PUBLICATIONS CMA 12 Microdialysis Probes

1. Paasonen, J. et al., 2017. Dose-response effect of acute phencyclidine on functional connectivity and levels, and their association with -like symptom classes in rat. Neuropharmacology, 119, pp.15–25. 2. Kealy, J. et al., 2017. Real-time changes in hippocampal energy demands during a spatial working memory task. Behavioural Brain Research, 326, pp.59–68. 3. Alves, I.A. et al., 2017. Influence of Experimental Cryptococcal Meningitis in Wistar Rats on Voriconazole Brain Penetration Assessed by Microdialysis. Antimicrobial Agents and Chemotherapy, p.AAC.00321-17. 4. Jin, W.-S. et al., 2017. Peritoneal dialysis reduces amyloid-beta plasma levels in humans and attenuates Alzheimer-associated phenotypes in an APP/PS1 mouse model. Acta Neuropathologica, pp.1–14. 5. Kurosawa, T. et al., 2017. Involvement of Proton-Coupled Organic Cation Antiporter in Varenicline Transport at Blood-Brain Barrier of Rats and in Human Brain Capillary Endothelial Cells. Journal of Pharmaceutical Sciences, 0(0). Available at: http://jpharmsci.org/article/S0022-3549(17)30267-8/abstract [Accessed May 14, 2017]. 6. Bank, J.H.H. et al., 2017. Gene expression analysis and microdialysis suggest hypothalamic triiodothyronine (T3) gates daily torpor in Djungarian hamsters (Phodopus sungorus). Journal of Comparative Physiology B, pp.1–12. 7. Miller, S. et al., 2017. Therapeutic Uses Of Compounds Having Affinity To The Transporter, Serotonin Receptors And Noradrenalin Transporter. Available at: http://www.freepatentsonline.com/y2017/0087138.html [Accessed May 14, 2017]. 8. Wang, W. et al., 2017. Effect of Efflux Transporter Inhibition on the Distribution of Fluconazole in the Rat Brain. Neurochemical Research, pp.1–8. 9. Mørk, A. et al., 2017. Effects of the 5-HT6 idalopirdine on extracellular levels of monoamines, glutamate and acetylcholine in the rat medial prefrontal cortex. European Journal of Pharmacology, 799, pp.1–6. 10. Takeda, A. et al., 2017. Characteristic of Extracellular Zn2+ Influx in the Middle-Aged Dentate Gyrus and Its Involvement in Attenuation of LTP. Molecular Neurobiology, pp.1–11. 11. Huang, H.-C. et al., 2017. Components of Goutengsan in Rat Plasma by Microdialysis Sampling and Its Protection on Aβ1–42-Induced PC12 Cells Injury. Evidence-Based Complementary and Alternative Medicine, 2017, p.e7593027. 12. Jørgensen, L.M. et al., 2017. Cerebral 5-HT release correlates with [11C]Cimbi36 PET measures of 5-HT2A receptor occupancy in the pig brain. Journal of Cerebral Blood Flow & Metabolism, 37(2), pp.425–434. 13. Lee, K.J. et al., 2017. Striatal Glutamate and GABA after High Frequency Subthalamic Stimulation in Parkinsonian Rat. Journal of Korean Neurosurgical Society, 60(2), pp.138–145. 14. Czarnecka, A. et al., 2017. Intracerebral Administration of S-Adenosylhomocysteine or S- Adenosylmethionine Attenuates the Increases in the Cortical Extracellular Levels of Dimethylarginines Without Affecting cGMP Level in Rats with Acute Liver Failure. Neurotoxicity Research, 31(1), pp.99–108. 15. Brink, W.J. van den et al., 2017. Revealing the Neuroendocrine Response After Remoxipride Treatment

CMA 12 Microdialysis Probe – Publications - 1

Using Multi-Biomarker Discovery and Quantifying It by PK/PD Modeling. The AAPS Journal, 19(1), pp.274– 285. 16. Das, C., Wang, G. & Nguyen, C., 2017. A Low-Cost, Accurate, and High-Precision Fluid Dispensing System for Microscale Application. SLAS TECHNOLOGY: Translating Life Sciences Innovation, 22(2), pp.144–152. 17. Sriramula, S. et al., 2017. Determining the Enzymatic Activity of Angiotensin-Converting Enzyme 2 (ACE2) in Brain Tissue and Cerebrospinal Fluid Using a Quenched Fluorescent Substrate. In R. M. Touyz & E. L. Schiffrin, eds. Hypertension. Methods in Molecular Biology. Springer New York, pp. 117–126. Available at: http://dx.doi.org/10.1007/978-1-4939-6625-7_9 [Accessed May 14, 2017]. 18. Das, C., Wang, G., Sun, Q., et al., 2017. Multiplexed and fully automated detection of metabolic biomarkers using microdialysis probe. Sensors and Actuators B: Chemical, 238, pp.633–640. 19. Wang, X.-F. et al., 2016. Agmatine Prevents Adaptation of the Hippocampal Glutamate System in Chronic Morphine-Treated Rats. Neuroscience Bulletin, 32(6), pp.523–530. 20. Bundgaard, C. et al., 2016. Selegiline induces a wake promoting effect in rats which is related to formation of its active metabolites. Pharmacology Biochemistry and Behavior, 150–151, pp.147–152. 21. Wang, Y. et al., 2016. Effects of realgar on GSH synthesis in the mouse hippocampus: Involvement of system XAG−, system XC−, MRP-1 and Nrf2. Toxicology and Applied Pharmacology, 308, pp.91–101. 22. Prokai, L. et al., 2016. Mass spectrometric analysis of carisoprodol and meprobamate in rat brain microdialysates. Journal of Mass Spectrometry, 51(10), pp.900–907. 23. Kołosowska, K. et al., 2016. The role of IL-1β and glutamate in the effects of lipopolysaccharide on the hippocampal electrical kindling of seizures. Journal of Neuroimmunology, 298, pp.146–152. 24. Beggiato, S. et al., 2016. Functional role of striatal A2A, D2, and mGlu5 receptor interactions in regulating striatopallidal GABA neuronal transmission. Journal of Neurochemistry, 138(2), pp.254–264. 25. Xiao, B.-X. et al., 2016. Pharmacokinetic profiles of the five isoflavonoids from Pueraria lobata roots in the CSF and plasma of rats. Journal of Ethnopharmacology, 184, pp.22–29. 26. Zhang, W. et al., 2016. Effect of Jian-Pi-Zhi-Dong Decoction on striatal glutamate and γ-aminobutyric acid levels detected using microdialysis in a rat model of Tourette syndrome. Neuropsychiatric Disease and Treatment, 12, pp.1233–1242. 27. Larsen, M.S. et al., 2016. Pharmacokinetic/Pharmacodynamic Relationship of Gabapentin in a CFA-induced Inflammatory Hyperalgesia Rat Model. Pharmaceutical Research, 33(5), pp.1133–1143. 28. Newman, L.A. & Gold, P.E., 2016. Attenuation in rats of impairments of memory by scopolamine, a muscarinic receptor antagonist, by mecamylamine, a nicotinic receptor antagonist. Psychopharmacology, 233(5), pp.925–932. 29. Lindqvist, A. et al., 2016. In vivo Functional Evaluation of Increased Brain Delivery of the Opioid Peptide DAMGO by Glutathione-PEGylated Liposomes. Pharmaceutical Research, 33(1), pp.177–185. 30. He, Y. et al., 2016. In situ derivatization-ultrasound-assisted dispersive liquid–liquid microextraction for the determination of neurotransmitters in Parkinson’s rat brain microdialysates by ultra high performance liquid chromatography-tandem mass spectrometry. Journal of Chromatography A, 1458, pp.70–81. 31. Ortega, J., Meana, J.J. & Callado, L., 2016. In Vivo Brain Microdialysis of Monoamines. In R. Luján & F. Ciruela, eds. Receptor and Ion Channel Detection in the Brain. Neuromethods. Springer New York, pp. 415– 434. Available at: http://dx.doi.org/10.1007/978-1-4939-3064-7_25 [Accessed May 16, 2017]. 32. Yokobori, S. et al., 2016. Microdialysis as Clinical Evaluation of Therapeutic Hypothermia in Rat Subdural Hematoma Model. In F. H. Kobeissy et al., eds. Injury Models of the Central Nervous System. Methods in Molecular Biology. Springer New York, pp. 413–431. Available at: http://dx.doi.org/10.1007/978-1-4939- 3816-2_23 [Accessed May 16, 2017].

CMA 12 Microdialysis Probe – Publications - 2

33. Fang, Z. et al., 2016. Pluronic P85-coated poly(butylcyanoacrylate) nanoparticles overcome phenytoin resistance in P-glycoprotein overexpressing rats with lithium-pilocarpine-induced chronic temporal lobe epilepsy. Biomaterials, 97, pp.110–121. 34. Zhang, S. et al., 2016. Protective effect of on soluble Aβ1–42-induced memory impairment, astrogliosis, and synaptic dysfunction via the Musashi1/Notch1/Hes1 signaling pathway in the rat hippocampus. Alzheimer’s Research &