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261.
Tramadol (T) is available as a racemic mixture of (+)‐trans‐T and (−)‐trans‐T. The main metabolic pathways are O‐demethylation and N‐demethylation, producing trans‐O‐desmethyltramadol ( M1 ) and trans‐N‐desmethyltramadol ( M2 ) enantiomers, respectively. The analgesic effect of T is related to the opioid activity of (+)‐trans‐T and (+)‐ M1 and to the monoaminergic action of (+/−)‐trans‐T. This is the first study using tandem mass spectrometry as a detection system for the simultaneous analysis of trans‐T, M1 , and M2 enantiomers. The analytes were resolved on a Chiralpak® AD column using hexane:ethanol (95.5:4.5, v/v) plus 0.1% diethylamine as the mobile phase. The quantitation limits were 0.5 ng/ml for trans‐T and M1 and 0.1 ng/ml for M2 . The method developed and validated here was applied to a pharmacokinetic study in rats. Male Wistar rats (n = 6 at each time point) received a single oral dose of 20 mg/kg racemic trans‐T. Blood samples were collected up to 12 h after drug administration. The kinetic disposition of trans‐T and M2 was enantioselective (AUC(+)/(−) ratio = 4.16 and 6.36, respectively). The direction and extent of enantioselectivity in the pharmacokinetics of trans‐T and M2 in rats were comparable to data previously reported for healthy volunteers, suggesting that rats are a suitable model for enantioselective studies of trans‐T pharmacokinetics. Chirality, 2011. © 2010 Wiley‐Liss, Inc.  相似文献   
262.
Increasing evidence supports that OS plays important roles in diabetes mellitus and cerebral ischemia. This suggests that recovering an impaired endogenous superoxide dismutase (SOD) enzyme system induced by OS with a mimetic would be beneficial and protective for these diseases. In present study, one nonpeptidyl small molecular weight compound (D34) was synthesized. Its SOD mimetic activity and the potential therapeutic actions were also evaluated both in vivo and in vitro. The in vitro nitro blue tetrazolium (NBT) assay indicated that D34 presents an SOD mimetic activity. D34 (20 μmol/kg) exhibited significant antihyperglycemic activity in alloxan-diabetic mice. D34 could also ameliorate the cerebral neuronal death in hippocampus of global cerebral ischemia mice. Furthermore, the D34 treatment significantly decreased malondialdehyde (MDA) contents and increased SOD activities in brains or livers of diabetes mice or cerebral ischemic mice. In conclusion, these preliminary findings support that D34 exhibits SOD mimetic activity and possesses significant antihyperglycemic and neuroprotective effects.  相似文献   
263.
The synthesis, structure, theoretical and experimental in vitro antioxidant properties using the DPPH, ORAC, and benzoic acid, as well as preliminary in vitro pharmacological activities of (Z)-??-aryl and heteroaryl N-alkyl-nitrones 6-15, 18, 19, 21, and 23, is reported. In the in vitro antioxidant activity, for the DPPH radical test, only nitrones bearing free phenol groups gave the best RSA (%) values, nitrones 13 and 14 showing the highest values in this assay. In the ORAC analysis, the most potent radical scavenger was nitrone indole 21, followed by the N-benzyl benzene-type nitrones 10 and 15. Interestingly enough, the archetypal nitrone 7 (PBN) gave a low RSA value (1.4%) in the DPPH test, or was inactive in the ORAC assay. Concerning the ability to scavenge the hydroxyl radical, all the nitrones studied proved active in this experiment, showing high values in the 94-97% range, the most potent being nitrone 14. The theoretical calculations for the prediction of the antioxidant power, and the potential of ionization confirm that nitrones 9 and 10 are among the best compounds in electron transfer processes, a result that is also in good agreement with the experimental values in the DPPH assay. The calculated energy values for the reaction of ROS (hydroxyl, peroxyl) with the nitrones predict that the most favourable adduct-spin will take place between nitrones 9, 10, and 21, a fact that would be in agreement with their experimentally observed scavenger ability. The in vitro pharmacological analysis showed that the neuroprotective profile of the target molecules was in general low, with values ranging from 0% to 18.7%, in human neuroblastoma cells stressed with a mixture of rotenone/oligomycin-A, being nitrones 18, and 6-8 the most potent, as they show values in the range 24-18.4%.  相似文献   
264.
目的 检测胚胎-胎仔发育毒性试验中SD大鼠妊娠期的体重、生殖功能指标及胎鼠的各项发育指标,为SD大鼠的发育毒性研究提供参考数据.方法 395只SD雌性大鼠,交配成功后,于妊娠第20天剖检孕鼠,检查孕鼠的内脏器官有无异常,称量子宫重量、窝重和胎盘重量,计数黄体数、着床数、活胎数、吸收胎数和死胎数.胎鼠共5272只,将一半胎鼠放人固定液中做内脏检查,另一半胎鼠进行骨骼检查,检查胎鼠外观、内脏和骨骼有无异常和变异.结果 和结论 建立SD大鼠胚胎-胎仔发育毒性试验中各项指标的数据库,求得各指标的正常值及标准差,95%的可信区间,为生殖毒性研究提供正常值的参考依据.  相似文献   
265.
目的测定近交系大鼠MIJ、HFJ和封闭群Wistar大鼠的脏器系数、体温、呼吸频率、肠管长度,观察两个近交系大鼠的生理表型。方法 采用常规方法对大鼠脏器系数、体温、呼吸频率及肠管长度进行测定,并对HFJ、MIJ、Wistar大鼠三者间进行比较。结果①体重:HFJ、MIJ、Wistar大鼠同性别间比较差异无显著性。②脏器系数:HFJ与Wistar大鼠雄性间心脏、肺,雌性间子宫、肝;MIJ与Wistar大鼠雄性间肺、脾,雌性间脑、脾,差异均有显著性。HFJ与MIJ大鼠雄性间脑,雌性间脑和脾差异有显著性。HFJ大鼠不同性别间肝、脑、眼球差异有显著性。MIJ大鼠不同性别间,脑、心脏、肾、肺、脾和眼球差异均有显著性。③体温:HFJ雌性大鼠明显高于Wistar雌性,雄性间差异无显著性。HFJ大鼠雌性高于雄性,差异有显著性。④呼吸频率:HFJ雌性大鼠低于同性Wistar大鼠,MIJ大鼠雌性和雄性均高于同性别Wistar大鼠,差异有显著性。⑤肠管长度:HFJ与Wistar同性别间比较,肠管总长和小肠差异有显著性。MIJ与Wistar大鼠雄性间肠管总长、大肠、小肠、盲肠差异均有显著性,雌性间肠管总长、小肠、盲肠差异有显著性。HFJ与MIJ大鼠同性别间差异均无显著性,不同性别的HFJ和MIJ的肠管总长、大肠和小肠差异有显著性。结论 MIJ和HFJ近交系大鼠的脏器系数、体温、呼吸频率、肠管长度都各有其独特的生理概貌。  相似文献   
266.
目的研究羊骨胶原肽(sheep bone collagen peptide,SBCP)对类固醇诱导的去卵巢大鼠催乳素(pro-lactin,PRL)和促黄体生成素(luteinizing hormone,LH)分泌脉冲的影响。方法 6周龄子宫颈未开口的青春期SD大鼠实施双侧卵巢摘除手术,康复1周或3周后以类固醇替代方法诱导PRL和LH脉冲,处理组同时按1000 mg/(kg.d)的剂量以SBCP灌胃,通过颈导管采集血样,利用放射免疫技术测定各组大鼠外周血中的LH和PRL浓度。结果对于术后康复1周的大鼠,SBCP对LH脉冲振幅起到增强作用,而对PRL脉冲没有影响;对于术后康复3周的大鼠,SBCP对LH和PRL脉冲振幅均表现为降低作用,但卵巢摘除后立即给予SBCP可减弱这种降低作用。结论雌激素和孕激素替代注射的同时,补充羊骨胶原肽,不仅仍可诱导LH和PRL脉冲的产生,还可预防由于卵巢摘除带来的骨代谢紊乱,免疫力低下等不良影响,因而是对现有类固醇替代方法的改良。  相似文献   
267.
目的利用18氟-脱氧葡萄糖microPET(18F-FDG microPET)影像学技术观察正常对照组小鼠,模型组和姜黄素治疗组APPswe/PS1dE9双转基因小鼠的脑葡萄糖代谢情况。方法随机挑选6月龄正常对照组C57BL/6J小鼠3只,模型组和姜黄素治疗组APPswe/PS1dE9双转基因小鼠各3只,通过2%异氟烷吸入麻醉后,从尾静脉弹丸式注射放射性示踪剂18F-FDG每例约14.8~16.5 MBq,摄取45 min后进行10 min microPET图像采集。计算并比较各组小鼠每克脑组织(除小脑)18F-FDG的摄取率。结果姜黄素治疗组小鼠每克脑组织18F-FDG的摄取率高于正常对照组和模型组。结论姜黄素能明显提高APPswe/PS1dE9双转基因小鼠脑18 F-FDG的摄取及每克脑组织的摄取率,并可能通过影响脑葡萄糖代谢而发挥神经保护作用。  相似文献   
268.
269.
Regional elevations in cerebral blood flow (CBF) often occur in response to localized increases in cerebral neuronal activity. An ever expanding literature has linked this neurovascular coupling process to specific signaling pathways involving neuronal synapses, astrocytes and cerebral arteries and arterioles. Collectively, these structures are termed the "neurovascular unit" (NVU). Astrocytes are thought to be the cornerstone of the NVU. Thus, not only do astrocytes "detect" increased synaptic activity, they can transmit that information to proximal and remote astrocytic sites often through a Ca(2+)- and ATP-related signaling process. At the vascular end of the NVU, a Ca(2+)-dependent formation and release of vasodilators, or substances linked to vasodilation, can occur. The latter category includes ATP, which upon its appearance in the extracellular compartment, can be rapidly converted to the potent vasodilator, adenosine, via the action of ecto-nucleotidases. In the present review, we give consideration to experimental model-specific variations in purinergic influences on gliovascular signaling mechanisms, focusing on the cerebral cortex. In that discussion, we compare findings obtained using in vitro (rodent brain slice) models and multiple in vivo models (2-photon imaging; somatosensory stimulation-evoked cortical hyperemia; and sciatic nerve stimulation-evoked pial arteriolar dilation). Additional attention is given to the importance of upstream (remote) vasodilation; the key role played by extracellular ATP hydrolysis (via ecto-nucleotidases) in gliovascular coupling; and interactions among multiple signaling pathways.  相似文献   
270.
Originally discovered nearly a century ago, the Notch signaling pathway is critical for virtually all developmental programs and modulates an astounding variety of pathogenic processes. The DSL (Delta, Serrate, LAG-2 family) proteins have long been considered canonical activators of the core Notch pathway. More recently, a wide and expanding network of non-canonical extracellular factors has also been shown to modulate Notch signaling, conferring newly appreciated complexity to this evolutionarily conserved signal transduction system. Here, I review current concepts in Notch signaling, with a focus on work from the last decade elucidating novel extracellular proteins that up- or down-regulate signal potency.  相似文献   
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