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GABA and Octopamine Receptors as Potential Targets for Fumigant Actions of <i>Bursera graveolens</i> Essential Oil Against <i>Callosobruchus maculatus</i> and <i>Callosobruchus chinensis</i>. [PDF]

open access: yesJ Xenobiot
Viteri LO   +11 more
europepmc   +1 more source

Controlling malaria mosquito reproduction via the octopamine beta2 receptor

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Ellis DA   +16 more
europepmc   +1 more source
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The biosynthesis of octopamine

Naunyn-Schmiedeberg's Archives of Pharmacology, 1972
The biosynthesis of octopamine was determined by the administration of amino acid and amine precursors and enzyme inhibitors and measuring the endogenous levels of octopamine. It appeared to proceed as follows: phenylalanine-tyrosine-tyramine-octopamine.
K, Brandau, J, Axelrod
exaly   +3 more sources

Octopamine

Nature, 1977
Octopamine is highly concentrated in neurones of several invertebrate species. Unlike in mammals, octopaminergic neurones in invertebrates are spatially separated from catecholaminergic neurons. In identified nerve cells of Aplysia, however, this amine coexists with other putative neurotransmitters. Octopamine is synthesized in nerves from tyrosine and
J, Axelrod, J M, Saavedra
openaire   +2 more sources

Octopamine in invertebrates

Progress in Neurobiology, 1999
Octopamine (OA), a biogenic monoamine structurally related to noradrenaline, acts as a neurohormone, a neuromodulator and a neurotransmitter in invertebrates. It is present in relatively high concentrations in neuronal as well as in non-neuronal tissues of most invertebrate species studied. It functions as a model for the study of modulation in general.
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Octopamine in the Lobster Nervous System

Nature New Biology, 1972
A search for catecholamines which might serve as transmitters in the lobster nervous system demonstrated only small amounts of dopamine (about 0.2 µg/g tissue) and failed to detect noradrenaline or adrenaline (limit of sensitivity, 0.1 µg g−1) (unpublished results of D. L.
D L, Barker, P B, Molinoff, E A, Kravitz
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Octopamine and locomotor activity of rats

Psychopharmacology, 1983
Intracerebroventricular administration of P-octopamine (OA) had opposite effects on locomotor activity depending on whether or not the rats were subjected to uncontrollable electric shocks. In unshocked rats, OA produced a large decrease in locomotor activity, but when the rats were subjected to unsignalled and uncontrollable electric shocks, a ...
J, Delacour, C, Guenaire
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