Results 311 to 320 of about 922,524 (371)
Mapping Early Brain-Body Interactions: Associations of Fetal Heart Rate Variation with Newborn Brainstem, Hypothalamic, and Dorsal Anterior Cingulate Cortex Functional Connectivity. [PDF]
Pollatou A+6 more
europepmc +1 more source
This study develops an a red/far‐red light‐controlled iPSC‐based vaccines (RIVA) based on the chimeric photosensory protein FnBphP and its interaction partner LDB3 for cancer immunotherapy. The RIVA preserves the multiple intrinsic tumor antigens of iPSCs and enables optogenetic control of the expression of the immune adjuvant type I interferon β under
Longliang Qiao+17 more
wiley +1 more source
Poor Fetal Heart Rate Variability in a Pregnant Woman with Acute Appendicitis
Chih‐Cheng Huang+3 more
openalex +1 more source
A hollow nanomotor (PM‐HMSN/Arg) propelled by ultrasound‐triggered nitric oxide (NO) was developed. The nanomotor employs a “tethering‐relaxing‐drilling” mechanism to overcome biological barriers, enabling multimodal theranostics of cancer with deep penetration and extended lifetime.
Xue Xu+7 more
wiley +1 more source
To maximize the efficacy of cancer vaccines, adjuvants, collection, lysis, purification, oxidation, loading sites, and sizes, etc., are investigated. The optimized cancer nanovaccines loading whole tumor antigens can cure all or most tumor‐bearing mice in multiple mouse cancer models.
Xiangxiang Xu+13 more
wiley +1 more source
This study uncovers CHKA as a pivotal driver of vascular dysfunction in diabetic retinopathy and highlights its role in endothelial dysfunction through NAD⁺‐SIRT1‐Notch signaling. Single‐cell and functional analyses, combined with clinical and genetic validation, suggest CHKA as a promising therapeutic target for the prevention and treatment of ...
Ling Ren+11 more
wiley +1 more source
Microphysiological Uremia Model Reveals Biophysical Potentiators of Vascular Dysfunction
A microfluidic platform of engineered blood vessels is developed to study the role of mechanical forces in immune cell adhesion and extravasation in uremic microenvironments. Elevated pressure increases monocyte activity, with ICAM‐1 as a key driver. Matrix density influences monocyte phenotypes, but the uremic environment consistently promoted a pro ...
Mitesh Rathod+9 more
wiley +1 more source
Emodin targets BCL‐10 to modulate the BCL‐10/MALT1 complex, thereby suppressing NF‐κB activation and significantly exerting multiorgan protective effects in sepsis. Abstract Sepsis is a life‐threatening condition caused by dysregulated host responses to infection, characterized by excessive inflammation and abnormal coagulation.
Xiaolong Xu+16 more
wiley +1 more source
The co‐delivery of mRNAs encoding a CD47 inhibitor and a cytokine cocktail (interleukins 12, 15, and 21) via lipid nanoparticles enables effective localized immunotherapy. This strategy not only suppresses tumor progression but also enhances type 1 conventional dendritic cell (cDC1) differentiation and activates CD8+ T cells, thereby inducing robust ...
Tao Jiang+14 more
wiley +1 more source