References
-
1) AP-2α decreases TMZ resistance of recurrent GBM by downregulating MGMT expression and improving DNA damage.
-
2) Lipid nanoparticles of quercetin (QU-Lip) alleviated pancreatic microenvironment in diabetic male rats: The interplay between oxidative stress - unfolded protein response (UPR) - autophagy, and their regulatory miRNA.
-
3) Potential Role of Bmal1 in Lipopolysaccharide-Induced Depression-Like Behavior and its Associated "Inflammatory Storm".
-
4) Transcription factor PRRX1-activated ANXA6 facilitates EGFR-PKCα complex formation and enhances cisplatin sensitivity in bladder cancer.
-
5) Activation of the Nrf2/Keap1 signaling pathway mediates the neuroprotective effect of Perillyl alcohol against cerebral hypoxic-ischemic damage in neonatal rats.
-
6) Mechanistic role of RND3-regulated IL33/ST2 signaling on cardiomyocyte senescence.
-
7) RBM15 drives the progression of lung adenocarcinoma by regulating N6-methyladenosine-mediated LDHA mRNA stability.
-
8) Tracheal epithelial cell-exosome-derived MiR-21-5p inhibits alveolar macrophage pyroptosis to resist pulmonary bacterial infection through PIK3CD-autophagy pathway.
-
9) Protective effect of zinc gluconate on intestinal mucosal barrier injury in antibiotics and LPS-induced mice.
-
10) Low GPR81 in ER+ breast cancer cells drives tamoxifen resistance through inducing PPARα-mediated fatty acid oxidation.
-
11) Trifluoro-Icaritin Ameliorates Neuroinflammation Against Complete Freund's Adjuvant-Induced Microglial Activation by Improving CB2 Receptor-Mediated IL-10/β-endorphin Signaling in the Spinal Cord of Rats.
-
12) Gasdermin D-Mediated Pyroptosis Promotes the Development of Atherosclerosis.
-
13) DDX4 enhances antiviral activity of type I interferon by disrupting interaction of USP7/SOCS1 and promoting degradation of SOCS1.
-
14) Clock knockout in inhibitory neurons reduces predisposition to epilepsy and influences anxiety-like behaviors in mice.
-
15) NSP6 inhibits the production of ACE2-containing exosomes to promote SARS-CoV-2 infectivity.