Results 241 to 250 of about 448,913 (359)
Correction: African walnut (<i>Plukenetia conophora</i>) oil improves glucose uptake and metabolic activities in erythrocytes. [PDF]
Erukainure OL, Chukwuma CI.
europepmc +1 more source
Calhm6 drives M2 macrophage polarization via the Chp1‐Camk4‐Creb1 axis, suppressing inflammation through calcium‐dependent ectosomal delivery. Calhm6 deficiency enhances M1 responses, boosting bactericidal activity but exacerbating tissue damage. LPS/IFNγ upregulate Calhm6 via Irf1, while IL‐4/Stat6 inhibits it, balancing immune outcomes.
Yanlong Xin +14 more
wiley +1 more source
The reduction of glutathione in mammalian erythrocytes [PDF]
Norman Urquhart Meldrum
openalex +1 more source
Physiological pH transitions modulate protein corona dynamics on nanoparticles, altering their cellular uptake and inflammatory responses. Acidic pHs enhance protein adsorption, induce structural changes, and promote cellular uptake. Simultaneously, inflammatory responses are reduced due to altered protein composition, including decreased ...
Yuting Ge +7 more
wiley +1 more source
DIFFUSION AND PERMEATION OF CATIONS IN HUMAN AND DOG ERYTHROCYTES [PDF]
E. J. Harris, T. A. J. Prankerd
openalex +1 more source
Current understanding of eryptosis: mechanisms, physiological functions, role in disease, pharmacological applications, and nomenclature recommendations. [PDF]
Tkachenko A +17 more
europepmc +1 more source
A nanomodulator (Ft‐E64/Hf@Lipo) is developed, combining radiosensitizer hafnium (Hf) and the cysteine protease inhibitor E64, which cooperatively reinvigorated the antigen presentation of TAMs. Ft‐E64/Hf@Lipo sensitized‐RT generated abundant tumor neoantigens, and then E64/antigens, along with the apoptotic tumor cells, trafficked to TAMs via ...
Xiu Zhao +9 more
wiley +1 more source
CONCENTRATIVE UPTAKE OF AMINO ACIDS BY ERYTHROCYTES IN VITRO
Halvor N. Christensen +2 more
openalex +1 more source
CD47/SIRPα pathways: Functional diversity and molecular mechanisms. [PDF]
Bhardwaj N, Chandra H, Singh A, Babu R.
europepmc +1 more source
FOXQ1 emerges as a master transcriptional regulator of brain endothelial metabolism, orchestrating mitochondrial function through dual control of calcium signaling and cristae organization. This study reveals that brain endothelial cells rely on oxidative phosphorylation rather than glycolysis alone, challenging the current metabolic paradigm and ...
Wenzheng Zou +8 more
wiley +1 more source

