Results 191 to 200 of about 591,098 (317)
Mitochondria: from powerhouses of cells to hubs in antitumor immunity. [PDF]
Li X, Shi Y, Zhao Y, Zhu G, Jin L.
europepmc +1 more source
An adhesive hydrogel depot with polyphenol‐armored nanogenes is developed for treating aged osteoarthritis. This system maintains miR‐140 bioactivity, prolongs its intra‐articular retention, and enhances transfection into chondrocytes, leading to the downregulation of senescence‐associated pathways.
Liwei Yan +10 more
wiley +1 more source
Mitophagy-mediated immune evasion: Shared strategies of pathogens. [PDF]
Li J, Li W, Wang D, Liu Y.
europepmc +1 more source
ABSTRACT Infected diabetic wounds are sustained by a vicious cycle of hyperglycemia‐driven bacterial infection, persistent oxidative stress, and excessive inflammation, which collectively disrupt the ordered progression of tissue repair. Here, we engineered a stage‐adaptive Janus microneedle patch (MN‐FeSAC‐PPE) to enable a staged therapeutic process ...
Mengting Yin +13 more
wiley +1 more source
The interplay of lipid droplets, mitochondria, and ER in governing hepatic lipid metabolism. [PDF]
Hofstadter WA, Reid MV, Mashek DG.
europepmc +1 more source
A multifunctional β‐GP@EGCG‐E7 nanoplatform is engineered by polyphenol–peptide condensation and phosphate loading. Bone‐targeted delivery, antioxidant and anti‐inflammatory activity, and mitophagy restoration are integrated in one system, enabling protection of osteoblasts and endothelial cells and promoting bone regeneration under diabetic ...
Xiuyun Xu +13 more
wiley +1 more source
Mitochondria as convergence hubs for innate immunity pathways. [PDF]
Guo Y, Xue Y.
europepmc +1 more source
This work first time reports an eco‐friendly desert plant food‐based polysaccharide ASKP microgels which have intestinal site‐specific release properties which can achieve small‐intestine or colon targeting capability via different cross‐linking chemistry.
Huiling Yan +10 more
wiley +1 more source
Mitochondrial transfer in the tumor microenvironment: a dynamic determinant of cancer plasticity, immune dysfunction, and therapeutic opportunity. [PDF]
Xu Z, Zhou Q, Miao J.
europepmc +1 more source
NLSS3 Impairs SHM1 Autophagic Degradation to Regulate Leaf Morphology and Salt Tolerance in Rice
In rice, NLSS3 binds and shields SHM1 from autophagic degradation to maintain serine homeostasis. The A132P mutation in nlss3 disrupts this, triggering SHM1 loss, metabolic dysfunction, K+ imbalance, and impaired ROS scavenging, which collectively drive narrow leaves and salt sensitivity.
Xiong Liu +15 more
wiley +1 more source

