<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"><channel><title>Neurochemical research[TA]</title><link>http://www.unboundmedicine.com/medline/ebm/journal/Neurochemical_research</link><description>Unbound MEDLINE is a service provided by Unbound Medicine, Inc. that includes data and services from the U.S. National Library of Medicine's MEDLINE® and PubMed® databases.</description><language>en-us</language><copyright>Unbound Medicine, Inc.</copyright><item><title>Erratum to: Proline-Rich Hypothalamic Polypeptide Has Opposite Effects on the Proliferation of Human Normal Bone Marrow Stromal Cells and Human Giant-cell Tumour Stromal Cells.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20300961/full_citation/Erratum_to:_Proline_Rich_Hypothalamic_Polypeptide_Has_Opposite_Effects_on_the_Proliferation_of_Human_Normal_Bone_Marrow_Stromal_Cells_and_Human_Giant_cell_Tumour_Stromal_Cells_</link><description>Chailakhyan RK, Gerasimov YV, Chailakhyan MR, et al. <br/><span class="title">Erratum to: Proline-Rich Hypothalamic Polypeptide Has Opposite Effects on the Proliferation of Human Normal Bone Marrow Stromal Cells and Human Giant-cell Tumour Stromal Cells. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Mar 19.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20300961/full_citation/Erratum_to:_Proline_Rich_Hypothalamic_Polypeptide_Has_Opposite_Effects_on_the_Proliferation_of_Human_Normal_Bone_Marrow_Stromal_Cells_and_Human_Giant_cell_Tumour_Stromal_Cells_">Full Citation</a></description></item><item><title>Sex steroids inhibit osmotic swelling of retinal glial cells.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20238484/full_citation/Sex_steroids_inhibit_osmotic_swelling_of_retinal_glial_cells_</link><description>Neumann F, Wurm A, Linnertz R, et al. <br/><span class="title">Sex steroids inhibit osmotic swelling of retinal glial cells. [Journal Article, Research Support, Non-U.S. Gov't]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Apr; 35(4):522-30.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20238484/abstract/Sex_steroids_inhibit_osmotic_swelling_of_retinal_glial_cells_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20238484/full_citation/Sex_steroids_inhibit_osmotic_swelling_of_retinal_glial_cells_">Full Citation</a></description></item><item><title>Effects of N-acetylcysteine/deferoxamine, taurine and RC-3095 on respiratory chain complexes and creatine kinase activities in rat brain after sepsis.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20238483/full_citation/Effects_of_N_acetylcysteine/deferoxamine_taurine_and_RC_3095_on_respiratory_chain_complexes_and_creatine_kinase_activities_in_rat_brain_after_sepsis_</link><description>Cassol OJ, Rezin GT, Petronilho FC, et al. <br/><span class="title">Effects of N-acetylcysteine/deferoxamine, taurine and RC-3095 on respiratory chain complexes and creatine kinase activities in rat brain after sepsis. [Journal Article, Research Support, Non-U.S. Gov't]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Apr; 35(4):515-21.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20238483/abstract/Effects_of_N_acetylcysteine/deferoxamine_taurine_and_RC_3095_on_respiratory_chain_complexes_and_creatine_kinase_activities_in_rat_brain_after_sepsis_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20238483/full_citation/Effects_of_N_acetylcysteine/deferoxamine_taurine_and_RC_3095_on_respiratory_chain_complexes_and_creatine_kinase_activities_in_rat_brain_after_sepsis_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/20238483/Effects_of_N_acetylcysteine/deferoxamine_taurine_and_RC_3095_on_respiratory_chain_complexes_and_creatine_kinase_activities_in_rat_brain_after_sepsis_">Find Related Articles</a> </description></item><item><title>Anti-inflammatory Activity of Salvianolic Acid B in Microglia Contributes to its Neuroprotective Effect.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20238162/full_citation/Anti_inflammatory_Activity_of_Salvianolic_Acid_B_in_Microglia_Contributes_to_its_Neuroprotective_Effect_</link><description>Wang SX, Hu LM, Gao XM, et al. <br/><span class="title">Anti-inflammatory Activity of Salvianolic Acid B in Microglia Contributes to its Neuroprotective Effect. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Mar 18.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20238162/abstract/Anti_inflammatory_Activity_of_Salvianolic_Acid_B_in_Microglia_Contributes_to_its_Neuroprotective_Effect_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20238162/full_citation/Anti_inflammatory_Activity_of_Salvianolic_Acid_B_in_Microglia_Contributes_to_its_Neuroprotective_Effect_">Full Citation</a></description></item><item><title>Flavonoids and Astrocytes Crosstalking: Implications for Brain Development and Pathology.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20213345/full_citation/Flavonoids_and_Astrocytes_Crosstalking:_Implications_for_Brain_Development_and_Pathology_</link><description>Nones J, Stipursky J, Costa SL, et al. <br/><span class="title">Flavonoids and Astrocytes Crosstalking: Implications for Brain Development and Pathology. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Mar 9.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20213345/abstract/Flavonoids_and_Astrocytes_Crosstalking:_Implications_for_Brain_Development_and_Pathology_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20213345/full_citation/Flavonoids_and_Astrocytes_Crosstalking:_Implications_for_Brain_Development_and_Pathology_">Full Citation</a></description></item><item><title>Tyrosine Phosphorylation of Apoptotic Proteins During Hyperoxia in Mitochondria of the Cerebral Cortex of Newborn Piglets.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20213344/full_citation/Tyrosine_Phosphorylation_of_Apoptotic_Proteins_During_Hyperoxia_in_Mitochondria_of_the_Cerebral_Cortex_of_Newborn_Piglets_</link><description>Mudduluru M, Zubrow AB, Ashraf QM, et al. <br/><span class="title">Tyrosine Phosphorylation of Apoptotic Proteins During Hyperoxia in Mitochondria of the Cerebral Cortex of Newborn Piglets. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Mar 9.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20213344/abstract/Tyrosine_Phosphorylation_of_Apoptotic_Proteins_During_Hyperoxia_in_Mitochondria_of_the_Cerebral_Cortex_of_Newborn_Piglets_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20213344/full_citation/Tyrosine_Phosphorylation_of_Apoptotic_Proteins_During_Hyperoxia_in_Mitochondria_of_the_Cerebral_Cortex_of_Newborn_Piglets_">Full Citation</a></description></item><item><title>Expression of the Hippocampal NMDA Receptor GluN1 Subunit and Its Splicing Isoforms in Schizophrenia: Postmortem Study.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20204507/full_citation/Expression_of_the_Hippocampal_NMDA_Receptor_GluN1_Subunit_and_Its_Splicing_Isoforms_in_Schizophrenia:_Postmortem_Study_</link><description>Vrajová M, Sťastný F, Horáček J, et al. <br/><span class="title">Expression of the Hippocampal NMDA Receptor GluN1 Subunit and Its Splicing Isoforms in Schizophrenia: Postmortem Study. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Mar 5.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20204507/abstract/Expression_of_the_Hippocampal_NMDA_Receptor_GluN1_Subunit_and_Its_Splicing_Isoforms_in_Schizophrenia:_Postmortem_Study_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20204507/full_citation/Expression_of_the_Hippocampal_NMDA_Receptor_GluN1_Subunit_and_Its_Splicing_Isoforms_in_Schizophrenia:_Postmortem_Study_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/20204507/Expression_of_the_Hippocampal_NMDA_Receptor_GluN1_Subunit_and_Its_Splicing_Isoforms_in_Schizophrenia:_Postmortem_Study_">Find Related Articles</a> </description></item><item><title>Light-Induced Tyrosine Phosphorylation of Rod Outer Segment Membrane Proteins Regulate the Translocation, Membrane Binding and Activation of Type II alpha Phosphatidylinositol-5-Phosphate 4-Kinase.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20204506/full_citation/Light_Induced_Tyrosine_Phosphorylation_of_Rod_Outer_Segment_Membrane_Proteins_Regulate_the_Translocation_Membrane_Binding_and_Activation_of_Type_II_alpha_Phosphatidylinositol_5_Phosphate_4_Kinase_</link><description>Huang Z, Anderson RE, Cao W, et al. <br/><span class="title">Light-Induced Tyrosine Phosphorylation of Rod Outer Segment Membrane Proteins Regulate the Translocation, Membrane Binding and Activation of Type II alpha Phosphatidylinositol-5-Phosphate 4-Kinase. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Mar 5.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20204506/abstract/Light_Induced_Tyrosine_Phosphorylation_of_Rod_Outer_Segment_Membrane_Proteins_Regulate_the_Translocation_Membrane_Binding_and_Activation_of_Type_II_alpha_Phosphatidylinositol_5_Phosphate_4_Kinase_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20204506/full_citation/Light_Induced_Tyrosine_Phosphorylation_of_Rod_Outer_Segment_Membrane_Proteins_Regulate_the_Translocation_Membrane_Binding_and_Activation_of_Type_II_alpha_Phosphatidylinositol_5_Phosphate_4_Kinase_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/20204506/Light_Induced_Tyrosine_Phosphorylation_of_Rod_Outer_Segment_Membrane_Proteins_Regulate_the_Translocation_Membrane_Binding_and_Activation_of_Type_II_alpha_Phosphatidylinositol_5_Phosphate_4_Kinase_">Find Related Articles</a> </description></item><item><title>Erratum to: Protective Effects of Acetyl-L: -Carnitine on Cisplatin Cytotoxicity and Oxidative Stress in Neuroblastoma.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20191382/full_citation/Erratum_to:_Protective_Effects_of_Acetyl_L:__Carnitine_on_Cisplatin_Cytotoxicity_and_Oxidative_Stress_in_Neuroblastoma_</link><description>Altun ZS, Güneş D, Aktaş S, et al. <br/><span class="title">Erratum to: Protective Effects of Acetyl-L: -Carnitine on Cisplatin Cytotoxicity and Oxidative Stress in Neuroblastoma. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Feb 27.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20191382/full_citation/Erratum_to:_Protective_Effects_of_Acetyl_L:__Carnitine_on_Cisplatin_Cytotoxicity_and_Oxidative_Stress_in_Neuroblastoma_">Full Citation</a></description></item><item><title>Transient Receptor Potential Vanilloid-1 (TRPV1) and Ankyrin-1 (TRPA1) Participate in Visceral Hyperalgesia in Chronic Water Avoidance Stress Rat Model.</title><link>http://www.unboundmedicine.com/medline/ebm/record/20182791/full_citation/Transient_Receptor_Potential_Vanilloid_1__TRPV1__and_Ankyrin_1__TRPA1__Participate_in_Visceral_Hyperalgesia_in_Chronic_Water_Avoidance_Stress_Rat_Model_</link><description>Yu YB, Yang J, Zuo XL, et al. <br/><span class="title">Transient Receptor Potential Vanilloid-1 (TRPV1) and Ankyrin-1 (TRPA1) Participate in Visceral Hyperalgesia in Chronic Water Avoidance Stress Rat Model. [JOURNAL ARTICLE]</span><br/><span class="source" title="Neurochemical research">Neurochem Res 2010 Feb 25.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/20182791/abstract/Transient_Receptor_Potential_Vanilloid_1__TRPV1__and_Ankyrin_1__TRPA1__Participate_in_Visceral_Hyperalgesia_in_Chronic_Water_Avoidance_Stress_Rat_Model_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/20182791/full_citation/Transient_Receptor_Potential_Vanilloid_1__TRPV1__and_Ankyrin_1__TRPA1__Participate_in_Visceral_Hyperalgesia_in_Chronic_Water_Avoidance_Stress_Rat_Model_">Full Citation</a></description></item></channel></rss>