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dc.contributor.authorDuque Díaz, Ewing
dc.contributor.authorMartínez Rangel, Diana
dc.contributor.authorRuiz Roa, Silvia Liliana
dc.date.accessioned2021-11-09T22:26:27Z
dc.date.available2021-11-09T22:26:27Z
dc.date.issued2018-08-26
dc.identifier.urihttp://repositorio.ufps.edu.co/handle/ufps/820
dc.description.abstractThe physiological importance of the brainstem has made it one of the most studied structures of the central nervous system of mammals (in- cluding human). This structure receives somatic and visceral inputs and its neurons send motor efferences by means of the cranial nerves, which innervate the head, neck and sensory organs, and it mediates in several actions such as movement, pain, cardiovascular, respiratory, salivary, sleep, vigil and sexual mechanisms. Most of these actions are mediated by neuroactive substances denominated neuropeptides, which are short amino acid chains widespread dis- tributed in the nervous system, that play a role in neurotransmission, neuro- modulation (paracrine and autocrine actions), and act as neurohormones. In- creased study of these substances has taken place since the 1980s to shed light on both their potential role and the way that they mediate in the organism’s different activities. Thus, our aim is a detailed review of available morphologic and physiologic data regarding some neuropeptides in the human brainstem. To such end, we will discuss aspects like: 1) the distribution of neuropeptides in the human brainstem; 2) their possible physiological actions in the human brainstem; 3) neuropeptide coexistences in the human brainstem; and 4) fu- ture research in neuropeptides in the human brainstem.eng
dc.format.extent18 Páginasspa
dc.format.mimetypeapplication/pdfspa
dc.language.isoengspa
dc.publisherInvestigacion Clinicaspa
dc.relation.ispartofInvestigacion Clinica ISSN: 0535-5133, 2018 vol:59 fasc: N/A págs: 161 - 178, DOI:10.22209/IC.v59n2a06
dc.rightsEsta obra está bajo la licencia: Creative Commons Reconocimiento-NoComercial-CompartirIgual 4.0 Internacional (CC BY-NC-SA 4.0)eng
dc.sourcehttps://produccioncientificaluz.org/index.php/investigacion/article/view/29100spa
dc.titleNeuropeptides in the human brainstemeng
dc.typeArtículo de revistaspa
dcterms.referencesCoveñas R, Duque E, Mangas A, Marcos P, Narváez JA . Neuropeptides in the monkey ( Macaca fascicularis ) brainstem. In: Brain Molecules: from Vitamins to Molecules for Axonal Guidance. Mangas, A., Coveñas, R., Geffard, M, eds. Transworld Research Net - work, Trivandrum; 2008; p 131-156spa
dcterms.referencesCarpentier V, Vaudry H, Laquerrière A, Tayot J, Leroux P . Distribution of somato - statin receptors in the adult human brain - stem. Brain Res 1996; 734: 135-148spa
dcterms.referencesCarpentier V, Vaudry H, Mallet E, Laquer - rière A, Tayot J, Leroux P . Anatomical dis - tribution of somatostatin receptor in the brainstem of the human fetus. Neurosci - ence 1996; 73: 865-879.spa
dcterms.referencesCoveñas R, Martín F, Belda M, Smith V, Sali - nas P, Rivada E . Mapping of neurokinin-like immunoreactivity in the human brainstem. BMC Neurosc 2003; 4:(3) 1-13.spa
dcterms.referencesCoveñas R, Martin F, Salinas P, Rivada E, Smith V, Aguilar LA . An immunocytochemi - cal mapping of methionine-enkephalin-arg - 6 gly 7 -leu 8 in the human brainstem. Neuro - science 2004; 128(4): 843-859.spa
dcterms.referencesDuque E, Mangas A, Salinas P, Díaz-Cabiale Z, Narváez JA, Coveñas R . Mapping of alpha- neo-endorphin-and neurokinin B-immuno - reactivity in the human brainstem. Brain Struct Funct2013; 218(1): 131-149.spa
dcterms.referencesDuque E, Mangas A, Díaz-Cabiale Z, Narváez JA, Coveñas R . Neuropeptides in the monkey brainstem. In: Monkeys: Bi - ology, behavior and disorders, Rachel M. Williams, editors. Nova Science Publisher 2011; p 151-166.spa
dcterms.referencesDuque-Díaz E, Díaz-Cabiale Z, Narvaéz JA, Coveñas R. Mapping of enkephalins and adrenocorticotropic hormone in the squir - rel monkey brainstem. Anat Sci Int2017; 92: 275-292.spa
dcterms.referencesBouras C, Taban CH, Constantinidis J. Map - ping of enkephalins in human brain: an immunohistofluorescence study on brains from patients with senile and presenile dementia. Neuroscience 1984; 12(1): 179- 190.spa
dcterms.referencesBelda M, Coveñas R, Narváez JA, Aguirre JA, Tramu G. An immunocytochemical map - ping of methionine-enkephalin-Arg6-Gly 7 - Leu 8 in the cat brainstem. Anat Embryol. 2003; 206(5): 399-408.spa
dcterms.referencesRinne JO, Lönnberg P, Marjamäki P, Mölsä P, Säkö E, Paljärvi L . Brain methionine-and leucine-enkephalin receptors in patients with dementia. Neurosci Lett 1993; 161(1): 77-80.spa
dcterms.referencesRinne JO . Human brain methionine-and leucine-enkephalins and their receptors during ageing. Brain Res 1993; 624(1): 131-136spa
dcterms.referencesDel Fiacco M, Dessi ML, Atzori MG, Levanti MC . Substance P in the human brainstem. Preliminary results of its immunohisto - chemical localization. Brain Res 1983; 264(1): 142-147.spa
dcterms.referencesDel Fiacco M, Dessi ML, Levanti LC . Topo - graphical localization of substance P in the human pot-morten brainstem. An inmuno - histochemical study in the newborn and adult tissue. Neuroscience 1984; 12: 591- 611.spa
dcterms.referencesDawbarn D, Hunt SP, Emson PC . Neuro - peptide Y: regional distribution chromato - graphic charatacterization and immuno - histochemicaldemostration in post-morten human brain. Brain Res 1984; 296: 168- 173.spa
dcterms.referencesWiddwson PS . Quantitative receptor auto - radiography demostrates a differential dis - tribution of neuropeptide-Y Y 1 and Y 2 recep - tor subtypes in the human and rat brain. Brain Res 1993; 631: 27-38.spa
dcterms.referencesJacques D, Dumont Y, Fornier A, Quirion R. Characterization of neuropeptide Y receptor subtipe in the normal human brain, including the hypothalamus. Neuroscience 1997; 79 (1): 129-148.spa
dcterms.referencesCoveñas R, Gonzalez-Fuentes J, Rivas- Infante E, Lagartes-Donato MJ, Mangas A, Geffard M, Arroyo-Jimenez MM, Cebada- Sanchez S, Insausti R, Marcos P. Devel - opmental study vitamin C distribution in children’s brainstem by immnunohisto - chemistry. Ann Anat 2015; 201: 65-78.spa
dcterms.referencesMangas A, Coveñas R, Geffard K, Geffard M, Marcos P, Insauti R, Dabadie MP . Folic acid in the monkey brain: An immunocy - tochemical study. Neurosc Lett 2004; 362: 258-261.spa
dcterms.referencesMangas A, Coveñas R, Geffard K, Geffard M, Marcos P, Insauti R, Dabadie MP . Thia - mine-like in the monkey brain: An immuno - cytochemical study. Life Sciences 2006; 79: 1121-1128.spa
dcterms.referencesMangas A, Coveñas R, Bodet D, Geffard M, Aguilar LA, Yajeya J . Immunocytochemi - cal visualization of D-Glutamate in the rat brain. Neuroscience 2007; 144: 654-666.spa
dcterms.referencesMangas A, Coveñas R, Bodet D, Deleu S, Marcos P, Geffard M . Vitamins in the mon - key brain: an immunocytochemical study. J Chem Neuroanat 2009; 38: 1-8.spa
dcterms.referencesMangas A, Yajeya J, Gonzalez N, Husson M, Geffard M, Coveñas R. Detection of panto - thenic acid-immunoreactive neurons in the rat lateral septal nucleus by a newly devel - oped antibody . Folia Histochem Cytobiol 2016; 54: 186-192.spa
dcterms.referencesStriedter GF . Neurobiology: A functional approach. New York (NY): Oxford University Press. 2016; p 58-61.spa
dcterms.referencesCoveñas R, Mangas A, Narváez JA . Intro - duction to neuropeptide. En: Focus on neu - ropeptide research, Coveñas R, Mangas A, Narváez J, eds. Transworld Research Net - work Trivandrum; 2007; p 1-26.spa
dcterms.referencesPammer CS, Fodor M, Palkovits M. Locali - zation of corticotropin-releasing factor, so - matostatin, and vasoactive intestinal poly - peptide in the parabrachial nuclei of the human Brain. J Neurosc Res 1988; 20:109- 114.spa
dcterms.referencesChigr F, Najimi M, Leduque P, Charnay Y, Jordan D, Chayvialle JA. Anatomical distri - bution of somatostatin immunoreactivity in he infant brainstem. Neuroscience 1989; 29(3): 615-628.spa
dcterms.referencesHaines DE . Neuroanatomy. An Atlas of Structure, Section, and Systems. Urban and Schwarzenberg, Baltimore-Munich 1987.spa
dcterms.referencesShepperd G . Neurobiology, Oxford Univer - sity press, 3 th ed. New York, USA. 1989spa
dcterms.referencesKandel ER, Schwartz JH, Jessell TM . Princi - ples of neural science. New York: McGraw- Hill. 2001; 4: p 1227-1246spa
dcterms.referencesRaffa RB . The action of FMRFamide (Phe- Met-Arg-Phe-NH2) and related peptides on mammals. Peptides 1988; 9: 915-922.spa
dcterms.referencesSchwarzer C. 30 years of dynorphins new insights on their functions in neuropsychi - atric diseases. Pharmacol Ther 2009; 123: 353-370.spa
dcterms.referencesManso B, Sanche ML, Medina LE, Aguilar LA, Díaz-Cabiale Z, Narváez JA, Coveñas R. Immunohistochemical mapping of pro-opi - omelanocortin- and pro-dynorphin-derived peptides in the alpaca ( Lama pacos ) dien - cephalon. J Chem Neuroanat 2014; 59-60: 36-50.spa
dcterms.referencesKowarika, M, Einhäusera J, Jochima B, Büttnerb A, Töllea TR, Riemenschneiderc M, Platzera S, Berthelea A. Impact of the COMT Val1 08/158 Met polymorphism on the mu-opioid receptor system in the human brain: mu-opioid receptor, met-enkephalin and beta-endorphin expression. Neurosc Lett 2012; 506: 214-219.spa
dcterms.referencesHollander N . β -endorphin in the brainstem, pituitary, and spinal fluid of infants at au - topsy: relation to sudden infant death syn - drome. Forens Scien Inter 1988; 38: 67-74.spa
dcterms.referencesPasi A, Mehraein A, Jehle A, Traub M, Morniroli G, Bär W . β -Endorphin: regional level profile in the brain of the human in - fant. Neurochem Int 1992; 20(1): 93-95spa
dcterms.referencesCoquerel, A, Buser M, Tayot J, Pfaff F, Ma - tray F, Proust B . Beta-endorphin and neu - rotensin in brainstem and cerebrospinal fluid in the sudden infant death syndrome. Neurochem Int 1992; 20(1): 97-102.spa
dcterms.referencesFodor M, Görcs TJ, Palkovits M. Immuno - histochemical study on the distribution of neuropeptides within the pontine tegmen - tum—particularly the parabrachial nuclei and the locus coeruleus of the human brain. Neuroscience 1992; 46(4): 891-908.spa
dcterms.referencesMai JK, Estephens TH, Hopf A, Cuello AC . Substance P in the human brain. Neurosci - ence 1986; 3: 109-139.spa
dcterms.referencesMarcos P, Coveñas R, De León M, Narváez JA, Tramú G, Aguirre JA . Neurokinin A-like immunoreactivity in the cat brainstem. Neuropeptides 1993; 25: 105-114.spa
dcterms.referencesMuñoz M, Coveñas R. Involvement of sub - stance P and the NK-1 receptor in human pathology. Amino Acids 2014; 46(7): 1727- 1750spa
dcterms.referencesBergström L, Lagercrantz H, Terenius, L . Post-mortem analyses of neuropeptides in brains from sudden infant death victims. Brain Res 1984; 323(2): 279-285.spa
dcterms.referencesKleiman JE, Hong J, Laradola M, Govoni E, Guilin CJ . Neuropeptides in the human brain-postmorten studies. Prog Neuro- psych Biol Psysich 1985; 9: 91-95.spa
dcterms.referencesEnman NM, Sabban EL, Mcgonigle P, Van Bockstaele EJ. Targeting the neuropeptide Y system in stress-related psychiatric disor - der. Neurobiol Stress 2015; 1: 33-43.spa
dcterms.referencesBrené S, Lindefors N, Kopp J, Sedvall G, Persson H. Regional distribution of neu - ropeptide Y mRNA in postmortem human brain. Molec Brain Res 1989; 6(4): 241-249spa
dcterms.referencesWalter A, Mai JK, Jiménez-Härtel W. Map - ping of neuropeptide Y-like immunoreactiv - ity in the human forebrain. Brain Res Bull 1990; 24(3): 297-311.spa
dcterms.referencesYu MC, Luo CB, Lomg L, Yew DT . An immu - nohistochemical study of neuropeptide Y positive site in the developing human hip - pocampal formation. Develop Brain Res 1993; 72: 277-281.spa
dcterms.referencesKo L, Rotoli G, Grignol G, Hu W, Merchan - thaler I, Dudas B . A putative morphological substrate of the catecholamine-influenced neuropeptide Y (NPY) release in the human hypothalamus . Neuropeptides 2011; 45: 197-203.spa
dcterms.referencesYamazoe M, Shiosaka S, Emson C, Tohy - amaM . Distribution of neuropeptide Y in the lower brainstem: an immunohistochem - ical analysis. Brain Res 1985; 355: 109-120.spa
dcterms.referencesHalliday GM, Li YW, Oliver JR, Joh TH, Cot - ton RGM, Howe PRC, Geffen LB, Blessing WW . The distribution of neuropeptide Y- like inmunoreactive neurons in the human medulla oblongata. Neuroscience 1988; 26 (1): 179-191.spa
dcterms.referencesMarcos P, Arroyo-Jiménez MM, Lozano G, González-Fuentes J, Lagartos-Donate MJ, Aguilar LA, Coveñas R . Mapping of tyrosine hydroxylase in the diencephalon of alpaca ( Lama Pacos ) and co-distribution with so - matostatin-28 (1-12). J Chem Neuroanat 2013; 50-51: 66-74.spa
dcterms.referencesBouras C, Magistretti PJ, Morrison JH, Con - stantinidis J. An immunohistochemical study of pro-somatostatin-derived peptides in the human brain. Neuroscience 1987; 22(3): 781-800.spa
dcterms.referencesAustin MC, Janosky JE, Murphy HA . In - creased conrticotropin-releasing hormone immunoreactivity in monoamine-contain - ing pontine nuclei of depressed suicide men. Molec Psych 2003; 8: 324-332spa
dcterms.referencesHasegawa E, Yanagisawa M, Sakurai T, Mie - da M . Orexin neuron ssuppress narcolepsy via 2 distinct efferent pathways. J Clin In - vest 2014; 124(2):604-616.spa
dcterms.referencesGoncharuk V, Jhamandas JH. Neuropeptide FF2 receptor distribution in the human brain: an immunohistochemical study. Pep - tides 2008; 25: 1544-1553.spa
dcterms.referencesLoup F, Tribollet E, Dubois-Dauphin M, Dreifuss JJ. Localization of high-affinity binding sites for oxytocin and vasopressin in the human brain. An autoradiographic study. Brain Res 1991; 555: 220-232.spa
dcterms.referencesBoccia ML, Petrusz P, Suzuki K, Marson L, Pedersen CA . Inmunohistochemical lo - calitation of oxytocin receptors in human brain. Neuroscience 2013; 253: 155-164.spa
dcterms.referencesBaer K, Waldvogel HJ, During J, Snell RG, Faull RLM, Rees MI . Association of gephy - rin and glycine receptors in the human brainstem and spinal cord: an immunohis - tochemical analysis. Neuroscience 2003; 122: 773-784spa
dcterms.referencesBaer K, Waldvogel HJ, Faull RLM, Rees MI . Localization of glycine receptors in the hu - man forebrain, Brainstem, and cervical spi - nal cord: an immunohistochemical review. Front Molec Neurosc 2009; 2 (25): 1-11.spa
dcterms.referencesMazzone SB, Geraghty DP. Respiratory ac - tions of tachykinins in the nucleus of the solitary tract: characterization of receptors using selective agonists and antagonists. Br J Pharmacol 2000; 129: 1121-1131.spa
dcterms.referencesCaberlotto L, Fuxe K, Overstreet DH, Ger - rard P, Hurd YL . Alterations in neuropep -tide Y and Y1 receptor mRNA expression in brains from an animal model of depression: region specific adaptation after fluoxetine treatment. Molec Brain Res 1998; 59(1): 58-65.spa
dcterms.referencesKuwaki T. Orexin links emotional stress to autonomic function. Autonom Neurosc Ba - sic Clin 2011; 161: 20-27.spa
dcterms.referencesSinto C . Orexin/hypocretin plays a role in the response to physiological disequilibri - um. Sleep Med Rev 2011; 15:197-207.spa
dc.identifier.doihttps//doi.org/1022209/ICv.59n2a06
dc.publisher.placeVenezuelaspa
dc.relation.citationeditionVol. 59 No. 2 (2018)spa
dc.relation.citationendpage178spa
dc.relation.citationissue2 (2018)spa
dc.relation.citationstartpage161spa
dc.relation.citationvolume59spa
dc.relation.citesE. Duque-Díaz, D. Martínez-Rangel, y S. Ruiz-Roa, «Neuropeptides in the human brainstem», Invest Clín, vol. 59, n.º 2, p. 161, ago. 2018.
dc.relation.ispartofjournalInvestigacion Clinicaspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.rights.creativecommonsAtribución-NoComercial-CompartirIgual 4.0 Internacional (CC BY-NC-SA 4.0)spa
dc.subject.proposalNeuropeptideseng
dc.subject.proposalmesencephaloneng
dc.subject.proposalPonseng
dc.subject.proposalMedulla oblongataeng
dc.subject.proposalHumaneng
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