Decreased serotonin level during pregnancy alters morphological and functional characteristics of tonic nociceptive system in juvenile offspring of the rat

被引:19
作者
Irina P Butkevich
Ludmila I Khozhai
Victor A Mikhailenko
Vladimir A Otellin
机构
[1] Laboratory of Ontogeny of Nervous System,
[2] I.P. Pavlov Institute of Physiology,undefined
[3] Russian Academy of Sciences,undefined
[4] St. Petersburg,undefined
关键词
Dorsal Horn; Raphe Nucleus; Formalin Test; Prenatal Development; Tonic Pain;
D O I
10.1186/1477-7827-1-96
中图分类号
学科分类号
摘要
Serotonin (5-HT) contributes to the prenatal development of the central nervous system, acting as a morphogen in the young embryo and later as a neurotransmitter. This biologically active agent influences both morphological and biochemical differentiation of raphe neurons, which give rise to the descending serotonergic paths that regulate the processing of acutely evoked nociceptive inputs. The involvement of 5-HT in the prenatal development of tonic nociceptive system has not been studied. In the present study we evaluated the effects of a single injection (400 mg/kg, 2 ml, i.p.) of the 5-HT synthesis inhibitor, para-chlorophenylalanine (pCPA), given to pregnant rats during the critical period fetal serotonin development. The functional integrity of the tonic nociceptive response was investigated in 25 day old rats using the classic formalin test. Morphological analysis of brain structures involved in formalin-induced pain and 5-HT levels in the heads of 12-day embryos were also evaluated. Embryonic levels of 5-HT were significantly lowered by the treatment. The juvenile rats from pCPA-treated females showed altered brain morphology and cell differentiation in the developing cortex, hippocampus, raphe nuclei, and substantia nigra. In the formalin test, there were significant decreases in the intensity and duration of the second phase of the formalin-induced response, characterizing persistent, tonic pain. The extent of impairments in the brain structures correlated positively with the level of decrease in the behavioral responses. The data demonstrate the involvement of 5-HT in the prenatal development of the tonic nociceptive system. The decreased tonic component of the behavioral response can be explained by lower activity of the descending excitatory serotonergic system originating in the raphe nuclei, resulting in decreased tonic pain processing organized at the level of the dorsal horn of the spinal cord.
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[21]  
Coderre TJ(1998)Regional changes in forebrain activation during the early and late phase of formalin nociception: analysis using cerebral blood flow in the rat Pain 75 355-365
[22]  
Lauder JM(1978)An autoradiographic analysis of the differential ascending projections of the dorsal and median raphe nuclei in the rat J Comp Neurol 179 641-659
[23]  
Towle AC(1977)Timing of sperm penetration, pronuclear formation, pronuclear DNA synthesis and first cleavage in naturallyy ovulated mouse eggs J Exper Zoology 202 245-267
[24]  
Patrick K(2000)An excitatory role for 5-HT in spinal inflammatory nociceptive transmission; state-dependent actions via dorsal horn 5-HT3 receptors in the anaesthetized rat Pain 89 81-88
[25]  
Henderson P(1992)5-HT3 receptor-active drugs alter development of spinal serotonergic innervation: lack of effect of other serotonergic agents Brain Res 571 293-297
[26]  
Krebs H(1987)Identification and distribution of 5-HT3 receptors in the brain using radioligand binding Nature 330 746-748
[27]  
Miller GP(1996)Dual effect of serotonin on formalin-induced nociception in the rat spinal cord Neurosci Res 25 129-135
[28]  
Cox RH(undefined)undefined undefined undefined undefined-undefined
[29]  
Snodgrass JWR(undefined)undefined undefined undefined undefined-undefined
[30]  
Maickel RP(undefined)undefined undefined undefined undefined-undefined