Results 221 to 230 of about 175,171 (334)
Parabiosis, Assembloids, Organoids (PAO)
This review evaluates parabiosis, organoids, and assembloids as complementary disease models spanning systemic, organ, and multi‐organ levels. It highlights their construction strategies, applications, and current limitations, while emphasizing their integration with frontier technologies such as artificial intelligence, organ‐on‐a‐chip, CRISPR, and ...
Yang Hong +5 more
wiley +1 more source
It is revealed that a metabolic–stromal loop driven by oxLDL–OLR1–FOXM1–FGF19 signaling promotes progesterone resistance in endometrial cancer. OxLDL activates epithelial–fibroblast crosstalk, enhancing proliferation and hormonal insensitivity. Disruption of this circuit, especially with resveratrol, restores MPA sensitivity, highlighting a potential ...
Xingchen Li +9 more
wiley +1 more source
Unifying regulatory motifs in endocrine circuits. [PDF]
Raz M +7 more
europepmc +1 more source
A cold atmospheric plasma‐activated in situ hydrogel (CAPgel/IL2) delivers reactive oxygen species and interleukin‐2 to modulate the hair follicle immune microenvironment, enhancing regulatory T‐cell expansion, dermal papilla cell proliferation, and the telogen‐to‐anagen transition for robust hair regeneration.
Jung Suk Kim +7 more
wiley +1 more source
FSTL1 promotes glycolysis during chondrocyte fibrosis by triggering the HIF‐1 signaling pathway, which causes lactate to accumulate. The buildup of lactate leads to changes in histone lysine lactylation, which in turn enhances the expression of genes associated with fibrosis.
Feng Lu +12 more
wiley +1 more source
Immune Checkpoint Inhibitor Endocrinopathies-Insights From 3 Unusual Cases. [PDF]
Husebye ES.
europepmc +1 more source
Cytological Studies on Endocrine Secretion of the Parotid Gland
Noboru HONJYO
openalex +2 more sources
The Genetic Wiring of Plant Trichomes: From Initiation to Fate Specification
Plant trichomes are not just simple hairs but metabolic powerhouses shaped by complex genetic programs. While the MYB‐bHLH‐WD40 module is well studied in Arabidopsis, recent findings reveal that HD‐Zip IV transcription factors drive multicellular and glandular trichome development through dose‐dependent mechanisms.
Meng Li +3 more
wiley +1 more source

