<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"><channel><title>ascorbic acid</title><link>http://www.unboundmedicine.com/medline/ebm/research/ascorbic_acid</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>Flavonoids activated caspases for apoptosis in human glioblastoma T98G and U87MG cells but not in human normal astrocytes.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19894226/full_citation/Flavonoids_activated_caspases_for_apoptosis_in_human_glioblastoma_T98G_and_U87MG_cells_but_not_in_human_normal_astrocytes_</link><description>Das A, Banik NL, Ray SK <br/><span class="title">Flavonoids activated caspases for apoptosis in human glioblastoma T98G and U87MG cells but not in human normal astrocytes. [JOURNAL ARTICLE]</span><br/><span class="source" title="Cancer">Cancer 2009 Nov 5.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19894226/abstract/Flavonoids_activated_caspases_for_apoptosis_in_human_glioblastoma_T98G_and_U87MG_cells_but_not_in_human_normal_astrocytes_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19894226/full_citation/Flavonoids_activated_caspases_for_apoptosis_in_human_glioblastoma_T98G_and_U87MG_cells_but_not_in_human_normal_astrocytes_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/19894226/Flavonoids_activated_caspases_for_apoptosis_in_human_glioblastoma_T98G_and_U87MG_cells_but_not_in_human_normal_astrocytes_">Find Related Articles</a> </description></item><item><title>TARGETED DISRUPTION OF NUCLEAR FACTOR ERYTHROID-DERIVED 2-LIKE 1 IN OSTEOBLASTS REDUCES BONE SIZE AND BONE FORMATION IN MICE.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19887580/full_citation/TARGETED_DISRUPTION_OF_NUCLEAR_FACTOR_ERYTHROID_DERIVED_2_LIKE_1_IN_OSTEOBLASTS_REDUCES_BONE_SIZE_AND_BONE_FORMATION_IN_MICE_</link><description>Kim J, Xing W, Wergedal JE, et al. <br/><span class="title">TARGETED DISRUPTION OF NUCLEAR FACTOR ERYTHROID-DERIVED 2-LIKE 1 IN OSTEOBLASTS REDUCES BONE SIZE AND BONE FORMATION IN MICE. [JOURNAL ARTICLE]</span><br/><span class="source" title="Physiological genomics">Physiol Genomics 2009 Nov 3.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19887580/abstract/TARGETED_DISRUPTION_OF_NUCLEAR_FACTOR_ERYTHROID_DERIVED_2_LIKE_1_IN_OSTEOBLASTS_REDUCES_BONE_SIZE_AND_BONE_FORMATION_IN_MICE_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19887580/full_citation/TARGETED_DISRUPTION_OF_NUCLEAR_FACTOR_ERYTHROID_DERIVED_2_LIKE_1_IN_OSTEOBLASTS_REDUCES_BONE_SIZE_AND_BONE_FORMATION_IN_MICE_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/19887580/TARGETED_DISRUPTION_OF_NUCLEAR_FACTOR_ERYTHROID_DERIVED_2_LIKE_1_IN_OSTEOBLASTS_REDUCES_BONE_SIZE_AND_BONE_FORMATION_IN_MICE_">Find Related Articles</a> </description></item><item><title>Compound 48/80 causes oxidative stress in the adrenal gland of rats through mast cell degranulation.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19886753/full_citation/Compound_48/80_causes_oxidative_stress_in_the_adrenal_gland_of_rats_through_mast_cell_degranulation_</link><description>Kaida S, Ohta Y, Imai Y, et al. <br/><span class="title">Compound 48/80 causes oxidative stress in the adrenal gland of rats through mast cell degranulation. [JOURNAL ARTICLE]</span><br/><span class="source" title="Free radical research">Free Radic Res 2009 Nov 3.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19886753/abstract/Compound_48/80_causes_oxidative_stress_in_the_adrenal_gland_of_rats_through_mast_cell_degranulation_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19886753/full_citation/Compound_48/80_causes_oxidative_stress_in_the_adrenal_gland_of_rats_through_mast_cell_degranulation_">Full Citation</a></description></item><item><title>Impact of oxygen dissolved at bottling and transmitted through closures on the composition and sensory properties of a Sauvignon Blanc wine during bottle storage.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19886682/full_citation/Impact_of_oxygen_dissolved_at_bottling_and_transmitted_through_closures_on_the_composition_and_sensory_properties_of_a_Sauvignon_Blanc_wine_during_bottle_storage_</link><description>Lopes P, Silva MA, Pons A, et al. <br/><span class="title">Impact of oxygen dissolved at bottling and transmitted through closures on the composition and sensory properties of a Sauvignon Blanc wine during bottle storage. [Journal Article, Research Support, Non-U.S. Gov't]</span><br/><span class="source" title="Journal of agricultural and food chemistry">J Agric Food Chem 2009 Nov 11; 57(21):10261-70.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19886682/abstract/Impact_of_oxygen_dissolved_at_bottling_and_transmitted_through_closures_on_the_composition_and_sensory_properties_of_a_Sauvignon_Blanc_wine_during_bottle_storage_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19886682/full_citation/Impact_of_oxygen_dissolved_at_bottling_and_transmitted_through_closures_on_the_composition_and_sensory_properties_of_a_Sauvignon_Blanc_wine_during_bottle_storage_">Full Citation</a></description></item><item><title>A Study on the Antioxidant Activity and Tissues Selective Inhibition of Lipid Peroxidation by Saponins from the Roots of Platycodon grandiflorum.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19885956/full_citation/A_Study_on_the_Antioxidant_Activity_and_Tissues_Selective_Inhibition_of_Lipid_Peroxidation_by_Saponins_from_the_Roots_of_Platycodon_grandiflorum_</link><description>Fu XJ, Liu HB, Wang P, et al. <br/><span class="title">A Study on the Antioxidant Activity and Tissues Selective Inhibition of Lipid Peroxidation by Saponins from the Roots of Platycodon grandiflorum. [JOURNAL ARTICLE]</span><br/><span class="source" title="The American journal of Chinese medicine">Am J Chin Med 2009 2009; 37(5):967-975.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19885956/abstract/A_Study_on_the_Antioxidant_Activity_and_Tissues_Selective_Inhibition_of_Lipid_Peroxidation_by_Saponins_from_the_Roots_of_Platycodon_grandiflorum_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19885956/full_citation/A_Study_on_the_Antioxidant_Activity_and_Tissues_Selective_Inhibition_of_Lipid_Peroxidation_by_Saponins_from_the_Roots_of_Platycodon_grandiflorum_">Full Citation</a></description></item><item><title>6-Deoxy-6-[131I]iodo-L-ascorbic acid for the in vivo study of ascorbate: autoradiography, biodistribution in normal and hypolipidemic rats, and in tumor-bearing nude mice.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19881306/full_citation/6_Deoxy_6_[131I]iodo_L_ascorbic_acid_for_the_in_vivo_study_of_ascorbate:_autoradiography_biodistribution_in_normal_and_hypolipidemic_rats_and_in_tumor_bearing_nude_mice_</link><description>Kim J, Yamamoto F, Gondo S, et al. <br/><span class="title">6-Deoxy-6-[131I]iodo-L-ascorbic acid for the in vivo study of ascorbate: autoradiography, biodistribution in normal and hypolipidemic rats, and in tumor-bearing nude mice. [Journal Article, Research Support, Non-U.S. Gov't]</span><br/><span class="source" title="Biological &amp; pharmaceutical bulletin">Biol Pharm Bull 2009 Nov; 32(11):1906-11.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19881306/abstract/6_Deoxy_6_[131I]iodo_L_ascorbic_acid_for_the_in_vivo_study_of_ascorbate:_autoradiography_biodistribution_in_normal_and_hypolipidemic_rats_and_in_tumor_bearing_nude_mice_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19881306/full_citation/6_Deoxy_6_[131I]iodo_L_ascorbic_acid_for_the_in_vivo_study_of_ascorbate:_autoradiography_biodistribution_in_normal_and_hypolipidemic_rats_and_in_tumor_bearing_nude_mice_">Full Citation</a></description></item><item><title>Design, synthesis and biological evaluation of hydroxy- or methoxy-substituted phenylmethylenethiosemicarbazones as tyrosinase inhibitors.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19881280/full_citation/Design_synthesis_and_biological_evaluation_of_hydroxy__or_methoxy_substituted_phenylmethylenethiosemicarbazones_as_tyrosinase_inhibitors_</link><description>Yi W, Cao RH, Chen ZY, et al. <br/><span class="title">Design, synthesis and biological evaluation of hydroxy- or methoxy-substituted phenylmethylenethiosemicarbazones as tyrosinase inhibitors. [Journal Article]</span><br/><span class="source" title="Chemical &amp; pharmaceutical bulletin">Chem Pharm Bull (Tokyo) 2009 Nov; 57(11):1273-7.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19881280/abstract/Design_synthesis_and_biological_evaluation_of_hydroxy__or_methoxy_substituted_phenylmethylenethiosemicarbazones_as_tyrosinase_inhibitors_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19881280/full_citation/Design_synthesis_and_biological_evaluation_of_hydroxy__or_methoxy_substituted_phenylmethylenethiosemicarbazones_as_tyrosinase_inhibitors_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/19881280/Design_synthesis_and_biological_evaluation_of_hydroxy__or_methoxy_substituted_phenylmethylenethiosemicarbazones_as_tyrosinase_inhibitors_">Find Related Articles</a> </description></item><item><title>Cooperative functions of manganese and thiol redox system against oxidative stress in human spermatozoa.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19881153/full_citation/Cooperative_functions_of_manganese_and_thiol_redox_system_against_oxidative_stress_in_human_spermatozoa_</link><description>Bansal AK, Kaur AR <br/><span class="title">Cooperative functions of manganese and thiol redox system against oxidative stress in human spermatozoa. [Journal Article]</span><br/><span class="source" title="Journal of human reproductive sciences">J Hum Reprod Sci 2009 Jul; 2(2):76-80.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19881153/abstract/Cooperative_functions_of_manganese_and_thiol_redox_system_against_oxidative_stress_in_human_spermatozoa_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19881153/full_citation/Cooperative_functions_of_manganese_and_thiol_redox_system_against_oxidative_stress_in_human_spermatozoa_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/19881153/Cooperative_functions_of_manganese_and_thiol_redox_system_against_oxidative_stress_in_human_spermatozoa_">Find Related Articles</a> </description></item><item><title>Magnetically enhanced cytotoxicity of paramagnetic selenium-ferroferric oxide nanocomposites on human osteoblast-like MG-63 cells.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19880305/full_citation/Magnetically_enhanced_cytotoxicity_of_paramagnetic_selenium_ferroferric_oxide_nanocomposites_on_human_osteoblast_like_MG_63_cells_</link><description>Zhou Y, Jia X, Tan L, et al. <br/><span class="title">Magnetically enhanced cytotoxicity of paramagnetic selenium-ferroferric oxide nanocomposites on human osteoblast-like MG-63 cells. [JOURNAL ARTICLE]</span><br/><span class="source" title="Biosensors &amp; bioelectronics">Biosens Bioelectron 2009 Oct 2.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19880305/abstract/Magnetically_enhanced_cytotoxicity_of_paramagnetic_selenium_ferroferric_oxide_nanocomposites_on_human_osteoblast_like_MG_63_cells_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19880305/full_citation/Magnetically_enhanced_cytotoxicity_of_paramagnetic_selenium_ferroferric_oxide_nanocomposites_on_human_osteoblast_like_MG_63_cells_">Full Citation</a></description></item><item><title>Mycobacteria exploit host hyaluronan for efficient extracellular replication.</title><link>http://www.unboundmedicine.com/medline/ebm/record/19876387/full_citation/Mycobacteria_exploit_host_hyaluronan_for_efficient_extracellular_replication_</link><description>Hirayama Y, Yoshimura M, Ozeki Y, et al. <br/><span class="title">Mycobacteria exploit host hyaluronan for efficient extracellular replication. [Journal Article, Research Support, Non-U.S. Gov't]</span><br/><span class="source" title="PLoS pathogens">PLoS Pathog 2009 Oct; 5(10):e1000643.</span><br/> <a href="http://www.unboundmedicine.com/medline/ebm/record/19876387/abstract/Mycobacteria_exploit_host_hyaluronan_for_efficient_extracellular_replication_">Abstract</a> | <a href="http://www.unboundmedicine.com/medline/ebm/record/19876387/full_citation/Mycobacteria_exploit_host_hyaluronan_for_efficient_extracellular_replication_">Full Citation</a> | <a rel="nofollow" href="http://www.unboundmedicine.com/medline/ebm/related/19876387/Mycobacteria_exploit_host_hyaluronan_for_efficient_extracellular_replication_">Find Related Articles</a> </description></item></channel></rss>