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https://www.selleckchem.com/products/nhwd-870.html Moreover, several suggestions are proposed in response to the challenges in regulating particle size effects. Furthermore, the viewpoints presented herein would potentially contribute to the rational development of metal hydrogenation catalysts and further help to boost a more sustainable biomass refining system.The emphasis of our study was to determine the physiological function of miR-1224-5p in rectal cancer (RC) and its in-depth mechanism. First, the expression of miR-1224-5p in RC tissues was analyzed using public data from the TCGA database. Then, miR-1224-5p expression in RC cell lines SW480 and SW837 was measured using the qRT-PCR assay. The subsequent CCK-8 assay was executed to assess the function of miR-1224-5p in the viability of the RC cell. Bioinformatics prediction prompted that SLC29A3 may be a potential target gene for miR-1224-5p. Western blotting and dual-luciferase reporter assays were performed to affirm the above forecasting. Kaplan-Meier analysis and Cox multivariate analysis were carried out to assess the relationship between SLC29A3 and prognosis. Finally, CCK-8, colony formation assay, and transwell assay were used for functional analysis of miR-1224-5p/ SLC29A3 axis in vitro. MiR-1224-5p was expressed at low levels in RC tissues and cell lines. Up-regulation of miR-1224-5p inhibited SW480 cell viability, while inhibition of miR-1224-5p enhanced the viability of SW837 cells. What is more, we affirmed that miR-1224-5p could direct target SLC29A3, which was expressed at high levels in RC tissues. In addition, SLC29A3 could be used as an independent predictive factor of prognosis in patients with RC, and the higher SLC29A3 expression, the lower survival rate. Finally, cellular functional experiments evidenced that miR-1224-5p mimic can reduce the cell viability, invasion, and migration, while overexpression of SLC29A3 presented an opposite effect. Importantly, co-transfection experiments indi
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