Intratumoral Antigen Signaling Traps CD8+ T Cells to Confine Exhaustion to the Tumor Site

Intratumoral Antigen Signaling Traps CD8+ T Cells to Confine Exhaustion to the Tumor Site

Research Progress in Cancer Immunology: Tumor-derived Antigen Signals Induce CD8+ T-cell Exhaustion Localized to the Tumor Site Research Background and Purpose In recent years, immunotherapy has shown great potential in cancer treatment. However, tracking the behavior of immune cells after receiving antigen signals remains a challenge. Within tumor...

TDRD3-null Mice Show Post-Transcriptional and Behavioral Impairments Associated with Neurogenesis and Synaptic Plasticity

TDRD3 Deficient Mice Exhibit Deficits in Neurogenesis and Synaptic Plasticity at Both Post-transcriptional and Behavioral Levels Research Background Topoisomerase 3b (top3b) is a dual-activity topoisomerase capable of resolving DNA and RNA topological problems. An increasing body of evidence indicates that top3b functions as a conserved complex wit...

YEATS2 Knockdown Impairs Dopaminergic Synaptic Integrity and Leads to Seizure-like Behaviors in Drosophila Melanogaster

A Study on the Effect of YEATS2 Gene Knockdown on Dopaminergic Synaptic Integrity and Epileptic-like Behavior in Drosophila Background Introduction Epilepsy is a common neurological disorder characterized by abnormal electrical activities in the brain. These abnormal activities can lead to seizures and other neurological symptoms. Familial adult my...

Phase of Neural Oscillations as a Reference Frame for Attention-Based Routing in Visual Cortex

Phase of Neural Oscillations as a Reference Frame for Attention-Based Routing in Visual Cortex

One of the key issues in understanding the visual system’s selective attention is how it optimizes the perception and processing of visual information in specific behavioral contexts. Although previous research has analyzed the pivotal role of individual neuron firing rates in information transmission, our understanding remains limited regarding ho...

ABHD6 Drives Endocytosis of AMPA Receptors to Regulate Synaptic Plasticity and Learning Flexibility

ABHD6 Drives Endocytosis of AMPA Receptors to Regulate Synaptic Plasticity and Learning Flexibility Research Background In the exploration of the neural system’s mechanisms, α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors (AMPAR) maintain the tuning ability of neurons in both resting and active states through the regulation of...