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Taurine modulates a variety of cellular functions, including antioxidation, modulation of ion movement, osmoregulation, modulation of neurotransmitters and conjugation of bile acids etc. (Huxtable 1992; Satoh 1998; Schaffer et al. 2000; Sjovall 1959).
A therapeutic strategy that combines rehabilitation training and pharmacological modulation of neurotransmitters appears to be a particularly promising approach to increasing recovery after longstanding injury.
The nerve conduction of pain can be classified into four cascades, including pain sensing of the nociceptive receptor, pain transmission of the primary afferent fiber, dorsal horn of the spinal cord, spinal cord-fasciculus thalamicus and other ascending tracts, including pain integration in the cortical and limbic systems, descending control and pain modulation of neurotransmitters.
First of all, our study does not exclude the potential importance of Ca2+ spikes, for example, which are related to the modulation of neurotransmitters, for various functions of SCN.
These receptors are involved in the modulation of neurotransmitters such as dopamine, serotonin, and γ-amino butyric acid.
Taurine exerts a variety of biological actions, including antioxidation, modulation of ion movement, osmoregulation, modulation of neurotransmitters, and conjugation of bile acids, which may maintain physiological homeostasis.
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DOR activation in vRPO could have, however, an additional role in direct modulation of neurotransmitter release from axon terminals.
We anticipate that this device will accelerate the characterization of the modulation of neurotransmitter secretion from neuronal and endocrine cells by pharmacological and molecular manipulations of the cells.
Controlled modulation of neurotransmitter receptors is critical for proper signaling between nerve cells and effector organs.
Synapsin I has been proposed to be involved in the modulation of neurotransmitter release by controlling the availability of synaptic vesicles for exocytosis.
In the central nervous system, sigma receptors have been shown to be involved in the regulation of neurotransmitter release, modulation of neurotransmitter receptor function, learning and memory processes, and regulation of movement and posture [6].
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