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Trazodone, sold under many brand names, [1] is an antidepressant medication [20] used to treat major depressive disorder, anxiety disorders, and insomnia. [20] It is a phenylpiperazine compound of the serotonin antagonist and reuptake inhibitor (SARI) class.
Radioactive isotope table "lists ALL radioactive nuclei with a half-life greater than 1000 years", incorporated in the list above. The NUBASE2020 evaluation of nuclear physics properties F.G. Kondev et al. 2021 Chinese Phys. C 45 030001. The PDF of this article lists the half-lives of all known radioactives nuclides.
Niaprazine (Nopron) – a drug related to this group but does not inhibit the reuptake of serotonin or the other monoamines. Medifoxamine (Clédial, Gerdaxyl) – could perhaps technically be said to belong to this group, as it is a serotonin–dopamine reuptake inhibitor and 5-HT 2A and 5-HT 2C receptor antagonist, but not grouped as such. [1]
In this situation it is generally uncommon to talk about half-life in the first place, but sometimes people will describe the decay in terms of its "first half-life", "second half-life", etc., where the first half-life is defined as the time required for decay from the initial value to 50%, the second half-life is from 50% to 25%, and so on.
[4] [5] Antipsychotics like quetiapine and olanzapine and antidepressants like trazodone and mirtazapine are all potent serotonin 5-HT 2A receptor antagonists. [ 6 ] [ 28 ] [ 29 ] Conversely, benzodiazepines and alcohol act as positive allosteric modulators of the GABA A receptor and have anxiolytic and sedative effects. [ 30 ]
This is a list of adverse effects of the antidepressant trazodone, sorted by frequency of occurrence. [1] [2] [3] Very common.
In addition, due to their blockade of certain serotonin receptors, serotonergic neurotransmission is not facilitated in unwanted areas, which prevents the incidence of many side effects often associated with selective serotonin reuptake inhibitor (SSRI) antidepressants; [1] [3] hence, in part, the "specific serotonergic" label of NaSSAs. [2]
Alternatively, since the radioactive decay contributes to the "physical (i.e. radioactive)" half-life, while the metabolic elimination processes determines the "biological" half-life of the radionuclide, the two act as parallel paths for elimination of the radioactivity, the effective half-life could also be represented by the formula: [1] [2]