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Knockdown of long noncoding RNA H19 sensitizes human glioma cells to temozolomide therapy
Pengfei Jiang1, Ping Wang2, Xiaoling Sun3
1Medical Department, Yuhuangding Hospital, Yantai, People's Republic of China.
Abstract:
Temozolomide (TMZ) is commonly used in glioma chemotherapy. However, a great clinical challenge for TMZ is chemoresistance. H19 transcripts are recognized as long noncoding RNAs, which potentially interact with chromatin-modifying complexes to regulate gene expression via epigenetic changes. Our data based on glioma patients showed that the expression of H19 was significantly upregulated in TMZ-resistant tumors compared with the TMZ-sensitive tumors. To determine the function of H19 in glioma, cell lines U87 and U251 were exposed to TMZ to establish TMZ-resistant clones U87(TMZ) and U251(TMZ). In U87(TMZ) and U251(TMZ), the expression level of H19 transcripts was increased compared to wild-type or nonresistant clones, as determined by real-time quantitative reverse transcription polymerase chain reaction. Concomitant treatment with small interfering RNA specifically targeting H19 and TMZ in resistant glioma clones resulted in decreased IC50 values for TMZ, and increased apoptotic rates than control small interfering RNA-treated cells. This was also evident by the increased PARP cleavage in resistant cells exposed to TMZ + si-H19. Furthermore, the reduced expression of H19 altered major drug resistance genes, such as MDR, MRP, and ABCG2, both at the mRNA and protein levels. Taken together, these findings suggest that H19 plays an important role in the development of TMZ resistance, and may represent a novel therapeutic target for TMZ-resistant gliomas.
Insights
The long noncoding RNA H19 is upregulated in temozolomide-resistant gliomas. Inhibiting H19 resensitizes resistant glioma cells to temozolomide by reducing drug resistance genes and increasing apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Temozolomide (TMZ) is a standard glioma chemotherapy agent.
- Chemoresistance to TMZ presents a significant clinical challenge in glioma treatment.
- Long noncoding RNAs, like H19, are implicated in epigenetic regulation and gene expression.
Purpose of the Study:
- To investigate the role of H19 in the development of temozolomide resistance in glioma.
- To determine if H19 could be a therapeutic target for overcoming TMZ resistance.
Main Methods:
- Established TMZ-resistant glioma cell lines (U87, U251) by TMZ exposure.
- Quantified H19 transcript levels using real-time quantitative reverse transcription polymerase chain reaction.
- Assessed the effect of H19 knockdown using small interfering RNA (siRNA) combined with TMZ treatment on cell viability (IC50) and apoptosis (PARP cleavage).
- Analyzed the expression of drug resistance genes (MDR, MRP, ABCG2) at mRNA and protein levels.
Main Results:
- H19 expression was significantly upregulated in TMZ-resistant glioma tumors and cell lines compared to sensitive counterparts.
- Knockdown of H19 in resistant cells, alongside TMZ treatment, decreased IC50 values and increased apoptosis.
- Reduced H19 expression led to decreased levels of MDR, MRP, and ABCG2 at both mRNA and protein levels.
Conclusions:
- H19 plays a critical role in mediating temozolomide resistance in gliomas.
- Targeting H19 presents a promising therapeutic strategy for overcoming chemoresistance in TMZ-resistant gliomas.
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