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In the fetal lung, they are frequently located at the branching points of airway tubules, and in humans are present by 10 weeks gestation. Peptides and amines released by PNEC are involved in normal fetal lung development including branching morphogenesis. The best-characterized peptides are GRP, the
168:. Autonomic nerve fibers lead directly to them from the central nervous system. The adrenal medullary hormones are kept in vesicles much in the same way neurotransmitters are kept in neuronal vesicles. Hormonal effects can last up to ten times longer than those of neurotransmitters. Sympathetic
327:
detection. This is best supported by the presence of an oxygen-sensitive potassium channel coupled to an oxygen sensory protein in the rabbit lumenal membrane. They are hypothetically involved in regulating localized epithelial cell growth and regeneration through a
530:•The hypothalamic–pituitary–adrenal (HPA) axis. It comprises corticotropin-releasing factor (CRF), released by the hypothalamus; adrenocorticotropic hormone (ACTH), released by the anterior pituitary; and glucocorticoids, released by the adrenal cortex.
332:, whereby their signaling peptides are released into the environment. In addition, they contain neuroactive substances which are released from basal cytoplasm. These substances induce autonomic nerve terminals or vasculature in the deep
542:•The hypothalamic–pituitary–gonadal axis comprises hypothalamic gonadotropin–releasing hormone (GnRH), the anterior pituitary luteinizing hormone (LH) and follicle-stimulating hormone (FSH), and the gonadal steroids.
532:•The hypothalamic–pituitary–thyroid axis consists of hypothalamic thyrotropin-releasing hormone (TRH); the anterior pituitary hormone thyroid–stimulating hormone (TSH); and the thyroid hormones T
172:
fiber impulses stimulate the release of adrenal medullary hormones. In this way the sympathetic division of the autonomic nervous system and the medullary secretions function together.
345:
mammalian form of bombesin, and CGRP; these substances exert direct mitogenic effects on epithelial cells and exhibit many properties akin to growth factors.
720:
511:
Malenka RC, Nestler EJ, Hyman SE (2009). "Chapter 10: Neural and
Neuroendocrine Control of the Internal Milieu". In Sydor A, Brown RY (ed.).
315:
These cells can be the source of several types of lung cancer, most notably small cell carcinoma of the lung, and bronchial carcinoid tumor.
603:
Chong S, Lee KS, Chung MJ, Han J, Kwon OJ, Kim TS (2006). "Neuroendocrine tumors of the lung: clinical, pathologic, and imaging findings".
226:
220:
214:
528:•The hypothalamic–neurohypophyseal system secretes two peptide hormones directly into the blood, vasopressin and oxytocin. ...
232:
89:
61:
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638:
Becker, KL; Silva, OL (July 1981). "Hypothesis: the bronchial
Kulchitsky (K) cell as a source of humoral biologic activity".
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42:
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cells are considered part of the neuroendocrine system, and share many staining properties with neuroendocrine cells.
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released by nerve cells or neurosecretory cells) and, as a consequence of this input, release messenger molecules (
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183:. Here hypothalamic neurosecretory cells release factors to the blood. Some of these factors (
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cells where they may stimulate, inhibit, or maintain the function of a particular cell type.
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that occur as solitary cells or as clusters called neuroepithelial bodies (NEBs) in the
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288:. They can be distinguished by their profile of bioactive amines and peptides, namely
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are delivered into the bloodstream. They are carried by portal vessels to the
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cells and thereby regulates functions in the entire body, like responses to
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Specialized groups of neuroendocrine cells can be found at the base of the
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The major center of neuroendocrine integration in the body is found in the
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191:, control the secretion of pituitary hormones, while others (the hormones
132:) into the blood. In this way they bring about an integration between the
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515:(2nd ed.). New York: McGraw-Hill Medical. pp. 246, 248–259.
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These cells are bottle- or flask-like in shape, and reach from the
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to the blood. The adrenal medullary cells are controlled by the
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389:. The neurons send processes to a region connecting to the
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144:. An example of a neuroendocrine cell is a cell of the
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258:. Pulmonary neuroendocrine cells are also known as
49:. Unsourced material may be challenged and removed.
556:"Neuroendocrine differentiation in lung carcinoma"
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124:are cells that receive neuronal input (through
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323:PNECs may play a role with chemoreceptors in
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691:at the U.S. National Library of Medicine
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277:and neonatal stages in the lung airways.
109:Learn how and when to remove this message
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199:) are released directly into the blood.
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16:Type of glandular cell found in brain
233:Hypothalamic–neurohypophyseal system
47:adding citations to reliable sources
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968:Transcription preinitiation complex
227:Hypothalamic–pituitary–gonadal axis
221:Hypothalamic–pituitary–thyroid axis
215:Hypothalamic–pituitary–adrenal axis
13:
936:Signal transducing adaptor protein
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187:), released at the hypothalamic
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298:calcitonin gene-related peptide
34:needs additional citations for
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244:Pulmonary neuroendocrine cells
239:Pulmonary neuroendocrine cells
1:
611:(1): 41–57, discussion 57–8.
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652:10.1016/0306-9877(81)90049-9
273:. PNECs and NEBs exist from
209:Major neuroendocrine systems
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373:). This area controls most
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164:. These cells are modified
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476:Oxyphil cell (parathyroid)
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265:. They are located in the
142:neuroendocrine integration
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306:gastrin-releasing peptide
250:) are specialized airway
1048:Neuroendocrine signaling
693:Medical Subject Headings
369:(in a region called the
162:autonomic nervous system
269:of the upper and lower
148:(innermost part of the
910:cAMP-dependent pathway
358:
267:respiratory epithelium
166:postganglionic neurons
1036:Synaptic transmission
1032:Neurocrine signaling
955:Transcription factors
802:PI3K/AKT/mTOR pathway
689:Neuroendocrine+System
554:Addis, B. J. (1995).
356:
140:, a process known as
58:"Neuroendocrine cell"
1101:Nervous tissue cells
685:at Wikimedia Commons
683:Neuroendocrine cells
617:10.1148/rg.261055057
572:10.1136/thx.50.2.113
411:Neuroendocrine tumor
158:sympathetic division
122:Neuroendocrine cells
43:improve this article
1065:Mechanotransduction
1053:Exocrine signalling
860:Signaling molecules
734:Signal transduction
387:reproductive system
330:paracrine mechanism
1075:Ion channel gating
807:Integrin receptors
741:Signaling pathways
640:Medical Hypotheses
416:Neuroendocrinology
395:releasing hormones
375:anterior pituitary
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340:Role in fetal lung
185:releasing hormones
152:), which releases
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1070:Phototransduction
1028:Intracrine action
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837:Neurotransmitters
681:Media related to
282:basement membrane
271:respiratory tract
126:neurotransmitters
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1041:Chemical synapse
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485:Pituitary gland
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363:third ventricle
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32:This article
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1080:Gap junction
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915:Ca signaling
878:Cell surface
646:(7): 943–9.
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467:Oxyphil cell
421:Neurohormone
371:hypothalamus
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177:hypothalamus
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99:October 2015
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41:Please help
36:verification
33:
991:By distance
929:Assistants:
888:Co-receptor
435:Melanotroph
308:(GRP), and
197:vasopressin
1095:Categories
1058:Pheromones
998:Juxtacrine
491:References
444:Chromophil
385:, and the
294:calcitonin
229:(HPG axis)
223:(HPT axis)
217:(HPA axis)
154:adrenaline
69:newspapers
1012:Endocrine
1007:Paracrine
1003:Autocrine
870:Receptors
850:Cytokines
399:pituitary
290:serotonin
260:bronchial
832:Hormones
782:JAK-STAT
770:MAPK/ERK
765:TGF beta
625:16418242
405:See also
381:, cold,
357:Examples
319:Function
300:(CGRP),
193:oxytocin
179:and the
136:and the
130:hormones
963:General
787:Akt/PKB
660:6270516
590:7701446
365:in the
349:Example
325:hypoxia
284:to the
160:of the
83:scholar
816:Agents
695:(MeSH)
658:
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588:
581:473889
578:
560:Thorax
519:
379:stress
85:
78:
71:
64:
56:
978:TFIIH
973:TFIID
797:Hippo
777:Notch
536:and T
383:sleep
367:brain
286:lumen
275:fetal
248:PNECs
170:nerve
90:JSTOR
76:books
748:GPCR
656:PMID
621:PMID
586:PMID
517:ISBN
393:and
256:lung
203:APUD
195:and
62:news
760:RTK
755:Wnt
648:doi
613:doi
576:PMC
568:doi
45:by
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