Results 241 to 250 of about 438,426 (359)
Oral nanoCEL exhibits effective intestinal targeting of antigen‐presenting cells and restores the Th17/Treg balance in lymph nodes and spleen, ultimately protecting the blood‐retinal barrier by inhibiting peripheral immune cell infiltration and suppressing retinal glial cell activation.
Jinrun Chen +13 more
wiley +1 more source
Myosin XI-1 mediates salt tolerance through a Na+ transport pathway in Arabidopsis. [PDF]
Liu H, Tominaga M.
europepmc +1 more source
PEA nanoenzymes are assembled from L‐arginine and EGCG. The nitrogen element in arginine enhances the thermodynamic feasibility of H2O2 production through PEA's oxygen reduction catalysis, enabling nitrogen‐dependent H2O2 release. Intradermal delivery of PEA via microneedles promotes efficient H2O2 synthesis, thereby stimulating regrowth in telogen ...
Yifei Wang +7 more
wiley +1 more source
A GhBGH2-GhGLK1 Regulatory Module Mediates Salt Tolerance in Cotton. [PDF]
Wang P +12 more
europepmc +1 more source
Calcium amendment and NaCl salt pre-treatment improves salinity tolerance in potato genotypes
E. Etehadnia, D. Waterer, Karen Tanino
openalex +1 more source
Cellular Identity Crisis: RD3 Loss Fuels Plasticity and Immune Silence in Progressive Neuroblastoma
Researchers discovered that therapy‐induced loss of RD3 protein in neuroblastoma triggers a dangerous shift: cancer cells become more stem‐like, invasive, and resistant to treatment while evading immune detection. RD3 loss suppresses antigen presentation and boosts immune checkpoints, creating an immune‐silent environment.
Poorvi Subramanian +7 more
wiley +1 more source
Halophyte-Derived Kushneria Strains Enhance Salt Tolerance and Rhizosphere Dynamics in Cabbage. [PDF]
Peng Y, Lee JH, Kim CY, Lee J.
europepmc +1 more source
Infra-Red thermography Informs Plant's Tolerance Against Drought and Salt Stresses
Zamin Shaheed Siddiqui +2 more
openalex +1 more source
The AAA+ ATPase Valosin‐containing protein (VCP/p97) regulates protein homeostasis by unfolding ubiquitinated substrates. Here, we describe UTE‐156, a novel irreversible covalent inhibitor that modifies Cys522 in the D2 ATPase motor domain. Although its pharmacochemical limitations preclude immediate therapeutic use, UTE‐156 serves as a valuable ...
Daniela Tamayo‐Jaramillo +8 more
wiley +1 more source

