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81.
Karen B. Larsen Melissa Lutterodt Martin F. Rath Morten Møller 《International journal of developmental neuroscience》2009
We studied the spatial and temporal expression of the homeobox genes PAX6, OTX2, and OTX1 using a developmental series of human fetal eyes aged from 6 to 10 weeks post-conception. Previous animal studies have shown that PAX6 may regulate progenitor cell proliferation, timing of differentiation and neural retina cell fate determination. OTX2 may play a role in development of the retinal pigment epithelium and photoreceptor differentiation, whereas OTX1 may be important in ciliary body development. 相似文献
82.
Rex M. Philpot Lynn Wecker Cheryl L. Kirstein 《International journal of developmental neuroscience》2009
Individuals who begin using alcohol prior to 14 years of age are 4 times more likely to progress to addiction than those who do not initiate use until 21 years of age. The nucleus accumbens septi undergoes dramatic developmental transitions during the adolescent period, and dopaminergic activity within this region has been identified as a central neurochemical mediator of drug reward, addiction and dependence. Thus, alcohol-induced neurochemical alterations in dopaminergic activity within this brain region likely mediate the heightened vulnerability to addiction observed in adolescent alcohol users. To investigate this idea, Sprague–Dawley rats were exposed to intraperitoneal injections of either saline or ethanol (0.5, 1.0 or 2.0 g/kg) twice daily over four days beginning on postnatal day 21, 31, 41 or 56. Cannulas were implanted toward the nucleus accumbens septi, subsequent in vivo microdialysis was used to collect samples, and both basal and ethanol-stimulated dopamine overflow was measured using high performance liquid chromatography with electrochemical detection. A developmental transition in basal levels of dopamine in the nucleus accumbens septi was apparent with peak levels at postnatal day 45. An ethanol challenge produced unique responses across ages, with greater peak effects relative to baseline in younger animals (postnatal day 25 and 35). Following repeated exposure to ethanol, a significant increase in basal dopamine was apparent for all ages, and when these animals were challenged with ethanol, peak effects relative to baseline were decreased in younger animals, but unchanged in older animals (postnatal day 45 and 60). Results indicate that there is a key developmental transition in the ability of rats to adapt to the effects of repeated ethanol exposure, which occurs between postnatal day 35 and 45. This alteration may explain the increased addiction vulnerability observed in individuals who initiate alcohol use during early adolescence. 相似文献
83.
为解决学校空间资源有限与社会对护理人才需求的矛盾,我校护理学院于2002年启动实施了护理专科走读教育项目。本文从发展和项目执行的角度出发,对招生、教育培养的整个过程和成效进行了回顾,为高层次护理人才培养提供借鉴。 相似文献
84.
Chunfang Zhang Fuchun LiuXianbao Liu Dunjin Chen 《International journal of developmental neuroscience》2010
Globally, brominated diphenyl ether-209 (BDE-209) is the most widely used polybrominated diphenyl ether (PBDEs). It has been reported that BDE-209 induces developmental neurotoxicity in vivo. The purpose of this study was to use an antioxidant, N-acetylcysteine (NAC), as an antidote for the neurotoxic effect of BDE-209. We used primary hippocampal neurons from rats for the in vitro cultures. BDE-209 was added to the cultures in increasing concentrations and co-cultured with NAC in order to assess the effect of NAC on BDE-209-induced neurotoxicity. We measured cell viability, apoptosis, expression of phosphorylated p38 mitogen-activated protein kinases (MAPK), intracellular calcium content, and intracellular reactive oxygen species (ROS) levels. The difference between the BDE-209 groups without NAC and the blank control groups was significant (P < 0.05). The difference between the NAC treatment groups and the BDE-209 groups without NAC was also significant (P < 0.05), showing that BDE-209 increased apoptosis, the expression of p38 MAPK, the calcium ion concentration, and the ROS level and decreased cell viability. In contrast, NAC reduced the degree of cellular cytotoxicity induced by BDE-209. The results suggested that NAC may be able to attenuate BDE-209-induced neurotoxicity. 相似文献
85.
Brandon Davis Jun Tang Li Zhang Dezhi Mu Xiangning Jiang Valerie Biran Zinaida Vexler Donna M. Ferriero 《International journal of developmental neuroscience》2010
The blood–brain barrier (BBB) plays an important role in the pathophysiology of central nervous system (CNS) disorders such as stroke and hypoxic–ischemic brain injury. Vascular endothelial growth factor (VEGF) is involved in angiogenesis and vasogenic edema during stroke and hypoxia. However, the role of VEGF in BBB permeability after hypoxia has not been fully elucidated. We therefore investigated VEGF effects in an in vitro BBB model using rbcec4 endothelial cell line with the stimulation of VEGF or hypoxia. In this study, BBB permeability was studied using 14C-sucrose detection. The expression of BBB tight junction protein ZO-1, and the expression and phosphorylation of vasodilator stimulated phosphoprotein (VASP), VEGF and VEGF receptor 2 (VEGFR2) were determined using fluorescent immunocytochemistry and western blot analyses. We found that hypoxia upregulated VEGF expression, and VEGF increased BBB permeability. Hypoxia also increased VASP phosphorylation, which was mediated, in part, through VEGFR2. We also found that VASP at tight junctions was co-localized with ZO-1 in cell–cell contacts. Our findings show that VASP phosphorylation is affected by hypoxia and VEGFR2 inhibition suggesting a role for VASP in BBB permeability. 相似文献
86.
When rodents are reared in isolation from young age onwards, they manifest a number of behavioural alterations in adulthood. Since some of these alterations resemble symptoms of psychiatric disorders, the post-weaning social isolation (ISO) manipulation is often applied to create rodent models of these disorders. In rats, ISO effects have been thoroughly characterised, but in mice they are less well documented. Therefore, we further evaluated behaviour of adult ISO mice with a test battery that focussed on abnormalities relevant to schizophrenia. We found that ISO mice were hyperactive during the dark phase. Also, ISO mice showed alterations in magnitude, habituation and prepulse-inhibition of the acoustic startle reflex, increased anxiety, increased social preference and changes in extinction of fear responses. We did not observe increased sensitivity to locomotor-activating effects of amphetamine. It is concluded that ISO of mice might serve as a useful model to test further hypotheses regarding pathogenesis occurring at specific developmental timeframes. 相似文献
87.
BackgroundThe effects and mechanisms of preweaning Manganese (Mn) exposure on cognitive dysfunction remain unclear.ObjectiveThis study evaluated the effects of preweaning Mn exposure on spatial learning and memory as well as the protein expression of CaMKIIα and p-CaMKIIα.MethodsWe treated neonate rats with Mn2+ doses of 0 (control group), 10, 20 and 30 mg of Mn2+ per kg body weight (Mn-exposed groups) over postnatal day (PND) 1–21 by intraperitoneal injection. The ability of spatial learning and memory was tested on PND 22 using the Morris water maze (MWM), while the protein expressions of CaMKIIα and p-CaMKIIα in the hippocampus were evaluated by Western blotting. The levels of Mn in the blood and hippocampus were measured by inductively coupled plasma-mass spectrometry (ICP-MS).ResultsThe rats in Mn-exposed groups showed a significant delay in spatial learning ability on the third day of the MWM without dose-dependent differences, but there was no effect on the spatial memory ability. p-CaMKIIα, but not CaMKIIα protein expression significantly reduced in the Mn-exposed group.ConclusionThese findings suggested that the inhibition of p-CaMKIIα could be one of the mechanisms involved in the occurrence of Mn-induced cognitive impairments. 相似文献
88.
Jarrah R. Spencer Keturah M.E. Darbyshire Aurelie A. Boucher Jonathon C. Arnold 《Progress in neuro-psychopharmacology & biological psychiatry》2012
Methamphetamine use triggers psychosis in genetically vulnerable individuals, however the exact nature of this genetic predisposition requires elucidation. In addition, adolescence may be a particular period of neurodevelopmental vulnerability to the actions of methamphetamine; interestingly, this period coincides with a higher likelihood of onset of schizophrenia and drug experimentation. In the current study we investigated whether adolescent mice heterozygous for the schizophrenia susceptibility gene neuregulin 1 (Nrg1 HET mice) exhibit altered behavioural responses to methamphetamine (0.6 or 2.4 mg/kg) in schizophrenia-relevant paradigms. The responses measured were locomotor activity in the open field test and sensorimotor gating function in the prepulse inhibition of startle paradigm (PPI). Adolescent Nrg1 HET mice displayed a subtle, transient, novelty-induced baseline locomotor hyperactivity over days, and a selective PPI deficit at the prepulse intensity-interstimulus interval (ISI) combination of 82 dB–64 ms. Adolescent Nrg1 HET mice were more sensitive to the locomotor stimulatory effects of an acute, low-dose of methamphetamine (0.6 mg/kg) relative to wild-type (WT) controls. The augmented response to acute methamphetamine observed in Nrg1 HET mice disappeared with repeated, daily dosing over 7 days. Methamphetamine did not affect average PPI (total or across different prepulse intensities), however 0.6 mg/kg methamphetamine triggered a PPI deficit selectively in Nrg1 HET mice but not WT mice at 82 dB–256 ms. Our results show that locomotor hyperactivity in Nrg1 HET mice, albeit subtle, can manifest much earlier than previously reported and that Nrg1 may confer vulnerability to the acute actions of methamphetamine, a drug known to trigger psychotic reactions in humans. 相似文献
89.
Cheryl M. McCormick Iva Z. Mathews 《Progress in neuro-psychopharmacology & biological psychiatry》2010
Chronic exposure to stress is known to affect learning and memory in adults through the release of glucocorticoid hormones by the hypothalamic-pituitary-adrenal (HPA) axis. In adults, glucocorticoids alter synaptic structure and function in brain regions that express high levels of glucocorticoid receptors and that mediate goal-directed behaviour and learning and memory. In contrast to relatively transient effects of stress on cognitive function in adulthood, exposure to high levels of glucocorticoids in early life can produce enduring changes through substantial remodeling of the developing nervous system. Adolescence is another time of significant brain development and maturation of the HPA axis, thereby providing another opportunity for glucocorticoids to exert programming effects on neurocircuitry involved in learning and memory. These topics are reviewed, as is the emerging research evidence in rodent models highlighting that adolescence may be a period of increased vulnerability compared to adulthood in which exposure to high levels of glucocorticoids results in enduring changes in adult cognitive function. 相似文献
90.
Jeffrey J. Vanderploeg Robert P. Franks Robert Plant Marilyn Cloud Jacob Kraemer Tebes 《Child & youth care forum》2009,38(1):5-18
Extended day treatment (EDT) is an innovative intermediate-level service for children and adolescents with serious emotional and behavioral disorders delivered during the after school hours. This paper describes the core components of the EDT model of care within the context of statewide systems of care, including its core service components, levels of care, focus on evidence-based practices, workforce composition and staff training, and data collection and reporting mechanisms. Recommendations are provided for statewide implementation, followed by discussion of model development as an approach to systems reform for treating children and youth with emotional and behavioral disorders. 相似文献