, and miR-429) gradually increases. Conversely, twelve miRNAs demonstrated relative expression during the transition from normal endometrium (NE) to EEC (miR-let-7c, miR-let-7e, miR-30c, miR-101, miR-125b, miR-126, miR-129-2, miR-217, miR-324-3p, miR-518b, miR-543, and miR-596). miRNAs could serve as valuable biomarkers for both early detection of EEC and for distinguishing between different tumor grades. We showed that miRNAs have good diagnostic sensitivity for identifying EEC and EC grading. In addition, miRNA improved the ability to discriminate between ECs of different grades. - Source: PubMed
Publication date: 2025/10/06
Soykan YağmurYar Saglam Atiye SedaInan Mehmet ArdaUgras Dikmen AsiyeErdem ÖzlemOnan Mehmet Anıl - Telocytes (TCs), a newly identified type of mesenchymal cell since 2010, possess substantial potential in maintaining tissue homeostasis, orchestrating organ development, and facilitating tissue regeneration. Their distribution in blood, the adventitia of blood vessels, and the intima implies a close association with vascular function. Ischemic heart disease (IHD), a significant challenge in cardiovascular disease, is characterized by the occlusion of major vessels, obstruction of collateral circulation, and disruption of the capillary network-pathological features closely linked to endothelial cell damage. Myocardial tissue is rich in cardiac telocytes (cTCs), which, following myocardial injury, can secrete numerous miRNAs that promote angiogenesis, including miR-let-7e, miR-10a, and miR-126-3p. This indicates that cTCs may have therapeutic potential for IHD. The primary mechanism by which cTCs-derived exosomes exert paracrine effects is through reducing endothelial cell injury, suggesting that enhancing the production of cTCs could offer a novel therapeutic approach for treating IHD. - Source: PubMed
Publication date: 2025/04/01
Jiang HugangTang YanLiu AiRen ChunzhenLin WenyanLiu KaiZhao XinkeLi Yingdong - Ifosfamide is a cancer-fighting chemotherapeutic that has been detected in aquatic ecosystems. Zebrafish larvae were exposed to either 0, 1 or 100 µg/L ifosfamide in the water for 7 days, and fish were subjected to total RNA extraction and RNA-seq analysis with the Illumina NovoSeq 6000 instrument. Raw sequence data were processed through fastp and clean reads obtained by removing adapter and poly-N sequences, as well as low quality reads. Differential gene expression was performed using the abundance of transcripts that mapped to the zebrafish genome. To uncover putative targets regulated by microRNAs, Pathway Studio 12.0 was used to conduct a subnetwork enrichment analysis. Expression data were used to predict which microRNAs were important for the response to ifosfamide exposure. There were 21 common microRNAs identified in both the "IFOS1" and "IFOS100" datasets. These were MIR150, MIR6515, MIR657, MIR216A, m_Mir741, MIRLET7E, miR-let-7, MIR2392, r_Mir3551, MIR181B1, MIR33A, MIR502, MIR193B, MIR146A, MIR431, MIR647, m_Mir1192, MIR297, MIR328, and MIR4717. Data can be re-used to advance adverse outcome pathways in regulatory toxicology and to refine biomarker discovery for antineoplastics in aquatic environments. - Source: PubMed
Publication date: 2023/03/29
English Cole DKazi Kira JKonig IsaacIvantsova EmmaSouders Ii Christopher LMartyniuk Christopher J - Porcine epidemic diarrhea virus (PEDV), a member of the genus Alphacoronavirus in the family Coronaviridae, causes acute diarrhea and/or vomiting, dehydration, and high mortality in neonatal piglets. It has caused huge economic losses to animal husbandry worldwide. Current commercial PEDV vaccines do not provide enough protection against variant and evolved virus strains. No specific drugs are available to treat PEDV infection. The development of more effective therapeutic anti-PEDV agents is urgently needed. Our previous study suggested that porcine milk small extracellular vesicles (sEV) facilitate intestinal tract development and prevent lipopolysaccharide-induced intestinal injury. However, the effects of milk sEV during viral infection remain unclear. Our study found that porcine milk sEV, which was isolated and purified by differential ultracentrifugation, could inhibit PEDV replication in IPEC-J2 and Vero cells. Simultaneously, we constructed a PEDV infection model for piglet intestinal organoids and found that milk sEV also inhibited PEDV infection. Subsequently, in vivo experiments showed that milk sEV pre-feeding exerted robust protection of piglets from PEDV-induced diarrhea and mortality. Strikingly, we found that the miRNAs extracted from milk sEV inhibited PEDV infection. miRNA-seq, bioinformatics analysis, and experimental verification demonstrated that miR-let-7e and miR-27b, which were identified in milk sEV targeted PEDV N and host HMGB1, suppressed viral replication. Taken together, we revealed the biological function of milk sEV in resisting PEDV infection and proved its cargo miRNAs, miR-let-7e and miR-27b, possess antiviral functions. This study is the first description of the novel function of porcine milk sEV in regulating PEDV infection. It provides a better understanding of milk sEV resistance to coronavirus infection, warranting further studies to develop sEV as an attractive antiviral. - Source: PubMed
Publication date: 2023/03/11
Liang Jia QiXie Mei-YingHou Lian-JieWang Hai-LongLuo Jun-YiSun Jia-JieXi Qian-YunJiang Qing-YanChen TingZhang Yong-Liang - Glioblastoma (GBM) is a highly invasive neurological malignancy with poor prognosis. LncRNA-GAS5 (growth arrest-specific transcript 5) is a tumor suppressor involved in multiple cancers. In this study, we explored the clinical significance, biological function, and underlying mechanisms of GAS5 in GBM. We showed that lncRNA-GAS5 expression decreased in high-grade glioma tissues and cells, which might be associated with poor prognosis. GAS5 overexpression lowered cell viability, suppressed GBM cell migration and invasion, and impaired the stemness and proliferation of glioma stem cells (GSCs). We further discovered that GAS5 inhibited the viability of glioma cells through miR-let-7e and miR-125a by protecting SPACA6 from degradation. Moreover, GAS5 played an anti-oncogenic role in GBM through the combined involvement of let-7e and miR-125a and . Notably, these two miRNAs block the IL-6/STAT3 pathway in tumor tissues extracted from a xenograft model. Taken together, our study provides evidence for an important role of GAS5 in GBM by affecting the proliferation and migration of GSCs, thus providing a new potential prognostic biomarker and treatment strategy for GBM. - Source: PubMed
Publication date: 2022/08/29
Wu ShuangRen KaixiZhao JingLi JuanJia BoWu XiuquanDou YananFei XiaoweiHuan YuHe XinWang TingtingLv WeihaoWang LiWang Yan'gangZhao JunlongFei ZhouLi Sanzhong