Results 211 to 220 of about 381,513 (352)
Ubiquitination‐Driven Reprogramming of Proteostasis in Metastasis
The DCAF12–TRiC/CCT axis is a key regulator of metastasis in cancer. By reprogramming proteostasis to ensure efficient protein folding, it drives progression through a dual mechanism: enhancing cancer cell motility and invasiveness while concurrently activating pro‐growth and survival pathways.
Dongping Wei, Jiayan Chen, Yaping Xu
wiley +1 more source
Plasticity changes of molecular networks form a cellular learning process. Signaling network plasticity promotes cancer, metastasis, and drug resistance development. 55 plasticity‐related cancer drug targets are listed (20 having already approved drugs, 9 investigational drugs, and 26 being drug target candidates).
Márk Kerestély +5 more
wiley +1 more source
A Cross-Sectional Study on the Status of Female Lung Cancer Patients With Bone Metastasis With or Without Osteoporosis. [PDF]
Luo P, Liao X, Chen Y, Fu M.
europepmc +1 more source
Malignant eccrine acrospiroma with nodal and bone metastasis
Burhan Wani +4 more
openalex +1 more source
Tumor vascular remodeling is discussed from a chemokine‐centered perspective. This review summarizes the bidirectional, temporal, and tissue‐specific roles of CXC chemokines in regulating vascular function and immune accessibility. A functional vascular normalization score is introduced as a conceptual framework to integrate dynamic vascular and immune
Hongdan Chen +7 more
wiley +1 more source
Astragalin Attenuates Bone Destruction and the Progression of Bone Metastasis in Breast Cancer. [PDF]
Yang S, Zhang Y, Qiu H, Hu X, Chu T.
europepmc +1 more source
18F-Sodium Fluoride PET: History, Technical Feasibility, Mechanism of Action, Normal Biodistribution, and Diagnostic Performance in Bone Metastasis Detection Compared with Other Imaging Modalities [PDF]
Kriti Ahuja +6 more
openalex +1 more source
Cholesterol is revealed as a multitasking fuel for lung adenocarcinoma brain metastasis: it locks EGFR at the membrane to sustain AKT/NF‐κB–driven glycolysis and EMT, loosens the blood–brain barrier by promoting Claudin‐5 loss, and rewires microglia through IL‐4R lipid‐raft–JAK1/STAT6 signaling.
Ying Chen +14 more
wiley +1 more source

