Results 201 to 210 of about 618,626 (288)
Heme-binding protein CYB5D1 couples intraflagellar redox to calcium signaling for coordinated flagellar beating. [PDF]
Lin Y +5 more
europepmc +1 more source
Metabolite‐driven redox stress governs cancer cell senescence. TPI1 deficiency elevates DHAP, initiating SARM1‐dependent cADPR‐Ca2+ release. Mitochondrial ROS surge subsequently induces DNA damage and senescence, offering a conserved therapeutic target in multiple cancers.
Chunyu Liu +15 more
wiley +1 more source
An in situ‐grown BP‐CaO2 nanoplatform supplies coordinated Ca2+, endogenous phosphate, and oxidative stress to convert tumor calcification from a passive endpoint into an active immune‐remodeling process. Widespread hydroxyapatite deposition is visualized by CT, while multi‐omics reveals MCOLN2 as a calcium‐responsive mediator linking biomineralization
Long Liu +11 more
wiley +1 more source
Developmental changes in Ca<sup>2+</sup> signaling mediated by A<sub>2A</sub> adenosine and mGluR<sub>5</sub> glutamate receptors in olfactory bulb astrocytes. [PDF]
Mohammadpour F +4 more
europepmc +1 more source
A flexible PDMS‐LATP polymer‐ceramic membrane creates lithium‐ion “superhighways” for rapid and selective extraction from complex brines. The amorphous PDMS matrix suppresses nonselective leakage and stabilizes the ceramic network, while LATP provides preferential Li+ conduction.
Xinxin Wei +12 more
wiley +1 more source
Calcium Imaging in H4IIE Liver Cells and Primary Rodent Hepatocytes: A Cost-Effective Protocol for Use With Fura-2 AM Ca<sup>2+</sup> Indicator. [PDF]
Fang L +4 more
europepmc +1 more source
Rewiring Pyroptosis to Potentiate Cancer Immunotherapy via a Gasdermin D Agonist Bypassing Caspase‐3
This work introduces a small‐molecule agonist, DIBDO, that bypasses Casp‐3 to directly trigger GSDMD‐mediated pyroptosis in tumors. Activated by glutathione, DIBDO generates singlet oxygen and molecular iodine, blocking Casp‐3 pathways and inducing immunogenic cell death.
Dan Zhao +6 more
wiley +1 more source
Cholecystokinin Induces Ca<sup>2+</sup> Transients in Brainstem Neurons, Astrocytes and Central Vagal Terminals in Jugular/Nodose Ganglia-Brainstem Slice Cultures. [PDF]
Ujhelyi A, Kucharz RS, Rekling JC.
europepmc +1 more source

