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相关概念视频

Adrenergic Neurons: Neurotransmission01:27

Adrenergic Neurons: Neurotransmission

Postganglionic sympathetic fibers (except those supplying the sweat glands) releasing noradrenaline or norepinephrine are called noradrenergic or adrenergic neurons. Noradrenaline, dopamine, adrenaline, or epinephrine are collectively called "catecholamines" as they contain a catechol moiety and an amine side chain. The five stages of neurotransmitter release involve their synthesis, storage, release, reuptake and metabolism.
Synthesis: Catecholamine synthesis requires tyrosine, which is taken...
Adrenergic Receptors (Adrenoceptors): Classification01:27

Adrenergic Receptors (Adrenoceptors): Classification

Adrenergic receptors, or adrenoceptors, respond to the autonomic neurotransmitter noradrenaline and other endogenous catecholamine agonists. They are classified into two main families, α and β, based on their pharmacological response and are further subdivided depending on their location, elicited response, and affinity to specific agonists or antagonists.
α-Adrenoceptors
α-Adrenoceptors are classified into two main subtypes: α1 and α2. The α1 adrenoceptors, which are found on postsynaptic...
Adrenergic Receptors: ɑ Subtype01:31

Adrenergic Receptors: ɑ Subtype

Adrenoceptors are classified into α and ꞵ classes based on their potencies to catecholamine agonists. α-adrenoceptors show the following order of catecholamine potency:
Adrenaline ≥ Noradrenaline >> Isoprenaline
α-adrenoceptors are further divided into α1 and α2-adrenoceptors.
α1-Adrenoceptors: These receptors are located postsynaptically on the effector organs and cause constriction of smooth muscle mediated by activation of phospholipase C—inositol-1,4,5-trisphosphate...
Adrenergic Receptors: β Subtype01:26

Adrenergic Receptors: β Subtype

β-adrenoceptors have varied sensitivities towards adrenaline, noradrenaline, and isoprenaline. The order of agonist potency is as follows:
Isoprenaline > Adrenaline > Noradrenaline
Neurotransmitter binding to these receptors causes activation of adenylyl cyclase resulting in increased concentrations of cAMP and modulation of calcium ion channels within the cell. They are further classified into β1, β2, and β3 subtypes.
β1-adrenoceptors: β1-adrenoceptors have equal affinities for...
Adrenergic Agonists: Indirect-Acting Agents01:25

Adrenergic Agonists: Indirect-Acting Agents

Indirect-acting adrenergic agonists potentiate the effects of endogenous catecholamines through different mechanisms without directly binding to adrenoceptors.
One mechanism involves depleting stored catecholamines by displacing them from synaptic vesicles. These agents, known as "displacers," are transported into vesicles at the expense of noradrenaline. Examples include amphetamine and tyramine, which lack a catechol moiety, resulting in prolonged action, improved oral bioavailability, and...
Drugs Affecting Neurotransmitter Release or Uptake01:21

Drugs Affecting Neurotransmitter Release or Uptake

Certain drugs can affect how neurotransmitters called catecholamines, are released or taken back up in the adrenergic neuron. They can have different effects on the body's sympathetic transmission. Reserpine, a natural compound found in the Rauwolfia shrub, blocks a transporter called vesicular monoamine transporter (VMAT), which leads to a buildup of catecholamines in the cell and reduces sympathetic transmission. Another drug called guanethidine works in multiple ways, including blocking...

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Comparative incorporation of proenkephalin-derived peptides, chromogranin A, and dopamine beta-hydroxylase into chromaffin vesicles.

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相关实验视频

Updated: Jul 15, 2026

A Convenient Method for Extraction and Analysis with High-Pressure Liquid Chromatography of Catecholamine Neurotransmitters and Their Metabolites
13:35

A Convenient Method for Extraction and Analysis with High-Pressure Liquid Chromatography of Catecholamine Neurotransmitters and Their Metabolites

Published on: March 1, 2018

通过上腺髓的颗粒物部分吸收catecholamines.

N KIRSHNER

    Science (New York, N.Y.)
    |January 12, 1962
    PubMed
    概括

    牛上腺髓 克罗马芬颗粒积极运输类甲基胺. 和ATP显著增强了这种吸收,而储和EDTA则抑制了这种吸收.

    科学领域:

    • 生物化学 生物化学
    • 细胞生物学 细胞生物学
    • 神经科学是一个神经科学.

    背景情况:

    • 克罗玛芬颗粒是上腺髓中 катехо胺的关键储存囊泡.
    • 对于神经内分泌研究来说,了解catecholamine运输是至关重要的.

    研究的目的:

    • 为了研究由分离的克罗马芬颗粒所吸收的甲基胺的吸收机制.
    • 为了确定影响这些囊泡中的甲基荷胺运输的因素.

    主要方法:

    • 从牛肉上腺髓中分离克罗马芬颗粒.
    • 在不同温度 (0°C和37°C之间) 中测量C(14) 标记的甲醇胺的摄取量.
    • 评估Mg ((++),腺三酸盐 (ATP),储和乙烯基二胺三酸 (EDTA) 对摄入的影响.

    主要成果:

    • 在37°C相比0°C时,catecholamine的摄取量显著增加,这表明有一个活跃的过程.
    • 摄入量被Mg(++) 和ATP刺激了3到5倍.
    • 泽尔平 (1 x 10(-5) M) 抑制了90%的吸收.
    • EDTA完全阻断了Mg和ATP刺激的吸收,但这种抑制在过量Mg的情况下是可逆的.
    关键词:
    上腺髓/新陈代谢

    更多相关视频

    Impact of Intracardiac Neurons on Cardiac Electrophysiology and Arrhythmogenesis in an Ex Vivo Langendorff System
    06:40

    Impact of Intracardiac Neurons on Cardiac Electrophysiology and Arrhythmogenesis in an Ex Vivo Langendorff System

    Published on: May 22, 2018

    A Plate-Based Assay for the Measurement of Endogenous Monoamine Release in Acute Brain Slices
    07:56

    A Plate-Based Assay for the Measurement of Endogenous Monoamine Release in Acute Brain Slices

    Published on: August 11, 2021

    相关实验视频

    Last Updated: Jul 15, 2026

    A Convenient Method for Extraction and Analysis with High-Pressure Liquid Chromatography of Catecholamine Neurotransmitters and Their Metabolites
    13:35

    A Convenient Method for Extraction and Analysis with High-Pressure Liquid Chromatography of Catecholamine Neurotransmitters and Their Metabolites

    Published on: March 1, 2018

    Impact of Intracardiac Neurons on Cardiac Electrophysiology and Arrhythmogenesis in an Ex Vivo Langendorff System
    06:40

    Impact of Intracardiac Neurons on Cardiac Electrophysiology and Arrhythmogenesis in an Ex Vivo Langendorff System

    Published on: May 22, 2018

    A Plate-Based Assay for the Measurement of Endogenous Monoamine Release in Acute Brain Slices
    07:56

    A Plate-Based Assay for the Measurement of Endogenous Monoamine Release in Acute Brain Slices

    Published on: August 11, 2021

    结论:

    • 克罗玛芬颗粒具有对甲基醇胺的活性运输系统.
    • 这种运输系统依赖于Mg ((++) 和ATP.
    • 这些发现表明,一种依赖Mg ((++) 的ATPase参与了克罗马芬颗粒对甲基胺素的吸收.