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Aung HH  Mehendale SR  Xie JT  Moss J  Yuan CS 《Life sciences》2004,74(22):2685-2691
Opioids are frequently used analgesics, and emesis is a common opioid-induced adverse effect. Methylnaltrexone, a peripheral opioid antagonist, has the potential to block the undesired effects of opioids that are mediated by peripheral receptors while sparing the analgesic effect. We used a rat model of simulated emesis or pica to study if methylnaltrexone decreases morphine induced-kaolin consumption. We observed that after morphine administration, kaolin intake increased significantly compared to intake in the vehicle group, and the increase could be attenuated by ondansetron administration. Methylnaltrexone dose-dependently reduced kaolin ingestion induced by morphine. Morphine and methylnaltrexone did not significantly affect food intake and body weight in the experimental animals. Our data suggest that methylnaltrexone has therapeutic value in treating opioid-induced nausea and vomiting.  相似文献   
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Yangmin Ma  Hao Wu  Jin Zhang  Yanchao Li 《Chirality》2013,25(10):656-662
A series of single isomers tetrahydro‐β‐carboline diketopiperazines were stereoselectively synthesized starting from l ‐tryptophan methyl ester hydrochloride and six aldehydes through a four‐step reaction including Pictet‐Spengler reaction, crystallization‐induced asymmetric transformations (CIAT), Schotten‐Baumann reaction, and intramolecular ester amidation. The chemical structures were characterized by nuclear magnetic resonance (NMR) and elemental analysis, among which two compounds were determined by x‐ray single crystal diffraction. Moreover, antimicrobial activities of all the compounds were also tested. Chirality 25:656–662, 2013. © 2013 Wiley Periodicals, Inc.  相似文献   
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Lipocalin 2 (LCN2) is produced by mammalian hosts to bind bacterial siderophore and sequester free iron as part of an innate immune response, and could also play a role in tissue iron homeostasis, but thus far, little is known about its expression in the CNS. The present study was carried out to study the expression of the lipocalin in the normal rat brain and after neuronal injury induced by kainate (KA). Low levels of LCN2 mRNA and protein expression were detected in most regions of the normal brain except the olfactory bulb, brainstem and cerebellum. KA lesions resulted in damage to the hippocampus, leading to an early increase at three days and a sustained elevation in LCN2 mRNA level of 16-fold, and protein expression at 80-fold in the lesioned tissue compared to controls at 2 weeks post-KA injection. The sustained elevation in mRNA expression was not detected among other lipocalins surveyed using real-time RT-PCR - apoD, PGDS, Rbp4 and LCN5. Single and double immunostaining confirmed that LCN2 is present in astrocytes in the olfactory bulb, brainstem and cerebellum of the normal brain, and reactive astrocytes in the KA-lesioned hippocampus. In conclusion, the present study showed LCN2 to be present in select brain regions, and is upregulated in astrocytes after neuronal injury induced by kainate. We postulate that, as in the periphery, LCN2 may have a role in iron transport or trafficking in the CNS.  相似文献   
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O 6-(carboxymethyl)guanine (O 6-CMG) and O 6-(4-oxo-4-(3-pyridyl)butyl)guanine (O 6-pobG) are toxic lesions formed in DNA following exposure to alkylating agents. O 6-CMG results from exposure to nitrosated glycine or nitrosated bile acid conjugates and may be associated with diets rich in red meat. O 6-pobG lesions are derived from alkylating agents found in tobacco smoke. Efficient syntheses of oligodeoxyribonucleotides (ODNs) containing O 6-CMG and O 6-pobG are described that involve nucleophilic displacement by the appropriate alcohol on a common synthetic ODN containing the reactive base 2-amino-6-methylsulfonylpurine. ODNs containing O 6-pobG and O 6-CMG were found to be good substrates for the S. pombe alkyltransferase-like protein Atl1.

[Supplemental materials are available for this article. Go to the publisher's online edition of Nucleosides, Nucleotides & Nucleic Acids to view the free supplemental file.]  相似文献   
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大鼠杏仁核5-HT_3受体参与免疫调制   总被引:1,自引:0,他引:1  
实验通过大鼠侧脑室和杏仁核给予 5 HT3受体激动剂 1 phenylbiguanide (PBG) ,用 3H TdR掺入法测定脾细胞丝裂原 (concanavalinA ,ConA和lipopolysaccharide ,LPS)刺激增殖效应 ,用活化脾细胞增殖法测定IL 2生成 ,MTT法测定自然杀伤 (naturalkiller,NK)细胞活性和用放射免疫测定血浆皮质酮水平 ,以探讨大鼠杏仁核 5 HT3受体在免疫调控中的作用。结果表明 :5 HT3受体拮抗剂granisetron (GNT ,0 1~ 0 4mg/kgip)剂量依赖地增强ConA和LPS刺激的脾细胞增殖 ,作用在连续给药 5d最明显 ;双侧脑室给予PBG ( 5 μg/side)可增强ConA和LPS刺激的脾细胞增殖效应 ,作用在连续给药 3d最明显 ;双侧和单侧中央杏仁核给予PBG 0 5 μg均增强ConA刺激的脾细胞增殖和IL 2生成 ;底内侧杏仁核给予同剂量PBG仅增强LPS刺激的脾细胞增殖效应 ,不影响ConA刺激的脾细胞增殖和IL 2生成 ;中央杏仁核给予PBG升高血浆皮质酮的作用较底内侧杏仁核给予等量PBG引起的升高血浆皮质酮作用明显 (P <0 0 1)。侧脑室、中央杏仁核和底内杏仁核给予PBG对丝裂原刺激的脾细胞增殖效应影响不同 ,但均被同时同部位给予GNT所拮抗 ,提示杏仁核中央核和底内侧核的 5 HT3受体可能以不同方式参与ConA或LPS刺激的脾细胞增殖效应的调制  相似文献   
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ObjectivesMyocardial infarction (MI) is the most predominant type of cardiovascular diseases with high mortality and morbidity. Stem cell therapy, especially cardiac progenitor cell therapy, has been proposed as a promising approach for cardiac regeneration and MI treatment. Previously, we have successfully generated cardiac progenitor‐like cells, induced cardiosphere (iCS), via somatic reprogramming. However, the genome integration characteristic of virus‐based reprogramming approach hampered their therapeutic applications due to the risk of tumour formation. In the current study, we aim to establish a safer iCS generation strategy with transgene‐free approaches.Materials and MethodsFour transgene‐free approaches for somatic reprogramming, including episome, minicircle, self‐replicative RNA, and sendai virus, were compared, from the perspective of cardiac progenitor marker expression, iCS formation, and cardiac differentiation. The therapeutic effects were assessed in the mouse model of MI, from the perspective of survival rate, cardiac function, and structural alterations.ResultsThe self‐replicative RNA approach produced more iCS, which had cardiomyocyte differentiation ability and therapeutic effects on the mouse model of MI with comparable levels with endogenous cardiospheres and iCS generated with retrovirus. In addition, the CXCR4 (C‐X‐C chemokine receptor 4) positive subpopulation of iCS derived cells (iCSDC) delivered by intravenous injection was found to have similar therapeutic effects with intramyocardial injection on the mouse model of MI, representing a safer delivery approach.ConclusionThus, the optimized strategy for iCS generation is safer and has more therapeutic potentials.  相似文献   
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