- MicroRNAs in acute pancreatitis: From pathogenesis to novel diagnosis and therapy
Yi Yang et al, 2020, Journal of Cellular Physiology CrossRef - Targeting MicroRNA Function in Acute Pancreatitis
Hong Xiang et al, 2017, Frontiers in Physiology CrossRef - miR-148a suppresses autophagy by down-regulation of IL-6/STAT3 signaling in cerulein-induced acute pancreatitis
Bin Miao et al, 2019, Pancreatology CrossRef - A bibliometric analysis of non-coding RNA studies in acute pancreatitis
Xiaodong Zhu et al, 2024, Medicine CrossRef - Apigenin reduces the suppressive effect of exosomes derived from irritable bowel syndrome patients on the autophagy of human colon epithelial cells by promoting ATG14
Rui Fu et al, 2023, World Journal of Surgical Oncology CrossRef - microRNA‐96 protects pancreatic β‐cell function by targeting PAK1 in gestational diabetes mellitus
Lei Li et al, 2018, BioFactors CrossRef - miR-375 Inhibits Autophagy and Further Promotes Inflammation and Apoptosis of Acinar Cells by Targeting ATG7
Shang-Ping Zhao et al, 2020, Pancreas CrossRef - MiR-204-5p Performs a Protective Effect on Cerulein-Induced Rat Pancreatic Acinar Cell AR42J Cell Damage by Targeting Tyrosine 3-Monooxygenase/Tryptophan 5-Monooxygenase Activation Protein Gamma and Regulating PI3K/Hippo Pathways
Hongbo Zhao et al, 2021, Pancreas CrossRef - Autophagy in Acute Pancreatitis: Organelle Interaction and microRNA Regulation
Xiaohui Yuan et al, 2021, Oxidative Medicine and Cellular Longevity CrossRef - miR-352 participates in the regulation of trypsinogen activation in pancreatic acinar cells by influencing the function of autophagic lysosomes
Zonggong Song et al, 2018, Oncotarget CrossRef - LncRNA HOTAIR regulates autophagy and proliferation mechanisms in premature ovarian insufficiency through the miR-148b-3p/ATG14 axis
Chao Luo et al, 2024, Cell Death Discovery CrossRef - miR‑92a‑3p regulates trypsinogen activation via Egr1 in AR42J cells
Xueming Zhang et al, 2019, Molecular Medicine Reports CrossRef - Rutaecarpine alleviates acute pancreatitis in mice and AR42J cells by suppressing the MAPK and NF‐κB signaling pathways via calcitonin gene‐related peptide
Haosu Huang et al, 2021, Phytotherapy Research CrossRef