Results 211 to 220 of about 133,064 (320)
Using a preclinical pancreatic cancer model, we identified that tumor progression restructures splenic immunity via myeloid cell expansion. MDCa@RBC‐Alipo nanobiologics were engineered to epigenetically and metabolically reprogram splenic myeloid cells, alleviating post‐ablation immunosuppression.
Shengbo Wu+12 more
wiley +1 more source
Contribution à la physiologie du métabolisme de la matière grasse dans la lactation [PDF]
L. A. Maynard
openalex +1 more source
Dietary Patterns and Nutrient Intake in Pregnancy and Lactation. [PDF]
Rees G, Brough L.
europepmc +1 more source
The Fe3O4/Gd@BSA‐pPB nanoprobe leverages biomimetic mineralization and targets hepatic stellate cells (HSCs) through PDGFRβ, offering superior enrichment in fibrotic regions. This targeted delivery overcomes biological barriers, enhancing both the accuracy and sensitivity of MRI imaging at early disease stages.
Zehua Li+11 more
wiley +1 more source
Period of Lactation and the Direct Titratable Chloride Value of Milk
Paul F. Sharp, Earle B. Struble
openalex +1 more source
Impact of Maternal Metabolic Status on Human Milk Oligosaccharide Composition: A Population-Based Cross-Sectional Study in Central South China. [PDF]
Huang Z+7 more
europepmc +1 more source
Ultra‐low LOD H2O2 Sensor Based on Synergistic Nernst Potential Effect
Due to the synergistic effect of ENernst,H2O2${E}_{\mathrm{Nernst},\ {\mathrm{H}}_{2}{\mathrm{O}}_{2}}$ and ENernst,H+${E}_{\mathrm{Nernst},\ {\mathrm{H}}^{+}}$, the proposed sensors in this study can achieve ultralow H2O2 detection limit as low as 1.8 × 10−12 M based on the stacked PEDOT: BTB/PEDOT: PSS semiconducting layer.
Zhaoqun Wang+12 more
wiley +1 more source
Profile of steroid metabolites in human breast milk in different stages of lactation.
Khymenets O+6 more
europepmc +1 more source
Milk Yield, Major Milk Components and Macro Minerals in Blood Serum of Lactating Donkeys, as Affected by Dietary Trace Element Supplementation and Stage of Lactation. [PDF]
Fantuz F+6 more
europepmc +1 more source
NEU1, a key regulator of glycolysis, is markedly upregulated following DOX treatment. This upregulation is attributed to HIF1α’s transcriptional repression, requiring intricate interactions with NRF2. Increased NEU1 facilitates SIRT1 lysosomal degradation, contributing to aberrant glycolytic phenotype and cardiac damage.
Ting Gao+13 more
wiley +1 more source