Results 321 to 330 of about 1,601,455 (409)
Deep learning assisted retinal microvasculature assessment and cerebral small vessel disease in Fabry disease. [PDF]
Li Y+10 more
europepmc +1 more source
SCORT–Cas13d–pre‐gHoxB13 lipid nanoparticles precisely deliver Cas13d mRNA and guide RNAs to metastatic prostate tumors in the liver, knocking down the “undruggable” transcription factor HoxB13. This approach suppresses metastatic tumor growth, extends mouse survival, and does not induce major organ toxicity or immune activation, offering a safe and ...
Zhifen Cui+15 more
wiley +1 more source
Deep learning-based automated segmentation for the quantitative diagnosis of cerebral small vessel disease via multisequence MRI. [PDF]
Zhao H+8 more
europepmc +1 more source
Engineered Tissue Models to Decode Host–Microbiota Interactions
Host–Microbiota interactions in the human body. Created in BioRender. Ghezzi, C. (2025) https://BioRender.com/ihivskg. Abstract A mutualistic co‐evolution exists between the host and its associated microbiota in the human body. Bacteria establish ecological niches in various tissues of the body, locally influencing their physiology and functions, but ...
Miryam Adelfio+5 more
wiley +1 more source
The Relationship Between Blood Omega-3 Levels and the Small Vessel Disease in Ischemic Stroke Patients: A Case-Control Study. [PDF]
Hezarkhani LA+6 more
europepmc +1 more source
The upregulated CCL24 in CRC liver metastasis promotes the formation of inflammatory tumor‐associated fibroblast subsets and induces resistance to bevacizumab therapy. Downregulation of CCL24 significantly increased sensitivity to antiangiogenic therapy in CRC mouse model. Hence, a novel therapeutic target is identified for patients with CRC with liver
Junjiang Wang+7 more
wiley +1 more source
Strengthening the link between periodic leg movements during sleep and cerebral small vessel disease. [PDF]
Ferri R, Lanza G, Mogavero MP.
europepmc +1 more source
Novel Electroactive Therapeutic Platforms for Cardiac Arrhythmia Management
Electroactive platforms offer promising applications in cardiac arrhythmia. Based on their energy sources and mechanisms, electroactive platforms are categorized into i) direct electrical stimulation, ii) self‐powered electroactive systems, iii) physical stimuli‐mediated electroactive systems, and iv) conductive systems, and their applications in ...
Juwei Yang+4 more
wiley +1 more source