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Research progress of circRNAs in chemotherapy resistance of digestive system neoplasms

Jie-Chun Lin, +2 more
- 08 Nov 2021 - 
- Vol. 29, Iss: 21, pp 1237-1247
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This article is published in World Chinese Journal of Digestology.The article was published on 2021-11-08 and is currently open access. It has received 0 citations till now.

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Journal ArticleDOI

Circular RNA circFBXO11 modulates hepatocellular carcinoma progress and oxaliplatin resistance through miR-605/FOXO3/ABCB1 axis.

TL;DR: The role of circFBXO11/miR‐605/FOXO3/ ABCB1/ABCB1 axis in the HCC OXA resistance is revealed, providing new insight for circRNA‐based diagnostic and therapeutic strategies.
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Silencing of circRACGAP1 sensitizes gastric cancer cells to apatinib via modulating autophagy by targeting miR-3657 and ATG7.

TL;DR: Findings provided the first evidence that the circRACGAP1-miR-3657-ATG7 axis mediates a novel regulatory pathway critical for the regulation of apatinib sensitivity in GC, and specific blockage of circRAP1 may be a potential therapeutic strategy to reduce the toxicities ofApatinib and enhance its therapeutic effect in human GC.
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Circ-PRKDC Contributes to 5-Fluorouracil Resistance of Colorectal Cancer Cells by Regulating miR-375/FOXM1 Axis and Wnt/β-Catenin Pathway.

TL;DR: Circ-PRKDC enhanced 5-FU resistance in CRC by regulating FOXM1/miR-375 axis and wnt/β-catenin pathway and knockdown impeded wnt/.
Journal ArticleDOI

Circular RNA MCTP2 inhibits cisplatin resistance in gastric cancer by miR-99a-5p-mediated induction of MTMR3 expression.

TL;DR: Overexpression of CircMCTP2 could be a new therapeutic strategy for counteracting CDDP resistance in GC and sensitizes GC to CDDP through the upregulation of MTMR3 by sponging miR-99a-5p.
Journal ArticleDOI

Circular RNA circNRIP1 Sponges microRNA-138-5p to Maintain Hypoxia-Induced Resistance to 5-Fluorouracil Through HIF-1α-Dependent Glucose Metabolism in Gastric Carcinoma

TL;DR: circNRIP1 functioned as a miR-138-5p sponge to enhance hypoxia-induced resistance to 5-FU through modulation of HIF-1α-dependent glycolysis, which provides a novel potential approach to overcome hypoxIA-induced 5-fu resistance in GC.