Voltage-gated calcium channels (VGCCs) are crucial for neuronal communication, with CaV2.2 channels playing a key role in calcium-driven neurotransmitter release.
REMIS represents a novel, noninvasive strategy to monitor gene expression in specific brain regions with spatial and temporal precision.
Voltage-gated calcium channels (VGCCs) are crucial for neuronal communication, with CaV2.2 channels playing a key role in calcium-driven neurotransmitter release.
REMIS represents a novel, noninvasive strategy to monitor gene expression in specific brain regions with spatial and temporal precision.
The positioning of tanycytes suggests a critical role in maintaining hypothalamic integrity and facilitating the brain’s response to peripheral signals.
The future of luminescent biosensors lies in their integration with emerging technologies, such as gene editing and optogenetics.
Tumor-infiltrating lymphocytes are biomarkers of the tumor microenvironment’s dynamics and a patient’s intrinsic anti-tumor immunity.
Microalgae represent a transformative solution to the challenges of feeding a growing population sustainably.
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