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  2. Histamine - Wikipedia

    en.wikipedia.org/wiki/Histamine

    Histamine has two basic centres, namely the aliphatic amino group and whichever nitrogen atom of the imidazole ring does not already have a proton. Under physiological conditions, the aliphatic amino group (having a pK a around 9.4) will be protonated, whereas the second nitrogen of the imidazole ring (pK a ≈ 5.8) will not be protonated. [11]

  3. Histamine H3 receptor - Wikipedia

    en.wikipedia.org/wiki/Histamine_H3_receptor

    Mouse-models and other research demonstrated that reducing histamine concentration in the H3R causes tics, but adding histamine in the striatum decreases the symptoms. [ 22 ] [ 23 ] [ 24 ] The interaction between histamine (H3-receptor) and dopamine as well as other neurotransmitters is an important underlying mechanism behind the disorder.

  4. Neurobiological effects of physical exercise - Wikipedia

    en.wikipedia.org/wiki/Neurobiological_effects_of...

    Neuroplasticity is the process by which neurons adapt to a disturbance over time, and most often occurs in response to repeated exposure to stimuli. [27] Aerobic exercise increases the production of neurotrophic factors [note 1] (e.g., BDNF, IGF-1, VEGF) which mediate improvements in cognitive functions and various forms of memory by promoting blood vessel formation in the brain, adult ...

  5. Histamine receptor - Wikipedia

    en.wikipedia.org/wiki/Histamine_receptor

    The histamine receptors are a class of G protein–coupled receptors which bind histamine as their primary endogenous ligand. [1] [2] Histamine receptors are proteins that bind with histamine, a neurotransmitter involved in various physiological processes. There are four main types: H1, H2, H3, and H4.

  6. Excitatory synapse - Wikipedia

    en.wikipedia.org/wiki/Excitatory_synapse

    These neurons project into many regions of the brain and spinal cord, allowing histamine to mediate attention, arousal, and allergic responses. [3] Of the four types of histamine receptors (H 1 - H 4), H 3 is found in the central nervous system and is responsible for regulating histamine effects on neurotransmission. [7]

  7. What Ozempic Really Does to Your Brain - AOL

    www.aol.com/lifestyle/ozempic-really-does-brain...

    GLP-1 inhibitor drugs might affect everything from food noise to Alzheimer's. Experts answer your top questions about their impact on mood, memory and more.

  8. Histamine H2 receptor - Wikipedia

    en.wikipedia.org/wiki/Histamine_H2_receptor

    The histamine receptor H 2 belongs to the rhodopsin-like family of G protein-coupled receptors. It is an integral membrane protein and stimulates gastric acid secretion. It also regulates gastrointestinal motility and intestinal secretion and is thought to be involved in regulating cell growth and differentiation. [ 6 ]

  9. Histamine H1 receptor - Wikipedia

    en.wikipedia.org/wiki/Histamine_H1_receptor

    Histamine H 1 receptors are activated by endogenous histamine, which is released by neurons that have their cell bodies in the tuberomammillary nucleus of the hypothalamus. The histaminergic neurons of the tuberomammillary nucleus become active during the 'wake' cycle, firing at approximately 2 Hz; during slow wave sleep , this firing rate ...