Neurons Containing Hypocretin (Orexin) Project to Multiple Neuronal Systems
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Summary
The results of this immunohistochemical study suggest that hypocretins are likely to have a role in physiological functions in addition to food intake such as regulation of blood pressure, the neuroendocrine system, body temperature, and the sleep–waking cycle.
- Type
- article
- Published
- 1998-12-01
- Cited by
- 3,413
- References
- 58
- Access
- Open access
- OpenAlex
- https://openalex.org/W1627229807
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16724939
Keywords
Stria terminalis, Parabrachial Nucleus, Zona incerta, Neuroscience, Solitary tract
References
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- Thermogenesis after lateral hypothalamic lesions: contributions of brown adipose tissue.
- Presynaptic and Postsynaptic Actions and Modulation of Neuroendocrine Neurons by a New Hypothalamic Peptide, Hypocretin/Orexin
- Overview of the most prevalent hypothalamus-specific mRNAs, as identified by directional tag PCR subtraction.
- The melanin‐concentrating hormone system of the rat brain: An immuno‐ and hybridization histochemical characterization
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- The perifornical area: the major focus of (a) patchily distributed hypothalamic neuropeptide Y-sensitive feeding system(s).
- A role for melanin-concentrating hormone in the central regulation of feeding behaviour
- Neuropeptide Y: stimulation of feeding and drinking by injection into the paraventricular nucleus.
- Melanin-concentrating hormone is a potent anorectic peptide regulated by food-deprivation and glucopenia in the rat.
- Specific inhibition of endogenous neuropeptide Y synthesis in arcuate nucleus by antisense oligonucleotides suppresses feeding behavior and insulin secretion.
- Forebrain afferents to the rat dorsal raphe nucleus demonstrated by retrograde and anterograde tracing methods.
- Changes in lateral hypothalamic neuronal activity accompanying hyper- and hypoglycemias.
- Histochemical and pharmacological analysis of noradrenergic projections to the paraventricular hypothalamus in relation to feeding stimulation.
- Efferent connections from the lateral hypothalamic region and the lateral preoptic area to the hypothalamic paraventricular nucleus of the rat
- Direct hypothalamo-autonomic connections.
Cited by
- Understanding the sleep-wake cycle: sleep, insomnia, and the orexin system.
- Inhibition of food intake by central injection of anti-orexin antibody in fasted rats.
- Pharmacology of appetite suppression.
- The suprachiasmatic nucleus projects to posterior hypothalamic arousal systems
- Hypothalamic orexin-A-immunpositive neurons express Fos in response to central glucopenia
- SB‐334867‐A: the first selective orexin‐1 receptor antagonist
- Narcolepsy and the HLA region.
- Orexin A reverses propofol and thiopental induced cytoskeletal rearrangement in rat neurons.
- Orexins (hypocretins) directly excite tuberomammillary neurons
- Interaction of the hypocretins with neurotransmitters in the nucleus accumbens.
- Appetite suppression based on selective inhibition of NPY receptors
- Hypocretin (orexin) enhances neuron activity and cell synchrony in developing mouse GFP‐expressing locus coeruleus
- Induction of active (REM) sleep and motor inhibition by hypocretin in the nucleus pontis oralis of the cat.
- Orexins and their receptors: structural aspects and role in peripheral tissues
- Roles of orexins in the regulation of feeding and arousal.
- Expression of hypothalamic neuropeptides after acute TCDD treatment and distribution of Ah receptor repressor.
- Antiaging methods and medicines for the memory.
- Hypocretinergic Control of Spinal Cord Motoneurons
- Brain mechanisms that control sleep and waking
- GABA‐mediated control of hypocretin‐ but not melanin‐concentrating hormone‐immunoreactive neurones during sleep in rats
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- Commentary on: Efferent connections of the parabrachial nucleus in the rat. C.B. Saper and A.D. Loewy, Brain Research 197:291-317, 1980.
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