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1.
《Molecular therapy》2022,30(2):519-533
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2.
神经营养因子假说与抑郁症发病机制的研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
目前关于抑郁症发病机制的神经营养因子假说研究尚不明确,当前研究多聚焦于脑源性神经营养因子(BDNF)及其前体(proBDNF)和成熟体(mBDNF)在抑郁症中的作用。多个研究显示抑郁症患者proBDNF蛋白水平升高,而mBDNF蛋白水平降低。随着对神经营养因子假说研究的深入,有研究发现组织型纤溶酶原激活剂(tPA)可通过促使proBDNF向mBDNF转化而缓解抑郁症状,纤溶酶原激活物抑制剂-1(PAI-1)可抑制tPA的表达,PAI-1在抑郁症患者中的表达增加。本文对BDNF、proBDNF、mBDNF、tPA及PAI-1与抑郁症之间的关系进行综述,以期为抑郁症的发生机制及诊疗提供参考。  相似文献   
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目的:观察大补元煎对APP/PS1痴呆小鼠海马突触可塑性及脑源性神经营养因子(BDNF)/酪氨酸蛋白激酶受体B(TrkB)/环磷酸腺苷反应元件结合蛋白(CREB)信号通路的作用,并探讨其改善突触可塑性的可能机制。方法:将APP/PS1小鼠36只分为模型组、多奈哌齐组(6.5×10~(-4)g·kg~(-1)·d~(-1))和大补元煎组(13.2 g·kg~(-1)·d~(-1)),野生鼠12只设为正常组,正常组和模型组给予等体积生理盐水,各组连续灌胃30 d。应用Morris水迷宫检测各组小鼠的学习记忆能力,应用尼氏染色和高尔基染色观察海马区神经元和突触的病理形态变化,应用免疫荧光(IF)观察海马突触后致密蛋白95(PSD95)及突触素(SYN)的蛋白表达水平,采用蛋白免疫印迹法(Western blot)检测海马中BDNF,TrkB,CREB及磷酸化CREB(p-CREB)的蛋白表达水平。结果:与空白组比较,模型组小鼠平台潜伏期和游泳总路程增加(P0.01),穿越平台次数和目标象限停留时间减少(P0.01),小鼠海马CA3区神经元胞内尼氏体减少或消失,小鼠海马CA3区神经元及树突分支数量、树突棘密度减少(P0.01),小鼠海马SYN,PSD95,BDNF,TrkB及p-CREB的蛋白表达水平减少(P0.01)。与模型组比较,多奈哌齐组和大补元煎组小鼠平台潜伏期和游泳总路程减少(P0.05,P0.01),穿越平台次数和目标象限停留时间增加(P0.05,P0.01),小鼠海马CA3区神经元胞内尼氏体数量增多,小鼠海马CA3区神经元及树突分支数量,树突棘密度增加(P0.05,P0.01),小鼠海马SYN,PSD95,BDNF,TrkB及p-CREB的蛋白表达水平增加(P0.05,P0.01)。结论:大补元煎改善APP/PS1双转基因小鼠突触可塑性的机制可能与其上调小鼠海马中BDNF/TrkB/CREB信号通路有关。  相似文献   
5.
Epigenetic alterations of the brain‐derived neurotrophic factor (BDNF) gene have been associated with psychiatric disorders in humans and with differences in amygdala BDNF mRNA levels in rodents. This human study aimed to investigate the relationship between the functional BDNF‐Val66Met polymorphism, its surrounding DNA methylation in BDNF exon IX, amygdala reactivity to emotional faces, and personality traits. Healthy controls (HC, n = 189) underwent functional MRI during an emotional face‐matching task. Harm avoidance, novelty seeking and reward dependence were measured using the Tridimensional Personality Questionnaire (TPQ). Individual BDNF methylation profiles were ascertained and associated with several BDNF single nucleotide polymorphisms surrounding the BDNF‐Val66Met, amygdala reactivity, novelty seeking and harm avoidance. Higher BDNF methylation was associated with higher amygdala reactivity (x = 34, y = 0, z = ?26, t(166) = 3.00, TFCE = 42.39, p(FWE) = .045), whereby the BDNF‐Val66Met genotype per se did not show any significant association with brain function. Furthermore, novelty seeking was negatively associated with BDNF methylation (r = ?.19, p = .015) and amygdala reactivity (r = ?.17, p = .028), while harm avoidance showed a trend for a positive association with BDNF methylation (r = .14, p = .066). The study provides first insights into the relationship among BDNF methylation, BDNF genotype, amygdala reactivity and personality traits in humans, highlighting the multidimensional relations among genetics, epigenetics, and neuronal functions. The present study suggests a possible involvement of epigenetic BDNF modifications in psychiatric disorders and related brain functions, whereby high BDNF methylation might reduce BDNF mRNA expression and upregulate amygdala reactivity.  相似文献   
6.
目的 探讨观察母孕鼠围产期全氟辛烷磺酸盐(perfluorooctane sulphonate,PFOS)暴露对幼鼠海马组织BDNF/TrkB/CREB信号通路关键基因表达的影响。 方法 20只昆明种雌性小鼠随机分为对照组和低、中、高剂量组,从孕鼠怀孕第2 d开始(gestation day2, GD2)到幼鼠出生后21 d(postnatal day21,PND21)分别给予低、中、高剂量组孕鼠PFOS剂量为 0.1、1.0、5.0 mg/(kg·bw)灌胃染毒,对照组给予等体积的0.05% Tween-20水溶液。灌胃量为0.1 ml/10 (g·bw)。PND 21 d处死幼鼠,收集脑组织,分离海马及皮层。HE染色观察脑组织常规病理改变,实时荧光定量PCR(Quantitative Real-time PCR,QPCR)检测海马组织中BDNF、TrkB、CREB、Syn1及Syp的mRNA表达水平。 结果 与对照组相比较,低、中、高三个剂量组对幼鼠的死亡率和体质量的影响差异无统计学意义(P>0.05)。但是在高剂量组幼鼠海马组织出现空泡,海马BDNF、TrkB、CREB mRNA水平显著降低,分别由对照组的(0.98±0.11)、(1.03±0.09)、(1.08±0.12)下降到(0.22±0.21)、(0.71±0.14)、(0.37±0.26),并在中、高剂量组引起了幼鼠突触相关蛋白Syn1和Spy的mRNA水平显著降低,分别由对照组的(1.10±0.09)、(0.97±0.08)下降到中剂量的(0.41±0.23)、(0.71±0.17)和高剂量的(0.39±0.19)、(0.63±0.19),差异均有统计学意义(P<0.05)。 结论 PFOS损伤海马BDNF/TrkB/CREB信号通路可能是PFOS神经发育毒性之一。  相似文献   
7.
The Met allele of the human brain-derived neurotrophic factor (BDNF) gene might be a risk factor for anxiety disorders and is associated with reduced hippocampal volume. Notably, hippocampus plays a crucial role in contextual learning and generalization. The role of the BDNF gene variation in human context-conditioning and generalization is still unknown. We investigated 33 carriers of the Met allele (18 females) and 32 homozygous carriers of the Val allele (15 females) with a virtual-reality context-conditioning paradigm. Electric stimulations (unconditioned stimulus, US) were unpredictably delivered in one virtual office (CTX+), but never in another virtual office (CTX-). During generalization, participants revisited CTX+ and CTX- and a generalization office (G-CTX), which was a mix of the other two. Rating data indicated successful conditioning (more negative valence, higher arousal, anxiety and contingency ratings for CTX+ than CTX-), and generalization of conditioned anxiety by comparable ratings for G-CTX and CTX+. The startle data indicated discriminative learning for Met allele carriers, but not for Val homozygotes. Moreover, a trend effect suggests that startle responses of only the Met carriers were slightly potentiated in G-CTX versus CTX-. In sum, the BDNF polymorphism did not affect contextual learning and its generalization on a verbal level. However, the physiological data suggest that Met carriers are characterized by fast discriminative contextual learning and a tendency to generalize anxiety responses to ambiguous contexts. We propose that such learning may be related to reduced hippocampal functionality and the basis for the risk of Met carriers to develop anxiety disorders.  相似文献   
8.
《Brain stimulation》2019,12(4):1041-1050
IntroductionThe induction of brain-derived neurotrophic factor (BDNF) release and subsequent restoration of neuroplastic homeostasis may underlie the effects of electroconvulsive therapy (ECT).ObjectivesWe aimed to assess serum and plasma BDNF levels during the course of acute ECT, as well as before and after subsequent continuation ECT, in patients with depression.MethodsWe included 24 patients with major depressive disorder (mean age ± SD: 54.5 ± 13.7; f/m: 17/7; baseline 17-item Hamilton Depression Rating Scale score of 26.79 ± 4.01). Serum and plasma BDNF (sBDNF, pBDNF) levels were assessed at nine time-points before, during, and after acute ECT series. Data were analysed using linear regression and linear mixed models, which were adjusted for multiple comparisons via Bonferroni correction. Five patients received continuation ECT subsequent to the acute ECT series. In these patients, BDNF levels were assessed before and after each two continuation ECT sessions using Wilcoxon signed-rank tests.ResultsRelative to baseline (mean ng/ml ±SD: 24.68 ± 14.40), sBDNF levels were significantly higher 1 day (33.04 ± 14.11, p = 0.013, corrected), 1 week (37.03 ± 10.29, p < 0.001, corrected), and 1 month (41.05 ± 10.67, p = 0.008, corrected) after the final ECT session, while pBDNF levels did not significantly differ (p > 0.1). Furthermore, our results indicated that sBDNF levels increased after each continuation ECT session. There was no significant association between sBDNF levels and clinical parameters or treatment response.ConclusionThe absence of an association between changes in sBDNF levels and depressive symptoms challenges the proposed concept of sBDNF/pBDNF as key markers of the effects of ECT.  相似文献   
9.
目的:观察逍遥丸对皮质酮诱导小鼠抑郁样行为的干预作用,并探讨其分子机制。方法:将50只ICR雄性小鼠,随机分为5组:正常组、皮质酮模型组、阳性对照氟西汀组(20 mg/kg)、低剂量逍遥丸(200 mg/kg)组、高剂量逍遥丸组(600 mg/kg),通过皮下注射皮质酮诱导小鼠抑郁模型。持续35天后,采用糖水偏好实验和强迫游泳实验评价动物抑郁样行为;采用ELISA方法测小鼠血清中皮质酮含量及小鼠海马组织中脑源性神经营养因子(BDNF)的含量。结果:皮质酮可以降低糖水偏好值、增加小鼠强迫游泳的不动时间,而逍遥丸可以显著提高糖水偏好值、减少小鼠不动时间;长期注射皮质酮可增加血清皮质酮水平,降低海马组织中BDNF含量,而逍遥丸可以降低小鼠血清中皮质酮的含量并且能够提高海马组织中BDNF含量。结论:逍遥丸可以有效降低小鼠血清中皮质酮的含量并增加小鼠海马中BDNF含量,改善神经营养系统,产生抗抑郁样作用。  相似文献   
10.
Peripheral nerves connect brain and spinal cord with the extremities and inner organs, and nerves injury can lead the disability and social exclusion. Growth factors and other natural stimulators of regeneration processes look very promising as future medicines. In our study, we tested the influence of genetic constructions that contain genes of brain-derived neurotrophic factor and urokinase plasminogen activator on nerve's structure and function after traumatic and ischemic injuries. Injection of pVax1-hBDNF and pVax1-muPA after traumatic injury led to better restoration of nerve's structure and function compared to similar parameters of control group mice. In ischemic injury model pVax1-hBDNF and pVax1-muPA slowed and reduced the damage progression and stimulated nerve regeneration as well. However, the treatment with pVax1-muPA was less effective after the traumatic injury. As we chose a non-viral method of gene delivery during our study the optimal conditions of plasmid intramuscular delivery were also determined.  相似文献   
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