Neuromelanin: a hypothetical component of bioelectronic mechanisms in brain function.

Physiological chemistry and physics Pub Date : 1981-01-01
M E Lacy
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Abstract

Several lines of evidence suggest the involvement of bioelectronic mechanisms in brain function. Although no components of such mechanisms have been identified, neuromelanin is a likely candidate. The functional significance of neuromelanin is supported by considerable published work, herein reviewed. Certain electronic properties of melanin, notably in stable free radical characteristics and its semiconduction, may be influenced by alpha-MSH, ACTH 4-10, and melatonin. Neuron function may be influenced in turn by the effect of semiconduction on synaptic transmission. Thus neuromelanin may be an important part of a complex neural modulation system.

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神经黑色素:脑功能中生物电子机制的假想成分。
几条线索的证据表明生物电子机制参与脑功能。虽然这种机制的组成部分尚未被确定,但神经黑色素是一个可能的候选者。神经黑色素的功能意义得到了大量已发表工作的支持,本文进行综述。黑色素的某些电子特性,特别是稳定的自由基特性及其半导体特性,可能受到α - msh、ACTH 4-10和褪黑激素的影响。半导体对突触传递的影响可能反过来影响神经元的功能。因此,神经黑色素可能是复杂神经调节系统的重要组成部分。
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Binding of inactivated tyrosine aminotransferase to microsomal membranes. Comparative studies on the enzymological and contractile properties of glycerinated muscle fibers and actomyosin suspensions. Kinetic studies on the initial contraction dependent high ATPase activity of actomyosin molecules. The cellular resting and action potentials: interpretation based on the association-induction hypothesis. Oxidation of tyrosine to dopachrome by peroxidase isolated from murine melanoma.
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