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◆ Nucleosides, nucleotides & nucleic acids2026-09-22

miR-324-5p acts as an independent prognostic biomarker and inhibits pediatric medulloblastoma progression by targeting HOXA9.

Shengjuan Wang, Xueyu Yang, Yaning Sun, Wenjing Wu, Xiting Guo, Xuehui Cao, Jiangshun Fang

原始摘要(英文原文)· Original abstract
Pediatric medulloblastoma (MB) represents an aggressive central nervous system malignancy in children, frequently associated with a dismal clinical prognosis. Uncovering novel epigenetic modulators is therefore paramount to advancing targeted therapeutic strategies. This study aimed to elucidate clinical relevance and dissect the post-transcriptional regulatory network of miR-324-5p in pediatric MB. miR-324-5p and HOXA9 levels were evaluated in 113 pediatric MB samples and cell lines via qRT-PCR. Prognostic significance was assessed using Kaplan-Meier and multivariate Cox regression analysis. Phenotypic alterations were explored through CCK-8 and Transwell rescue assays following oligonucleotide transfection. Luciferase reporters validated direct binding. miR-324-5p was markedly reduced in MB tissues and lines, displaying tight correlation with 17p deletion and aggressive molecular subtypes. Survival models identified diminished miR-324-5p expression as an independent predictor of adverse overall survival. In vitro, ectopic miR-324-5p expression markedly attenuated MB cell proliferation, migration, and invasion. miR-324-5p was shown to directly bind to HOXA9. HOXA9 was upregulated in MB tissues and inversely correlated with miR-324-5p. Forced HOXA9 expression partially counteracted the phenotype suppression elicited by miR-324-5p mimic in vitro. Our findings suggest that miR-324-5p functions as a critical tumor suppressor in pediatric medulloblastoma in vitro by post-transcriptionally silencing HOXA9. This axis represents a promising prognostic indicator and therapeutic target.
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miR-324-5p acts as an independent prognostic biomarker and inhibits pediatric medulloblastoma progression by targeting HOXA9. — 科研速览 Science Skim