| Literature DB >> 35418175 |
Jing Zhang1, Jun Bai1, Hongbing Zhu1, Wei Li1, Qunxing An2, Dongxu Wang3.
Abstract
It has been reported that the expression of CD44 variant 9 could be utilized as a predictive marker for the recurrence in early gastric cancer (EGC) after endoscopic submucosal dissection (ESD). And circFNDC3B was proved to increase the migration and invasion of gastric cancer (GC) cells. In this study, we recruited 96 EGC patients after ESD treatment and grouped them into High circFNDC3B expression group (High expression group) and Low circFNDC3B expression group (Low expression group). Accordingly, we found that the recurrence-free rate in the High expression group was lower than that in the Low expression group. In the High expression group, the relative expression of miR-942 and miR-510 was both suppressed while the relative expression of CDH1 mRNA and CD44 mRNA/protein was increased compared with those in the Low expression group. CircFNDC3B was found to target miR-942 and miR-510 and suppress their expressions respectively. Moreover, miR-942 was found to target CD44 mRNA while miR-510 was found to target CDH1 mRNA. The overexpression of circFNDC3B led to the down-regulation of miR-942 and miR-510, which accordingly resulted in the up-regulation of CD44 and CDH1 in MKN28 cells. Moreover, we found H. pylori infection could promote the expression of circFNDC3B, which also resulted in up-regulated CD44 and CDH1 mRNA level in rTip-α cultivated MKN28 cells. In summary, our study demonstrated that a higher level of circFNDC3B could lead to the increased expression of CD44 and CDH1 via modulating the signaling pathways of miR-942/CD44 and miR-510/CDH1 in EGC patients. And the up-regulation of CD44 and CDH1 would accordingly result in a higher recurrence rate of EGC patients treated by ESD.Entities:
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Year: 2022 PMID: 35418175 PMCID: PMC9007947 DOI: 10.1038/s41598-022-07154-y
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Demographic and clinical parameters of EGC patients subjected to ESD treatment.
| Characteristics | Low expression (N = 48) | High expression (N = 48) | |
|---|---|---|---|
| Age, years | 65.0 ± 5.6 | 60.0 ± 6.4 | 0.555 |
| Female | 33 | 38 | 0.614 |
| Male | 15 | 10 | |
| BMI (kg/m2) | 24.9 ± 2.9 | 25.0 ± 3.4 | 0.644 |
| number of | 18 (37.5) | 15 (33.1) | 0.514 |
| Ever | 23 | 22 | 0.8845 |
| Never | 21 | 21 | |
| No record | 4 | 5 | |
| Ever | 18 | 20 | 0.1979 |
| Never | 24 | 25 | |
| No record | 6 | 3 | |
| Differentiated | 42 | 44 | 0.2963 |
| UNDifferentiated | 6 | 4 | |
| Negative | 39 | 40 | 0.6985 |
| Positive | 9 | 8 | |
Figure 1Expression of candidate genes in EGC patient groups (*P value < 0.05 vs. Low expression group). (A) The recurrence-free rate was lower in the High expression group (P value = 0.0174); (B) CircFNDC3B expression was higher in the High expression group; (C) MiR-942 expression was reduced in the High expression group; (D) CD44 mRNA expression was increased in the High expression group; (E) MiR-510 expression was decreased in the High expression group; (F) CHD1 mRNA expression was elevated in the High expression group; (G) IHC indicated higher CD44 expression in the High expression group (scale bar: 100 μm); (H) IHC indicated higher CHD1 expression in the High expression group (scale bar: 100 μm).
Figure 2Signaling pathway establishment. (A) Sequence comparison between circFNDC2B and miR-942; (B) Sequence comparison between CD44 mRNA and miR-942; (C) Luciferase activity of wild type circFNDC2B and wild type CD44 mRNA was both evidently reduced in the presence of miR-942 (*P value < 0.05 vs. miRNA control (negative) group); (D) Sequence comparison between circFNDC2B and miR-510; (E) Sequence comparison between CHD1 mRNA and miR-510; (F) Luciferase activity of wild type circFNDC2B and wild type CHD1 mRNA was both evidently reduced in the presence of miR-942 (*P value < 0.05 vs. miRNA control (negative) group); (G) CircFNDC3B expression was elevated in MKN28 cells overexpressing circFNDC3B (*P value < 0.05 vs. pGL group); (H) MiR-942 expression was inhibited in MKN28 cells overexpressing circFNDC3B (*P value < 0.05 vs. pGL group); (I) CD44 mRNA expression was promoted in MKN28 cells overexpressing circFNDC3B (*P value < 0.05 vs. pGL group); (J) MiR-510 expression was up-regulated in MKN28 cells overexpressing circFNDC3B (*P value < 0.05 vs. pGL group); (K) CD44 expression was higher in MKN28 cells overexpressing circFNDC3B (*P value < 0.05 vs. pGL group); (L) CDH1 expression was higher in MKN28 cells overexpressing circFNDC3B (*P value < 0.05 vs. pGL group).
Figure 3Validation of signaling pathway establishment (*P value < 0.05 vs. NC siRNA group). (A) CircFNDC3B expression was inhibited by the knockdown of circFNDC3B in MKN28 cells; (B) MiR-942 expression was up-regulated by the knockdown of circFNDC3B in MKN28 cells; (C) CD44 mRNA expression was suppressed by the knockdown of circFNDC3B in MKN28 cells; (D) MiR-510 expression was increased by the knockdown of circFNDC3B in MKN28 cells; (E) CDH1 mRNA expression was down-regulated by the knockdown of circFNDC3B in MKN28 cells; (F) CD44 protein expression was suppressed by the knockdown of circFNDC3B in MKN28 cells; (G) CDH1 protein expression was down-regulated by the knockdown of circFNDC3B in MKN28 cells.
Figure 4Influence of H. pylori infection upon the signaling pathway (*P value < 0.05 vs. control group). (A) CircFNDC3B expression was increased in the rTip-α group compared with the control group; (B) The level of miR-942 was suppressed in the rTip-α group compared with the control group; (C) Expression of CD44 mRNA was higher in the rTip-α group compared with the control group; (D) The level of miR-510 was suppressed in the rTip-α group compared with the control group; (E) Expression of CDH1 mRNA was higher in the rTip-α group compared with the control group.