Tag results:

reporter assay

CRNDE Enhances the Expression of MCM5 and Proliferation in Acute Myeloid Leukemia KG-1a Cells by Sponging miR-136-5p

[Scientific Reports] Investigators showed that the long-noncoding RNA colorectal neoplasia differentially expressed (CRNDE) was overexpressed in both acute myeloid leukemia samples and cell lines. CRNDE silencing inhibited proliferation and increased apoptotic rate and cell cycle arrest of KG-1a cells.

Long Non-Coding RNA MALAT1 Enhances Angiogenesis during Bone Regeneration by Regulating the miR-494/SP1 Axis

[Laboratory Investigation] Scientists explored the underlying mechanism of metastasis-associated lung adenocarcinoma transcript 1 (MALAT1)-regulated angiogenesis during bone regeneration.

Oncogene APOL1 Promotes Proliferation and Inhibits Apoptosis via Activating NOTCH1 Signaling Pathway in Pancreatic Cancer

[Cell Death & Disease] Scientists identified APOL1 was abnormally elevated in human pancreatic cancer tissues compared with that in adjacent tissues and was associated with poor prognosis.

CircRIP2 Promotes NSCLC Progression by Sponging for miR-671-5p to Regulate FOXM1 Expression

[Histology and Histopathology] Scientists used NSCLC tissues, as well as cell lines to elucidate the expression and location of circRIP2 in NSCLC. They also established the circRIP2 overexpression cells A549-circRIP2 and repression cells HCC827-shcircRIP2 for further functional and mechanism studies.

Exosomal microRNA-1246 from Human Umbilical Cord Mesenchymal Stem Cells Potentiates Myocardial Angiogenesis in Chronic Heart Failure

[Cell Biology International] Cardiac function, myocardial infarction area, apoptosis, and angiogenesis were all evaluated in a CHF rat model following treatment with human umbilical cord MSC-derived exosomes.

MiR-367-3p Downregulates Rab23 Expression and Inhibits Hedgehog Signaling Resulting in the Inhibition of the Proliferation, Migration, and Invasion of Prostate Cancer Cells

[Oncology Reports] Investigators investigated the inhibitory effect of miR‑367‑3p on the proliferation, invasion, and metastasis of prostate cancer cells.

Popular