Results 21 to 30 of about 2,093 (106)
Background: Little is known about the impact of nutrients on cellular transcriptional responses, especially in face of environmental stressors such as oxygen deprivation.
Alvina G. Lai +7 more
doaj +1 more source
Hypoxia and hypercapnia elicit overlapping but distinct skeletal muscle toxicities
Abstract figure legend Hypoxia and hypercapnia cause overlapping skeletal muscle phenotypes, including atrophy, change in myofibre metabolic profile and myogenic response to injury. Both signals operate via distinct cellular pathways. Abstract Skeletal muscle dysfunction is strongly associated with elevated mortality in acute and chronic pulmonary ...
Joseph Balnis, Ariel Jaitovich
wiley +1 more source
Metabolism in Tumor: Mechanisms and Therapeutic Perspectives
Tumor metabolic reprogramming converges on three hubs—the SREBP1/2–FASN–SCD1 lipogenic axis, the HIF‐1α–GLUT1–LDHA glycolytic axis, and the LDLR–SCARB1–LXR cholesterol system—which integrate transcriptional, epigenetic (histone lactylation, m6A), and microenvironmental inputs to generate metabolic plasticity, immune evasion, and therapy resistance ...
Jia‐Chen Cheng +6 more
wiley +1 more source
Eryngium heterophyllum has 85 metabolites according to nontargeted UHPLC‐QTOF‐MS profiling, with flavonoids and phenylpropionic acids emerging as significantly related bioactive families. In silico compound–disease–target networks connect 31 metabolites to inflammation, diabetes, obesity, and cardiovascular disease associated with metabolic syndrome ...
Citlaly Gutiérrez‐Rodelo +5 more
wiley +1 more source
IntroductionAortic coarctation (CoA) is a prevalent congenital heart defect defined by focal aortic narrowing and progressive fibrosis, associated with substantial long-term cardiovascular morbidity.
Wenlei Li +6 more
doaj +1 more source
Hypoxia, oncogenic signaling, transcriptional and epigenetic remodeling, and H. pylori–microbiota interactions drive the Warburg effect in gastric cancer. Enhanced glycolysis and lactate export support biosynthesis, remodel the tumor microenvironment, promote stromal activation and immune suppression, and reveal actionable biomarkers and therapeutic ...
Guanmo Liu +7 more
wiley +1 more source
This review summarizes the role of FTO‐regulated m6A modification in Alzheimer's disease, Parkinson's disease, depression, and neuropathic pain. Exercise may ameliorate neural plasticity and neuronal excitability by downregulating FTO and enhancing m6A modification. We propose that FTO could serve as a potential epigenetic target through which exercise
Yanan Zheng +3 more
wiley +1 more source
BackgroundVascular depression (VaD) is a depressive disorder closely associated with cerebrovascular disease and vascular risk factors. It remains underestimated owing to challenging diagnostics and limited information regarding the pathophysiological ...
Liuyi Lan +6 more
doaj +1 more source
The Role of N6‐Methyladenosine Modification in Health and Disease
N6‐methyladenosine (m6A) is the most prevalent internal RNA modification in eukaryotes, acting as a pivotal epitranscriptomic regulator of RNA metabolism. This modification plays a dual role: it maintains physiological homeostasis under normal conditions but drives disease progression when dysregulated.
Linghuan Li +6 more
wiley +1 more source
Identification of ceRNA Regulatory Networks Driven by the lncRNA NEAT1 in Multiple Myeloma
ABSTRACT The lncRNA NEAT1 is overexpressed in multiple myeloma (MM) plasma cells and plays a key role in MM pathogenesis. NEAT1 is involved in ceRNA network in several cancers; however, data in MM are virtually absent. This study identified a NEAT1‐driven ceRNA network involving 96 miRNAs and 40 target genes, selected as concurrently downregulated in ...
Domenica Ronchetti +14 more
wiley +1 more source

