Neuropeptides are essential signaling molecules secreted by dense-core vesicles (DCVs). They contribute to information processing in the brain, controlling a variety of physiological conditions. Defective neuropeptide signaling is implicated in several psychiatric disorders. Here, we provide a protocol for the quantitative analysis of DCV fusion events in rodent neurons using pH-sensitive DCV fusion probes and custom-written analysis algorithms. This method can be used to study DCV fusion mechanisms and is easily adapted to investigate fusion principles of other secretory organelles. For complete details on the use and execution of this protocol, please refer to Persoon et al. (2019)
Synapses relay information through the release of neurotransmitters stored in presynaptic vesicles. ...
Activity regulated neurotransmission shapes the computational properties of a neuron and involves th...
Neuropeptides released from dense-core vesicles (DCVs) modulate neuronal activity, but the molecules...
Our brain consists of a complex network of neurons which communicate by secreting signaling molecule...
Neuropeptides are essential signaling molecules transported and secreted by dense-core vesicles (DCV...
Neuropeptides are ubiquitous modulators of behavior and physiology. They are packaged in specialized...
The human brain contains billions of brain cells (neurons). Neurons communicate with each other thro...
The general aim of this thesis was to reveal the role of SM-proteins in neuronal secretion, and in p...
It is today widely accepted that several types of high molecular weight (MW) neurotransmitters produ...
Small molecules modulating synaptic vesicle endocytosis (SVE) may ultimately be useful for diseases ...
Synaptic vesicles (SVs) release neurotransmitters at specialized active zones, but release sites and...
Synaptic vesicles (SVs) release neurotransmitters at specialized active zones, but release sites and...
Activity regulated neurotransmission shapes the computational properties of a neuron and involves th...
Neuropeptides, which control emotion, behavior and body homeostasis, are released at nerve terminals...
Neuropeptides and neurotrophic factors secreted from dense core vesicles (DCVs) control many brain f...
Synapses relay information through the release of neurotransmitters stored in presynaptic vesicles. ...
Activity regulated neurotransmission shapes the computational properties of a neuron and involves th...
Neuropeptides released from dense-core vesicles (DCVs) modulate neuronal activity, but the molecules...
Our brain consists of a complex network of neurons which communicate by secreting signaling molecule...
Neuropeptides are essential signaling molecules transported and secreted by dense-core vesicles (DCV...
Neuropeptides are ubiquitous modulators of behavior and physiology. They are packaged in specialized...
The human brain contains billions of brain cells (neurons). Neurons communicate with each other thro...
The general aim of this thesis was to reveal the role of SM-proteins in neuronal secretion, and in p...
It is today widely accepted that several types of high molecular weight (MW) neurotransmitters produ...
Small molecules modulating synaptic vesicle endocytosis (SVE) may ultimately be useful for diseases ...
Synaptic vesicles (SVs) release neurotransmitters at specialized active zones, but release sites and...
Synaptic vesicles (SVs) release neurotransmitters at specialized active zones, but release sites and...
Activity regulated neurotransmission shapes the computational properties of a neuron and involves th...
Neuropeptides, which control emotion, behavior and body homeostasis, are released at nerve terminals...
Neuropeptides and neurotrophic factors secreted from dense core vesicles (DCVs) control many brain f...
Synapses relay information through the release of neurotransmitters stored in presynaptic vesicles. ...
Activity regulated neurotransmission shapes the computational properties of a neuron and involves th...
Neuropeptides released from dense-core vesicles (DCVs) modulate neuronal activity, but the molecules...