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Recent studies show red blood cell (RBC) plays an essential role in regulating immunity. Nevertheless, the association of immuno-inflammatory parameters, especially RBC balanced signatures, with survival outcomes and adverse events still require investigation for advanced breast cancer (ABC) pati...

2025-04-15 | MTBLS10792 | MetaboLights

Cell size and the cell cycle are intrinsically coupled and abnormal increases in cell size are associated with senescence and permanent cell cycle arrest. The mechanism by which overgrowth primes cells to withdraw from the cell cycle remains unknown. We investigate this here using CDK4/6 inhibito...

2025-10-24 | MTBLS5868 | MetaboLights
Abnormal increases in cell size are associated with senescence and cell cycle exit. The mechanisms by which overgrowth primes cells to withdraw from the cell cycle remain unknown. We address this question using CDK4/6 inhibitors, which arrest cells in G0/G1 and are licensed to treat advanced HR+/HER...
2025-10-24 | MTBLS8698 | MetaboLights
CDK4/6 inhibition is the standard of care for estrogen receptor positive (ER+) breast cancer, although cytostasis is frequently observed, and new treatment strategies that enhance efficacy are required. We performed a genome-wide CRISPR screen to identify genetic determinants of CDK4/6 inhibitors se...
ORGANISM(S): Homo sapiens (Human) 
2023-06-20 | PXD043133 | Pride
Cyclin D3 is critical hematopoiesis and loss of cyclin D3 leads to resistance to transformation of bone marrow progenitors by Notch1-IC. We used a small molecule targeting cyclin D3:CDK4/6 activity to study whether its inhibition is an effective therapeutic strategy. We analyzed T-ALL lines in vitro...
ORGANISM(S): Homo sapiens 
Cyclin-dependent kinases 4 and 6 (CDK4/6) regulate cell cycle progression from the G1 to S phase. Recent findings have demonstrated that CDK4/6 inhibition (CDK4/6i) enhances antitumor immunity, as evidenced by increased tumor infiltration of CD8+ T cells, though the underlying mechanism remains uncl...
ORGANISM(S): Mus musculus (Mouse) 
2026-06-29 | PXD057791 | Pride
Cdk4 and Cdk6 are two related kinases that bind D-type cyclins and regulate cell cycle progression. Due to their relevance in cancer, Cdk4/6 inhibitors are currently in advanced clinical trials in multiple tumor types. Cdk4/6 are inhibited by INK4 proteins that exert tumor suppressing functions. To ...
ORGANISM(S): Mus musculus 
CDK4/6 kinase inhibitors have shown great promise in clinical trials in various cancer types and have recently entered clinical trial for advanced prostate cancer. Although patients are expected to respond well to this class of drugs, development of resistance in some patients is anticipated. To pre...
ORGANISM(S): Homo sapiens (Human) 
2018-05-16 | PXD006561 | Pride
CDK4/6 inhibitors arrest the cell cycle in G1-phase. They are licenced to treat breast cancer and are also undergoing clinical trials against a range of other tumour types. To facilitate these efforts, it is important to understand why a temporary cell cycle arrest in G1 causes long-lasting effects ...
ORGANISM(S): Homo sapiens (Human) 
2021-12-20 | PXD023435 | Pride
Gene expression (mRNA profiling) of U2OS osteosarcoma cells treated with 1 mM of the CDK4/6-specific inhibitor, PD0332991, versus vehicle (DMSO) for 4 hours Here, we monitored the early transcriptional response to acute inhibition of CDK4/6 catalytic activity. As PD0332991 substantially induced sene...
ORGANISM(S): Homo sapiens 
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