>>Signaling Pathways>> Proteases>> Endogenous Metabolite>>(+,-)-Octopamine HCl

(+,-)-Octopamine HCl (Synonyms: β,4-Dihydroxyphenethylamine, Epirenor, Norfen, NSC 108685, (±)-4-Octopamine, (±)-p-Octopamine)

Catalog No.GC10675

노르아드레날린과 구조적으로 관련된 생체 모노아민인 옥토파민((±)-p-옥토파민) 염산염은 무척추 동물에서 신경 호르몬, 신경 조절제 및 신경 전달 물질로 작용합니다.

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(+,-)-Octopamine HCl Chemical Structure

Cas No.: 770-05-8

Size 가격 재고 수량
10mM (in 1mL DMSO)
US$38.00
재고 있음
50mg
US$48.00
재고 있음

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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents Related Products

Octopamine hydrochloride ((±)-p-Octopamine hydrochlorid) is an endogenous biogenic amine that is closely related to norepinephrine, and has effects on the adrenergic and dopaminergic systems.Target: Dopamine Receptor; Adrenergic ReceptorOctopamine is present in relatively high concentrations in neuronal as well as in non-neuronal tissues of most invertebrate species studied, and modulates almost every physiological process. Octopamine acts as neurohormone including desensitization of sensory inputs, influence on learning and memory, or regulation of the mood of the animal in the central nervous system. Octopamine is the only neuroactive non-peptide transmitter whose physiological role is restricted to invertebrates, and all octopamine receptors belong to the family of G-protein coupled receptors [1].Octopamine (10 μM) injected into the mushroom body (MB) calyces or the antennal lobe but not the lateral protocerebral lobe produces a lasting, pairing-specific enhancement of extension of the proboscis. Octopamine (10 μM) injected into the MB calyces results in an additional pairing-specific effect, because it does not lead to an acquisition but a consolidation after conditioning [2]. Octopamine treatment significantly elevates levels of octopamine in the brain and caused a significant dose-dependent increase in the number of new foragers. Octopamine treatment is effective only when given to bees old enough to forage, i.e., older than 4 days of age. Octopamine influences division of labor in honey bee colonies [3].

References:
[1]. Roeder, T., Octopamine in invertebrates. Prog Neurobiol, 1999. 59(5): p. 533-61.
[2]. Hammer, M. and R. Menzel, Multiple sites of associative odor learning as revealed by local brain microinjections of octopamine in honeybees. Learn Mem, 1998. 5(1-2): p. 146-56.
[3]. Schulz, D.J. and G.E. Robinson, Octopamine influences division of labor in honey bee colonies. J Comp Physiol A, 2001. 187(1): p. 53-61.

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