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qRT-PCR

Bone Mesenchymal Stem Cell-Derived Exosomal microRNA-7-5p Inhibits Progression of Acute Myeloid Leukemia by Targeting OSBPL11

[Journal of Nanobiotechnology] Researchers investigated the effects of exosomes derived from bone marrow mesenchymal stem cells on the regulation of acute myeloid leukemia and the underlying mechanisms mediated by microRNA.

PBX3-Activated DLG1-AS1 Can Promote the Proliferation, Invasion and Migration of TNBC Cells by Sponging miR-16-5p

[Molecular Therapy Oncolytics] Scientists found that PBX3-activated DLG1-AS1 could promote the proliferation, invasion and migration of TNBC cells by sponging miR-16-5p and elevating JARID2 expression.

Circular RNA circCCDC85A Inhibits Breast Cancer Progression via Acting as a miR-550a-5p Sponge to Enhance MOB1A Expression

[Breast Cancer Research] Researchers explored whether circCCDC85A could function as a miR-550a-5p sponge and influence breast cancer progression and found novel evidence that circCCDC85A inhibited the progression of breast cancer by functioning as a molecular sponge of miR-550a-5p to enhance MOB1A expression.

Circ_0007385 Regulates Cell Proliferation, Apoptosis and Stemness via Targeting miR-493-3p/RAB22A Axis in Non-Small Cell Lung Cancer

[Thoracic Cancer] Expression levels of circ_0007385, microRNA-493-3p (miR-493-3p) and Ras-related protein Rab-22A (RAB22A) were detected by quantitative real-time polymerase chain reaction (qRT-PCR) in NSCLC tissues and cells.

CircFBXW8 Acts an Oncogenic Role in the Malignant Progression of Non-Small Cell Lung Carcinoma by miR-370-3p-Dependent Regulation of TRIM44

[Biochemical Genetics] The authors investigated the role of circular RNA F-box and WD repeat domain containing 8 (circFBXW8) in NSCLC progression and the underlying mechanism.

MACC1 Regulates the AKT/STAT3 Signaling Pathway to Induce Migration, Invasion, Cancer Stemness, and Suppress Apoptosis in Cervical Cancer Cells

[Bioengineered] Researchers verified that treatment with the STAT3 activator had significant reversal effects on the malignant behaviors of cervical cancer (CC) cells and CC stemness.

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