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101.
Blood samples are commonly obtained in many experimental contexts to measure targets of interest, including hormones, immune factors, growth factors, proteins, and glucose, yet the composition of the blood is dynamically regulated and easily perturbed. One factor that can change the blood composition is the stress response triggered by the sampling procedure, which can contribute to variability in the measures of interest. Here we describe a procedure for blood sampling from the lateral tail vein in the rat. This procedure offers significant advantages over other more commonly used techniques. It permits rapid sampling with minimal pain or invasiveness, without anesthesia or analgesia. Additionally, it can be used to obtain large volume samples (upwards of 1 ml in some rats), and it may be used repeatedly across experimental days. By minimizing the stress response and pain resulting from blood sampling, measures can more accurately reflect the true basal state of the animal, with minimal influence from the sampling procedure itself. 相似文献
102.
摘要 目的:观察超声引导下髂筋膜神经阻滞联合全麻对老年股骨近端骨折患者术后血清疼痛介质前列腺素E2(PGE2)、P物质(SP)和认知功能及睡眠质量的影响。方法:选取2018年8月~2021年9月期间我院收治的择期行手术治疗的老年股骨近端骨折患者80例,根据随机数字表法分为对照组(40例,常规全麻方案)和观察组(40例,超声引导下髂筋膜神经阻滞联合全麻方案),对比两组麻醉效果、血流动力学、疼痛情况、认知功能和睡眠质量,观察不同模式麻醉下的安全性。结果:观察组的苏醒及拔管时间均短于对照组,丙泊酚使用量少于对照组(P<0.05)。两组置入喉罩时(T1)~术毕时(T3)心率(HR)先升高后下降,平均动脉压(MAP)先下降后升高(P<0.05);观察组T1~T3时点HR低于对照组,MAP高于对照组(P<0.05)。两组术后24 h血清PGE2、SP水平和视觉疼痛模拟量表(VAS)评分均升高,但观察组低于对照组(P<0.05)。两组术后1 d、2 d、3 d 蒙特利尔认知评估量表(MoCA)评分较术前先下降后升高(P<0.05);观察组术后2 d、3 d MoCA评分高于对照组(P<0.05)。两组术后1 d、2 d、3 d匹兹堡睡眠质量评估量表(PSQI)评分较术前先升高后下降(P<0.05);观察组术后1 d、2 d、3 d PSQI评分低于对照组(P<0.05)。两组不良反应发生率对比无差异(P>0.05)。结论:老年股骨近端骨折患者术中选用超声引导下髂筋膜神经阻滞联合全麻,镇痛效果显著,可稳定机体血流动力学,减少对认知功能和睡眠质量的影响,且安全性良好。 相似文献
103.
Hodgkin and Huxley (HH) discovered that voltages control ionic currents in nerve membranes. This led them to describe electrical activity in a neuronal membrane patch in terms of an electronic circuit whose characteristics were determined using empirical data. Due to the complexity of this model, a variety of heuristics, including relaxation oscillator circuits and integrate-and-fire models, have been used to investigate activity in neurons, and these simpler models have been successful in suggesting experiments and explaining observations. Connections between most of the simpler models had not been made clear until recently. Shown here are connections between these heuristics and the full HH model. In particular, we study a new model (Type III circuit): It includes the van der Pol-based models; it can be approximated by a simple integrate-and-fire model; and it creates voltages and currents that correspond, respectively, to the h and V components of the HH system. 相似文献
104.
Bakalova R 《Cellular and molecular neurobiology》2007,27(3):359-365
The direct, highly selective and sensitive real-time imaging of neuro- and biochemical mediators is the only way to clarify
precisely the chemistry of the brain and to discover the key molecular targets involved in regulation of brain homeostasis.
To realize that, we need: high-speed deep-tissue imaging techniques with high spatial and temporal resolution; and ultra-fast
and highly selective molecular sensors, giving a possibility to monitor target molecules directly in their physiological environment;
in addition, these molecular sensors have to be comparatively small and permeable for blood-brain barrier, to be applicable
in brain studies. The present view accents on the perspectives for development of direct approach for investigation of function/flow
coupling phenomenon in the brain, based on the current progress in development of ultra-fast molecular sensors for direct
visualization of biochemical mediators (e.g., nitric oxide, Ca ions), and high-speed two-photon/multi-photon deep-tissue imaging. 相似文献
105.
The purpose of this study was to investigate whether or not the role of docosahexaenoic acid (DHA) supplementation on cognitive capability was related with brain-derived neurotrophic factor (BDNF), nitric oxide (NO) and dopamine (DA) in aged mice. Kunming-line mice were treated with 50 and 100 mg/kg/day of DHA via oral gavage for seven successive weeks. The cognitive ability of mice was assessed by step-through and passageway water maze tests. The levels of NO in hippocampus and striatum tissues were assessed by spectrophotometric method. The levels of DA in hippocampus and striatum tissues were assessed by high-performance liquid chromatography with electrochemical detection. The protein levels of BDNF in hippocampus tissue were assessed by Western blotting. The results showed that the cognitive capability of mice was significantly different between the DHA-treated groups and the control group; the protein level of BDNF was significantly increased in the hippocampus; the levels of NO and DA were significantly increased in hippocampus and striatum tissues. In conclusion, during aging, DHA supplementation can improve the cognitive function in mice and can increase the protein level of BDNF in hippocampus tissue and the levels of NO and DA in hippocampus and striatum tissues. Taken together, our results suggest that DHA supplementation could improve the cognitive dysfunction due to aging, to some extent, and it may have a relationship with increasing the protein level of BDNF and the level of NO and DA. 相似文献
106.
107.
108.
Cho SH Sun B Zhou Y Kauppinen TM Halabisky B Wes P Ransohoff RM Gan L 《The Journal of biological chemistry》2011,286(37):32713-32722
Aberrant microglial activation has been proposed to contribute to the cognitive decline in Alzheimer disease (AD), but the underlying molecular mechanisms remain enigmatic. Fractalkine signaling, a pathway mediating the communication between microglia and neurons, is deficient in AD brains and down-regulated by amyloid-β. Although fractalkine receptor (CX3CR1) on microglia was found to regulate plaque load, no functional effects have been reported. Our study demonstrates that CX3CR1 deficiency worsens the AD-related neuronal and behavioral deficits. The effects were associated with cytokine production but not with plaque deposition. Ablation of CX3CR1 in mice overexpressing human amyloid precursor protein enhanced Tau pathology and exacerbated the depletion of calbindin in the dentate gyrus. The levels of calbindin in the dentate gyrus correlated negatively with those of tumor necrosis factor α and interleukin 6, suggesting neurotoxic effects of inflammatory factors. Functionally, removing CX3CR1 in human amyloid precursor protein mice worsened the memory retention in passive avoidance and novel object recognition tests, and their memory loss in the novel object recognition test is associated with high levels of interleukin 6. Our findings identify CX3CR1 as a key microglial pathway in protecting against AD-related cognitive deficits that are associated with aberrant microglial activation and elevated inflammatory cytokines. 相似文献
109.
《Bioorganic & medicinal chemistry》2014,22(17):4667-4676
Chiral 5-arylbenzothiadiazine derivatives have recently attracted particular attention because they exhibit an interesting pharmacological activity as AMPA receptor (AMPAr) positive modulators. However, investigations on their configurational stability suggest a rapid enantiomerization in physiological conditions. In order to enhance configurational stability, preserving AMPAr activity, we have designed the novel compound (R,S)-7-chloro-9-(furan-3-yl)-2,3,3a,4-tetrahydro-1H-benzo[e]pyrrolo[2,1-c][1,2,4]thiadiazine 5,5-dioxide bearing a pyrrolo moiety coupled with the 5-(furan-3-yl) substituent on benzothiadiazine core. A stereoselective synthesis was projected to obtain single enantiomer of the latter compound. Absolute configuration was assigned by X-ray crystal structure. Patch clamp experiments evaluating the activity of single enantiomers as AMPAr positive allosteric modulator showed that R stereoisomer is the active component. Molecular modeling studies were performed to explain biological results. An on-column stopped-flow bidimensional recycling HPLC procedure was applied to obtain on a large scale the active enantiomer with enantiomeric enrichment starting from the racemic mixture of the compound. 相似文献
110.
Kevin M. Wood Anisa Zeqja H. Frederik Nijhout Michael C. Reed Janet Best Parastoo Hashemi 《Journal of neurochemistry》2014,130(3):351-359
The neurotransmitter serotonin underlies many of the brain's functions. Understanding serotonin neurochemistry is important for improving treatments for neuropsychiatric disorders such as depression. Antidepressants commonly target serotonin clearance via serotonin transporters and have variable clinical effects. Adjunctive therapies, targeting other systems including serotonin autoreceptors, also vary clinically and carry adverse consequences. Fast scan cyclic voltammetry is particularly well suited for studying antidepressant effects on serotonin clearance and autoreceptors by providing real‐time chemical information on serotonin kinetics in vivo. However, the complex nature of in vivo serotonin responses makes it difficult to interpret experimental data with established kinetic models. Here, we electrically stimulated the mouse medial forebrain bundle to provoke and detect terminal serotonin in the substantia nigra reticulata. In response to medial forebrain bundle stimulation we found three dynamically distinct serotonin signals. To interpret these signals we developed a computational model that supports two independent serotonin reuptake mechanisms (high affinity, low efficiency reuptake mechanism, and low affinity, high efficiency reuptake system) and bolsters an important inhibitory role for the serotonin autoreceptors. Our data and analysis, afforded by the powerful combination of voltammetric and theoretical methods, gives new understanding of the chemical heterogeneity of serotonin dynamics in the brain. This diverse serotonergic matrix likely contributes to clinical variability of antidepressants.