scholarly article | Q13442814 |
P50 | author | Kyle J Horning | Q86586076 |
Aaron B. Bowman | Q37830327 | ||
Michael Aschner | Q64778814 | ||
P2093 | author name string | K Grace Tipps | |
Samuel W Caito | |||
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Parkinson's disease-linked human PARK9/ATP13A2 maintains zinc homeostasis and promotes α-Synuclein externalization via exosomes | Q27932080 | ||
Alpha-synuclein is part of a diverse and highly conserved interaction network that includes PARK9 and manganese toxicity | Q27934988 | ||
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PARK9-associated ATP13A2 localizes to intracellular acidic vesicles and regulates cation homeostasis and neuronal integrity | Q28117134 | ||
ATP13A2 (PARK9) polymorphisms influence the neurotoxic effects of manganese | Q28118761 | ||
Dietary reference intakes: vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium, and zinc | Q28206868 | ||
HIP14, a novel ankyrin domain-containing protein, links huntingtin to intracellular trafficking and endocytosis | Q28209859 | ||
TNF alpha potentiates glutamate neurotoxicity by inhibiting glutamate uptake in organotypic brain slice cultures: neuroprotection by NF kappa B inhibition | Q28235171 | ||
Cloning and characterization of a mammalian proton-coupled metal-ion transporter | Q28245045 | ||
The iron transporter ferroportin can also function as a manganese exporter | Q28255643 | ||
SPCA1 pumps and Hailey-Hailey disease | Q28279651 | ||
Manganese exposure inhibits the clearance of extracellular GABA and influences taurine homeostasis in the striatum of developing rats | Q28384350 | ||
Manganese in human parenteral nutrition: considerations for toxicity and biomonitoring | Q28385116 | ||
In vivo measurement of brain GABA concentrations by magnetic resonance spectroscopy in smelters occupationally exposed to manganese | Q28386303 | ||
Intranasal exposure to manganese disrupts neurotransmitter release from glutamatergic synapses in the central nervous system in vivo | Q28388204 | ||
Increased APLP1 expression and neurodegeneration in the frontal cortex of manganese-exposed non-human primates | Q28388232 | ||
A novel manganese-dependent ATM-p53 signaling pathway is selectively impaired in patient-based neuroprogenitor and murine striatal models of Huntington's disease | Q28389607 | ||
X-ray fluorescence imaging: a new tool for studying manganese neurotoxicity | Q28391189 | ||
Brain deposition and neurotoxicity of manganese in adult mice exposed via the drinking water | Q28392759 | ||
X-ray fluorescence imaging of the hippocampal formation after manganese exposure | Q28394338 | ||
Changes in dietary iron exacerbate regional brain manganese accumulation as determined by magnetic resonance imaging | Q34601416 | ||
Altered Expression of ZnT10 in Alzheimer's Disease Brain | Q34761375 | ||
Reduced uptake of [ 18 F]FDOPA PET in asymptomatic welders with occupational manganese exposure | Q34953746 | ||
Translational control of inducible nitric oxide synthase expression by arginine can explain the arginine paradox | Q34961072 | ||
BDNF and Huntingtin protein modifications by manganese: implications for striatal medium spiny neuron pathology in manganese neurotoxicity. | Q34976214 | ||
Iron accumulates in Huntington's disease neurons: protection by deferoxamine | Q35023030 | ||
Molecular physiology of the SERCA and SPCA pumps | Q35051259 | ||
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Expression profiles for macrophage alternative activation genes in AD and in mouse models of AD | Q35090548 | ||
Identification of binding sites in Huntingtin for the Huntingtin Interacting Proteins HIP14 and HIP14L | Q35126285 | ||
Mutant Atp13a2 proteins involved in parkinsonism are degraded by ER-associated degradation and sensitize cells to ER-stress induced cell death | Q35175069 | ||
Simultaneous monitoring of cerebral metal accumulation in an experimental model of Wilson's disease by laser ablation inductively coupled plasma mass spectrometry | Q35228998 | ||
Manganese exposure alters extracellular GABA, GABA receptor and transporter protein and mRNA levels in the developing rat brain | Q35551662 | ||
Vesicular distribution of Secretory Pathway Ca2+-ATPase isoform 1 and a role in manganese detoxification in liver-derived polarized cells | Q35613955 | ||
Nramp2 is mutated in the anemic Belgrade (b) rat: evidence of a role for Nramp2 in endosomal iron transport. | Q35796864 | ||
Mutations in SLC30A10 Cause Parkinsonism and Dystonia with Hypermanganesemia, Polycythemia, and Chronic Liver Disease | Q35843237 | ||
Effect of mineral-enriched diet and medicinal herbs on Fe, Mn, Zn, and Cu uptake in chicken | Q35914330 | ||
Manganese: recent advances in understanding its transport and neurotoxicity | Q35946187 | ||
Impact of manganese on and transfer across blood-brain and blood-cerebrospinal fluid barrier in vitro. | Q36006864 | ||
Mechanistic analysis of iron accumulation by endothelial cells of the BBB | Q36062978 | ||
Manganese superoxide dismutase protects mouse cortical neurons from chronic intermittent hypoxia-mediated oxidative damage | Q36178648 | ||
Manganese-induced toxicity in normal and human B lymphocyte cell lines containing a homozygous mutation in parkin. | Q36223221 | ||
Nutritional aspects of manganese homeostasis. | Q36228729 | ||
Glutamine synthetase protects against neuronal degeneration in injured retinal tissue | Q36247136 | ||
ZIP8 is an iron and zinc transporter whose cell-surface expression is up-regulated by cellular iron loading | Q36298311 | ||
The Discrimination between Magnesium and Manganese by Serum Proteins | Q36427692 | ||
Manganese-induced potentiation of in vitro proinflammatory cytokine production by activated microglial cells is associated with persistent activation of p38 MAPK. | Q36440409 | ||
Speciation of manganese in cells and mitochondria: a search for the proximal cause of manganese neurotoxicity | Q36502181 | ||
Manganese transport via the transferrin mechanism | Q36622998 | ||
Huntingtin-interacting protein 14, a palmitoyl transferase required for exocytosis and targeting of CSP to synaptic vesicles | Q36639079 | ||
Manganese intoxication in the rhesus monkey: a clinical, imaging, pathologic, and biochemical study | Q36797290 | ||
Manganese accumulates primarily in nuclei of cultured brain cells | Q36813482 | ||
Basal ganglia intensity indices and diffusion weighted imaging in manganese-exposed welders | Q36837635 | ||
Increased risk of parkinsonism associated with welding exposure | Q36837642 | ||
Alterations in brain transition metals in Huntington disease: an evolving and intricate story | Q36838442 | ||
Iron depletion increases manganese uptake and potentiates apoptosis through ER stress | Q37164919 | ||
Arginase regulates red blood cell nitric oxide synthase and export of cardioprotective nitric oxide bioactivity | Q37173246 | ||
Ceruloplasmin alters the tissue disposition and neurotoxicity of manganese, but not its loading onto transferrin | Q37327124 | ||
Manganese disrupts astrocyte glutamine transporter expression and function | Q37372959 | ||
Cirrhosis presenting as Parkinsonism | Q37628466 | ||
Manganese flux across the blood-brain barrier. | Q37630415 | ||
Molecular identification of ancient and modern mammalian magnesium transporters | Q37638953 | ||
Golgi phosphoprotein 4 (GPP130) is a sensitive and selective cellular target of manganese exposure | Q37704540 | ||
Dopamine D2 receptor relies upon PPM/PP2C protein phosphatases to dephosphorylate huntingtin protein | Q37727587 | ||
Considerations on manganese (Mn) treatments for in vitro studies | Q37732149 | ||
Prevention of parenteral nutrition-associated liver disease: role of omega-3 fish oil. | Q37760905 | ||
A biokinetic model for manganese | Q37908559 | ||
Role of manganese in neurodegenerative diseases | Q37941268 | ||
Age-dependent decrease in glutamine synthetase expression in the hippocampal astroglia of the triple transgenic Alzheimer's disease mouse model: mechanism for deficient glutamatergic transmission? | Q38801058 | ||
Cellular manganese content is developmentally regulated in human dopaminergic neurons | Q38944860 | ||
Interleukin-6 enhances manganese accumulation in SH-SY5Y cells: implications of the up-regulation of ZIP14 and the down-regulation of ZnT10. | Q39020276 | ||
Environmental manganese compounds accumulate as Mn(II) within the Golgi apparatus of dopamine cells: relationship between speciation, subcellular distribution, and cytotoxicity. | Q39022912 | ||
Environmental Contamination and Human Exposure to Airborne Total and Respirable Manganese in Montreal | Q39115412 | ||
Suppression of ZIP8 expression is a common feature of cadmium-resistant and manganese-resistant RBL-2H3 cells. | Q39163939 | ||
Distribution of glutamine synthetase in the rat central nervous system | Q39269864 | ||
Glutamine synthetase down-regulation reduces astrocyte protection against glutamate excitotoxicity to neurons | Q39367072 | ||
Particulate matter and manganese exposures in Indianapolis, Indiana | Q39590532 | ||
A new paradigm: manganese superoxide dismutase influences the production of H2O2 in cells and thereby their biological state. | Q39682054 | ||
The SPCA1 Ca2+ pump and intracellular membrane trafficking | Q39683990 | ||
Transition metal abnormalities in progressive dementias. | Q39687509 | ||
Disease-toxicant screen reveals a neuroprotective interaction between Huntington's disease and manganese exposure | Q39785057 | ||
Silencing the SPCA1 (secretory pathway Ca2+-ATPase isoform 1) impairs Ca2+ homeostasis in the Golgi and disturbs neural polarity. | Q39793151 | ||
Evidence that TRPM7 is required for breast cancer cell proliferation. | Q39839646 | ||
The A2A adenosine receptor rescues the urea cycle deficiency of Huntington's disease by enhancing the activity of the ubiquitin-proteasome system | Q39851269 | ||
Essential trace metals in man: manganese. A study in homeostasis | Q40048107 | ||
Intrinsic mitochondrial dysfunction in ATM-deficient lymphoblastoid cells | Q40112631 | ||
Sub-cellular localization of manganese in the basal ganglia of normal and manganese-treated rats An electron spectroscopy imaging and electron energy-loss spectroscopy study | Q40164018 | ||
ZIP8, member of the solute-carrier-39 (SLC39) metal-transporter family: characterization of transporter properties | Q40287593 | ||
High levels of Mn²⁺ inhibit secretory pathway Ca²⁺/Mn²⁺-ATPase (SPCA) activity and cause Golgi fragmentation in neurons and glia | Q47325714 | ||
Plasma manganese levels in the very low birth weight infant are high in early life | Q47419011 | ||
Manganese distribution across the blood-brain barrier III. The divalent metal transporter-1 is not the major mechanism mediating brain manganese uptake. | Q47956131 | ||
L-arginine uptake, the citrulline-NO cycle and arginase II in the rat brain: an in situ hybridization study | Q48162061 | ||
Manganese (Mn) transport across the rat blood-brain barrier: saturable and transferrin-dependent transport mechanisms | Q48195948 | ||
Rapid Brain Uptake of Manganese(II) Across the Blood‐Brain Barrier | Q48246042 | ||
Whole-blood manganese levels and brain manganese accumulation in children receiving long-term home parenteral nutrition | Q48328035 | ||
Chronic parkinsonism associated with cirrhosis: a distinct subset of acquired hepatocerebral degeneration | Q48329148 | ||
Reversible Parkinsonism and T1W pallidal hyperintensities in acute liver failure | Q48415642 | ||
Mn2+ exerts stronger structural effects than the Mn-citrate complex on the human erythrocyte membrane and molecular models | Q48419645 | ||
Nigrostriatal dopamine system dysfunction and subtle motor deficits in manganese-exposed non-human primates | Q48440122 | ||
Purification of a Multipotent Antideath Activity from Bovine Liver and Its Identification as Arginase: Nitric Oxide-Independent Inhibition of Neuronal Apoptosis | Q48455614 | ||
Relationship between blood manganese levels and children's attention, cognition, behavior, and academic performance--a nationwide cross-sectional study | Q48459248 | ||
Manganese concentration in rat brain: manganese transport from the peripheral tissues | Q48506966 | ||
Distribution of secretory pathway Ca2+ ATPase (SPCA1) in neuronal and glial cell cultures | Q48507674 | ||
Trafficking of Amino Acids between Neurons and Glia In Vivo. Effects of Inhibition of Glial Metabolism by Fluoroacetate | Q48589672 | ||
Anatomical region differences and age-related changes in copper, zinc, and manganese levels in the human brain | Q48606536 | ||
A light and electron microscopic study of the iron transporter protein DMT-1 in the monkey cerebral neocortex and hippocampus | Q48671196 | ||
Neurologic disorders due to brain manganese deposition in a jaundiced patient receiving long-term parenteral nutrition | Q48821128 | ||
Acid Fibroblast Growth Factor and Peripheral Nerve Grafts Regulate Th2 Cytokine Expression, Macrophage Activation, Polyamine Synthesis, and Neurotrophin Expression in Transected Rat Spinal Cords | Q48891043 | ||
Regional distribution of dopamine beta-hydroxylase and monoamine oxidase in the brains of rats exposed to manganese | Q48923458 | ||
Distribution of injected iron 59 and manganese 54 in hypotransferrinemic mice | Q48937155 | ||
Influence of dietary manganese on the pharmacokinetics of inhaled manganese sulfate in male CD rats | Q48952979 | ||
Manganese transport across the blood-brain barrier: relationship to iron homeostasis | Q48955117 | ||
Calcium sequestering ability of mitochondria modulates influx of calcium through glutamate receptor channel | Q49093603 | ||
Activity and localization of the secretory pathway Ca2+-ATPase isoform 1 (SPCA1) in different areas of the mouse brain during postnatal development. | Q49124159 | ||
Manganese induces oxidative impairment in cultured rat astrocytes. | Q50469431 | ||
An inadequate intake of manganese may favour insulin resistance in girls | Q51365516 | ||
Iron, manganese, and cobalt transport by Nramp1 (Slc11a1) and Nramp2 (Slc11a2) expressed at the plasma membrane | Q51837219 | ||
Epidemiological survey among workers exposed to manganese: effects on lung, central nervous system, and some biological indices | Q52134343 | ||
Superoxide dismutase activity and lipid peroxidation in the rat: developmental correlations affected by manganese deficiency | Q52278646 | ||
Electron paramagnetic resonance and difference ultraviolet studies of Mn2+ binding to serum transferrin | Q52379021 | ||
Manganese metabolism in rats: an improved methodology for assessing gut endogenous losses | Q52404750 | ||
Patterns of levels of biological metals in CSF differ among neurodegenerative diseases. | Q53316529 | ||
Distribution of divalent metal transporter 1 and metal transport protein 1 in the normal and Belgrade rat | Q54975411 | ||
Blood manganese levels in patients with hepatic encephalopathy | Q56775939 | ||
An estimate of the calcium content of the sarcoplasmic reticulum in rat ventricular myocytes | Q60182097 | ||
Microglial reaction in MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine) induced Parkinson's disease mice model | Q67243728 | ||
Longitudinal changes of manganese-dependent superoxide dismutase and other indexes of manganese and iron status in women | Q68076886 | ||
Identification of transferrin as the major plasma carrier protein for manganese introduced orally or intravenously or after in vitro addition in the rat | Q69386660 | ||
Manganese balance and clinical observations in young men fed a manganese-deficient diet | Q69756105 | ||
Role of dopamine in manganese neurotoxicity | Q69850146 | ||
The effect of age on manganese uptake and retention from milk and infant formulas in rats | Q70019339 | ||
Binding of manganese in human and rat plasma | Q70105307 | ||
Absence of preferential glutamine uptake into neurons--an indication of a net transfer of TCA constituents from nerve endings to astrocytes? | Q70261436 | ||
Hepatic steatosis in total parenteral nutrition: failure of fatty infiltration to correlate with abnormal serum hepatic enzyme levels | Q70307276 | ||
Inhibition of bile flow in the isolated perfused rat liver by a synthetic parenteral amino acid mixture: associated net amino acid fluxes | Q70462902 | ||
Speciation analysis of selected metals and determination of their total contents in paired serum and cerebrospinal fluid samples: An approach to investigate the permeability of the human blood-cerebrospinal fluid-barrier | Q43507231 | ||
Theoretical models of catalytic domains of protein phosphatases 1 and 2A with Zn2+ and Mn2+ metal dications and putative bioligands in their catalytic centers | Q43663957 | ||
Inhibition of the rat blood–brain barrier choline transporter by manganese chloride | Q43794678 | ||
Expression of arginase isozymes in mouse brain | Q43825253 | ||
Distribution of divalent metal transporter 1 and metal transport protein 1 in the normal and Belgrade rat. | Q43825415 | ||
Increased whole blood manganese concentrations observed in children with iron deficiency anaemia | Q43884875 | ||
The effect of individual dietary components on manganese absorption in humans | Q43908686 | ||
Impaired glutamate transport and glutamate-glutamine cycling: downstream effects of the Huntington mutation | Q44075664 | ||
Mechanisms underlying the frequency dependence of contraction and [Ca(2+)](i) transients in mouse ventricular myocytes | Q44136820 | ||
Glutamate/aspartate transporter (GLAST), taurine transporter and metallothionein mRNA levels are differentially altered in astrocytes exposed to manganese chloride, manganese phosphate or manganese sulfate | Q44184685 | ||
Glutamine synthetase enhances the clearance of extracellular glutamate by the neural retina | Q44187190 | ||
Manganese causes differential regulation of glutamate transporter (GLAST) taurine transporter and metallothionein in cultured rat astrocytes | Q44214172 | ||
Subtoxic concentration of manganese synergistically potentiates 1-methyl-4-phenylpyridinium-induced neurotoxicity in PC12 cells | Q44283395 | ||
Manganese distribution across the blood-brain barrier. I. Evidence for carrier-mediated influx of managanese citrate as well as manganese and manganese transferrin | Q44300759 | ||
Manganese distribution across the blood-brain barrier. II. Manganese efflux from the brain does not appear to be carrier mediated | Q44300763 | ||
Phenotypic variability in a dystonia family with mutations in the manganese transporter gene. | Q44434413 | ||
Arginase Reciprocally Regulates Nitric Oxide Synthase Activity and Contributes to Endothelial Dysfunction in Aging Blood Vessels | Q44601105 | ||
Mutations of the Huntington's disease protein impact on the ATM-dependent signaling and repair pathways of the radiation-induced DNA double-strand breaks: corrective effect of statins and bisphosphonates. | Q44666439 | ||
Inhibition of mitochondrial complex II alters striatal expression of genes involved in glutamatergic and dopaminergic signaling: possible implications for Huntington's disease | Q44790407 | ||
Fe-saturation and proteolysis of human lactoferrin: effect on brush-border receptor-mediated uptake of Fe and Mn. | Q44817659 | ||
Iron transporters are differentially regulated by dietary iron, and modifications are associated with changes in manganese metabolism in young pigs. | Q44877561 | ||
Anti-apoptotic and pro-apoptotic effect of NEPP11 on manganese-induced apoptosis and JNK pathway activation in PC12 cells. | Q45040732 | ||
Kinetics of manganese transport and gene expressions of manganese transport carriers in Caco-2 cell monolayers | Q45129400 | ||
Manganese potentiates in vitro production of proinflammatory cytokines and nitric oxide by microglia through a nuclear factor kappa B-dependent mechanism | Q45188778 | ||
[18F]FDOPA PET and clinical features in parkinsonism due to manganism | Q45222225 | ||
A novel isoform of the secretory pathway Ca2+,Mn(2+)-ATPase, hSPCA2, has unusual properties and is expressed in the brain | Q45242024 | ||
Hip14l-deficient mice develop neuropathological and behavioural features of Huntington disease. | Q45290323 | ||
Changes in nine enzyme markers for neurons, glia, and endothelial cells in agonal state and Huntington's disease caudate nucleus | Q45296650 | ||
Dietary arginine alters time of symptom onset in Huntington's disease transgenic mice | Q45301108 | ||
Glutamine synthetase activity in Huntington's disease. | Q45303751 | ||
Altered neuronal nitric oxide synthase expression contributes to disease progression in Huntington's disease transgenic mice | Q45306085 | ||
Increased synthesis of spermidine as a result of upregulation of arginase I promotes axonal regeneration in culture and in vivo. | Q45916523 | ||
Assessing manganese efflux using SEA0400 and cardiac T1-mapping manganese-enhanced MRI in a murine model. | Q45931776 | ||
Effect of microglia activation on dopaminergic neuronal injury induced by manganese, and its possible mechanism. | Q45969405 | ||
Brain accumulation and toxicity of Mn(II) and Mn(III) exposures. | Q45974456 | ||
Ceruloplasmin dysfunction and therapeutic potential for Parkinson disease. | Q46009075 | ||
Pathology of inherited manganese transporter deficiency | Q46134590 | ||
The secretory pathway Ca2+/Mn2+-ATPase 2 is a Golgi-localized pump with high affinity for Ca2+ ions | Q46438644 | ||
Manganese oxidation state and its implications for toxicity | Q46521122 | ||
Manganese distribution across the blood-brain barrier. IV. Evidence for brain influx through store-operated calcium channels. | Q46526917 | ||
Manganese transport by rat brain endothelial (RBE4) cell-based transwell model in the presence of astrocyte conditioned media | Q46538546 | ||
Molecular mechanism of manganese exposure-induced dopaminergic toxicity | Q46576361 | ||
Asymptomatic hypermanganesemia in long-term home parenteral nutrition patients | Q46599688 | ||
Manganese absorption from human milk, cow's milk, and infant formulas in humans | Q46683636 | ||
Characteristics of manganese (Mn) transport in rat brain endothelial (RBE4) cells, an in vitro model of the blood-brain barrier | Q46708505 | ||
Measuring brain manganese and iron accumulation in rats following 14 weeks of low-dose manganese treatment using atomic absorption spectroscopy and magnetic resonance imaging | Q46782343 | ||
Follow-up of patients affected by manganese-induced Parkinsonism after treatment with CaNa2EDTA. | Q46791984 | ||
Manganese species from human serum, cerebrospinal fluid analyzed by size exclusion chromatography-, capillary electrophoresis coupled to inductively coupled plasma mass spectrometry. | Q46881571 | ||
Manganese concentrations in maternal-infant blood and birth weight | Q47186119 | ||
Dietary calcium and manganese effects on menstrual cycle symptoms | Q70728788 | ||
In vivo intestinal absorption of manganese in the rat | Q71147454 | ||
Binding of manganese and transferrin in rat serum | Q71617945 | ||
Manganese-induced oxidative DNA damage in neuronal SH-SY5Y cells: Attenuation of thymine base lesions by glutathione and N-acetylcysteine | Q28396499 | ||
APLP1, Alzheimer's-like pathology and neurodegeneration in the frontal cortex of manganese-exposed non-human primates | Q28396938 | ||
Metallomic profiling and linkage map analysis of early Parkinson's disease: a new insight to aluminum marker for the possible diagnosis | Q28474584 | ||
Dysregulation of C/EBPalpha by mutant Huntingtin causes the urea cycle deficiency in Huntington's disease | Q28505492 | ||
Manganese intoxication decreases the expression of manganoproteins in the rat basal ganglia: an immunohistochemical study | Q28564327 | ||
Reducing arginase activity via dietary manganese deficiency enhances endothelium-dependent vasorelaxation of rat aorta | Q28579218 | ||
Intracellular localization and subsequent redistribution of metal transporters in a rat choroid plexus model following exposure to manganese or iron | Q28579788 | ||
Iron deficient and manganese supplemented diets alter metals and transporters in the developing rat brain | Q28581267 | ||
The expression, activity and localisation of the secretory pathway Ca2+ -ATPase (SPCA1) in different mammalian tissues | Q28582924 | ||
Arginase 1 regulation of nitric oxide production is key to survival of trophic factor-deprived motor neurons | Q28584077 | ||
Null mutation in the gene encoding plasma membrane Ca2+-ATPase isoform 2 impairs calcium transport into milk | Q28589621 | ||
Neurodegeneration, myocardial injury, and perinatal death in mitochondrial superoxide dismutase-deficient mice | Q28592978 | ||
Enhanced Phosphorylation of p53 by ATM in Response to DNA Damage | Q28609838 | ||
SLC30A10 is a cell surface-localized manganese efflux transporter, and parkinsonism-causing mutations block its intracellular trafficking and efflux activity | Q28910400 | ||
Translocation of inhaled ultrafine manganese oxide particles to the central nervous system | Q29615577 | ||
Altered palmitoylation and neuropathological deficits in mice lacking HIP14. | Q30462477 | ||
Reduction of oxidative stress, amyloid deposition, and memory deficit by manganese superoxide dismutase overexpression in a transgenic mouse model of Alzheimer's disease | Q30489145 | ||
Pharmacokinetic data needs to support risk assessments for inhaled and ingested manganese. | Q30578660 | ||
Purification and characterization of ATM from human placenta. A manganese-dependent, wortmannin-sensitive serine/threonine protein kinase | Q30845708 | ||
SMF-1, SMF-2 and SMF-3 DMT1 orthologues regulate and are regulated differentially by manganese levels in C. elegans | Q30895194 | ||
Manganese toxicity upon overexposure | Q30979177 | ||
Cloning and functional expression of human short TRP7, a candidate protein for store-operated Ca2+ influx. | Q31035888 | ||
Application of pharmacokinetic data to the risk assessment of inhaled manganese | Q31038385 | ||
Molecular cloning and tissue distribution of alternatively spliced mRNAs encoding possible mammalian homologues of the yeast secretory pathway calcium pump | Q31171355 | ||
Welding-related parkinsonism: clinical features, treatment, and pathophysiology | Q31810965 | ||
Mice with a partial deficiency of manganese superoxide dismutase show increased vulnerability to the mitochondrial toxins malonate, 3-nitropropionic acid, and MPTP. | Q31848128 | ||
Dietary Standards for Manganese: Overlap between Nutritional and Toxicological Studies , | Q32111253 | ||
Maternal blood manganese level and birth weight: a MOCEH birth cohort study | Q33576767 | ||
Synergistic dopaminergic neurotoxicity of manganese and lipopolysaccharide: differential involvement of microglia and astroglia | Q33601778 | ||
Nutritional aspects of manganese from experimental studies. | Q33673068 | ||
Functional properties of human ferroportin, a cellular iron exporter reactive also with cobalt and zinc | Q33702877 | ||
Probing the metal-homeostatis effects of the administration of chromium(vi) to mice by ICP MS and size-exclusion chromatography-ICP MS. | Q33745287 | ||
Three-dimensional elemental bio-imaging of Fe, Zn, Cu, Mn and P in a 6-hydroxydopamine lesioned mouse brain | Q33745298 | ||
Manganese-induced trafficking and turnover of the cis-Golgi glycoprotein GPP130. | Q33761520 | ||
Rat brain endothelial cells are a target of manganese toxicity | Q33770822 | ||
Pyruvate carboxylase deficiency: clinical and biochemical response to anaplerotic diet therapy | Q33985896 | ||
Homeostatic and toxic mechanisms regulating manganese uptake, retention, and elimination | Q33995229 | ||
Altered manganese homeostasis and manganese toxicity in a Huntington's disease striatal cell model are not explained by defects in the iron transport system. | Q34071987 | ||
ATM Activation by Oxidative Stress | Q34145092 | ||
Cycling of early Golgi proteins via the cell surface and endosomes upon lumenal pH disruption | Q34145523 | ||
Wild-type HTT modulates the enzymatic activity of the neuronal palmitoyl transferase HIP14. | Q34189409 | ||
Regulation of Intracellular Manganese Homeostasis by Kufor-Rakeb Syndrome-associated ATP13A2 Protein | Q34197130 | ||
In vivo manganese exposure modulates Erk, Akt and Darpp-32 in the striatum of developing rats, and impairs their motor function | Q34200391 | ||
Essential Nutrients for Bone Health and a Review of their Availability in the Average North American Diet | Q34270082 | ||
The excretion of trace metals in human sweat | Q34272188 | ||
Manganese modulation of MAPK pathways: effects on upstream mitogen activated protein kinase kinases and mitogen activated kinase phosphatase-1 in microglial cells | Q34367745 | ||
Intrinsic mitochondrial DNA repair defects in Ataxia Telangiectasia. | Q34392155 | ||
Block of TRPC5 channels by 2-aminoethoxydiphenyl borate: a differential, extracellular and voltage-dependent effect | Q34408366 | ||
The role of mitochondrial dysfunction and neuronal nitric oxide in animal models of neurodegenerative diseases | Q34440280 | ||
Identification of a gain-of-function mutation in a Golgi P-type ATPase that enhances Mn2+ efflux and protects against toxicity. | Q34490557 | ||
Glucosamine, chondroitin, and manganese ascorbate for degenerative joint disease of the knee or low back: a randomized, double-blind, placebo-controlled pilot study. | Q34502483 | ||
Manganese induces oligomerization to promote down-regulation of the intracellular trafficking receptor used by Shiga toxin | Q34504082 | ||
Efficacy of a combination of FCHG49 glucosamine hydrochloride, TRH122 low molecular weight sodium chondroitin sulfate and manganese ascorbate in the management of knee osteoarthritis | Q34510491 | ||
Protein serine/threonine phosphatase-1 dephosphorylates p53 at Ser-15 and Ser-37 to modulate its transcriptional and apoptotic activities. | Q40311425 | ||
Dissection of the functional differences between human secretory pathway Ca2+/Mn2+-ATPase (SPCA) 1 and 2 isoenzymes by steady-state and transient kinetic analyses. | Q40342843 | ||
Trace elements in nutrition for premature infants. | Q40544811 | ||
Parkin attenuates manganese-induced dopaminergic cell death | Q40547152 | ||
Nutritional aspects of soy formula | Q40582679 | ||
Molecular and functional characterization of the melastatin-related cation channel TRPM3. | Q40658876 | ||
ATP activates ataxia-telangiectasia mutated (ATM) in vitro. Importance of autophosphorylation | Q40662922 | ||
Manganese induces endoplasmic reticulum (ER) stress and activates multiple caspases in nigral dopaminergic neuronal cells, SN4741 | Q40766780 | ||
Manganese transport by Caco-2 cells | Q40969298 | ||
Mitochondrial manganese superoxide dismutase prevents neural apoptosis and reduces ischemic brain injury: suppression of peroxynitrite production, lipid peroxidation, and mitochondrial dysfunction. | Q41067625 | ||
Changes in the brain mitochondrial proteome of male Sprague-Dawley rats treated with manganese chloride | Q41166588 | ||
Higher retention of manganese in suckling than in adult rats is not due to maturational differences in manganese uptake by rat small intestine | Q41306348 | ||
Selective vulnerability of glutathione metabolism and cellular defense mechanisms in rat striatum to manganese. | Q41347591 | ||
Astrocytes and glutamate homoeostasis in Alzheimer's disease: a decrease in glutamine synthetase, but not in glutamate transporter-1, in the prefrontal cortex | Q41861166 | ||
The effect of manganese on dopamine toxicity and dopamine transporter (DAT) in control and DAT transfected HEK cells. | Q41876732 | ||
Cd2+, Mn2+, Ni2+ and Se2+ toxicity to Saccharomyces cerevisiae lacking YPK9p the orthologue of human ATP13A2 | Q41899742 | ||
Changes in the striatal proteome of YAC128Q mice exhibit gene-environment interactions between mutant huntingtin and manganese | Q42070989 | ||
Distribution of divalent metal transporter-1 in the monkey basal ganglia | Q42467966 | ||
Heterogeneity in the distribution and morphology of microglia in the normal adult mouse brain | Q42477525 | ||
Regional cerebral metabolism in mouse under chronic manganese exposure: Implications for Manganism | Q42497826 | ||
Manganese-exposed developing rats display motor deficits and striatal oxidative stress that are reversed by Trolox | Q42520354 | ||
Loss of the Atp2c1 secretory pathway Ca(2+)-ATPase (SPCA1) in mice causes Golgi stress, apoptosis, and midgestational death in homozygous embryos and squamous cell tumors in adult heterozygotes | Q42624776 | ||
KHSRP participates in manganese-induced neurotoxicity in rat striatum and PC12 cells | Q42704822 | ||
Postnatal manganese exposure alters the expression of D2L and D2S receptor isoforms: relationship to PKA activity and Akt levels. | Q42743103 | ||
Acute effects of moderate and strenuous running on trace element distribution in the brain, liver, and spleen of trained rats | Q42757449 | ||
Manganese and calcium efflux kinetics in brain mitochondria. Relevance to manganese toxicity | Q42793706 | ||
Manganese induces tau hyperphosphorylation through the activation of ERK MAPK pathway in PC12 cells | Q42862131 | ||
Calorimetric studies on the tight binding metal interactions of Escherichia coli manganese superoxide dismutase. | Q43015446 | ||
Parkin regulates metal transport via proteasomal degradation of the 1B isoforms of divalent metal transporter 1. | Q43188522 | ||
Potentiation of neurotoxicity of Lathyrus sativus by manganese: alterations in blood-brain barrier permeability | Q43271991 | ||
High extracellular glutamate modulates expression of glutamate transporters and glutamine synthetase in cultured astrocytes | Q43281304 | ||
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 71-108 | |
P577 | publication date | 2015-05-13 | |
P13046 | publication type of scholarly work | review article | Q7318358 |
P1433 | published in | Annual Review of Nutrition | Q4769675 |
P1476 | title | Manganese Is Essential for Neuronal Health | |
P478 | volume | 35 |
Q28067566 | "Manganese-induced neurotoxicity: a review of its behavioral consequences and neuroprotective strategies" |
Q90631962 | Acute manganese treatment restores defective autophagic cargo loading in Huntington's disease cell lines |
Q33790301 | Behavioral Phenotyping and Pathological Indicators of Parkinson's Disease in C. elegans Models |
Q90437113 | Brain Manganese and the Balance between Essential Roles and Neurotoxicity |
Q37077735 | Child Intelligence and Reductions in Water Arsenic and Manganese: A Two-Year Follow-up Study in Bangladesh |
Q38915163 | Coherent and Contradictory Facts, Feats and Fictions Associated with Metal Accumulation in Parkinson's Disease: Epicenter or Outcome, Yet a Demigod Question |
Q99605500 | Correlation between Elemental Composition/Mobility and Skin Cell Proliferation of Fibrous Nanoclay/Spring Water Hydrogels |
Q39419474 | Drosophila melanogaster Models of Metal-Related Human Diseases and Metal Toxicity |
Q40185511 | Effect of Dietary Minerals on Virulence Attributes of Vibrio cholerae |
Q35908873 | Effect of olfactory manganese exposure on anxiety-related behavior in a mouse model of iron overload hemochromatosis |
Q64912727 | Effects of manganese on maturation of porcine oocytes in vitro and their subsequent embryo development after parthenogenetic activation and somatic cell nuclear transfer. |
Q98771484 | Emerging Adjuvants for Cancer Immunotherapy |
Q91685806 | Ferroportin disease mutations influence manganese accumulation and cytotoxicity |
Q49911999 | Functional analysis of SLC39A8 mutations and their implications for manganese deficiency and mitochondrial disorders |
Q90220019 | Huntington's disease associated resistance to Mn neurotoxicity is neurodevelopmental stage and neuronal lineage dependent |
Q89664113 | Identification of a selective manganese ionophore that enables nonlethal quantification of cellular manganese |
Q39377457 | Influence of iron metabolism on manganese transport and toxicity |
Q89464218 | Intestine-specific deletion of metal transporter Zip14 (Slc39a14) causes brain manganese overload and locomotor defects of manganism |
Q50538693 | Lead and manganese levels in serum and erythrocytes in Alzheimer's disease and mild cognitive impairment: results from the Australian Imaging, Biomarkers and Lifestyle Flagship Study of Ageing |
Q94563201 | Manganese Neurotoxicity as a Complication of Chronic Total Parenteral Nutrition |
Q53331355 | Manganese Provision in Parenteral Nutrition: An Update |
Q64785759 | Manganese activates NLRP3 inflammasome signaling and propagates exosomal release of ASC in microglial cells |
Q46309597 | Manganese and the Insulin-IGF Signaling Network in Huntington's Disease and Other Neurodegenerative Disorders |
Q38702403 | Manganese exposure induces neuroinflammation by impairing mitochondrial dynamics in astrocytes. |
Q98665173 | Manganese is critical for antitumor immune responses via cGAS-STING and improves the efficacy of clinical immunotherapy |
Q92309827 | Manganese promotes the aggregation and prion-like cell-to-cell exosomal transmission of α-synuclein |
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Q47198338 | Metal Transporter Zip14 (Slc39a14) Deletion in Mice Increases Manganese Deposition and Produces Neurotoxic Signatures and Diminished Motor Activity |
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Q99596103 | Methionine-Mediated Protein Phosphatase 2A Catalytic Subunit (PP2Ac) Methylation Ameliorates the Tauopathy Induced by Manganese in Cell and Animal Models |
Q28397503 | Mutation in HFE gene decreases manganese accumulation and oxidative stress in the brain after olfactory manganese exposure |
Q57649750 | Neurotoxicity Linked to Dysfunctional Metal Ion Homeostasis and Xenobiotic Metal Exposure: Redox Signaling and Oxidative Stress |
Q92582115 | Nutritional quality of almond, canarium, cashew and pistachio and their oil photooxidative stability |
Q38695652 | Phosphatidylinositol 3 kinase (PI3K) modulates manganese homeostasis and manganese-induced cell signaling in a murine striatal cell line |
Q98159349 | Physical, nutritional, and sensory quality of rice-based biscuits fortified with safou (Dacryodes edulis) fruit powder |
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Q47367874 | Quercetin Improves Neurobehavioral Performance Through Restoration of Brain Antioxidant Status and Acetylcholinesterase Activity in Manganese-Treated Rats |
Q36941348 | RETRACTED ARTICLE: Acute Toxicity and Gastroprotection Studies of a New Schiff Base Derived Manganese (II) Complex against HCl/Ethanol-Induced Gastric Ulcerations in Rats |
Q38954727 | Reduced bioavailable manganese causes striatal urea cycle pathology in Huntington's disease mouse model |
Q39247515 | Relationships Between Essential Manganese Biology and Manganese Toxicity in Neurological Disease |
Q90392553 | Role of Astrocytes in Manganese Neurotoxicity Revisited |
Q39043644 | Role of neurotoxicants and traumatic brain injury in α-synuclein protein misfolding and aggregation. |
Q57051010 | SLC30A10 mutation involved in parkinsonism results in manganese accumulation within nano-vesicles of the Golgi apparatus |
Q50043374 | SLC39A14 deficiency alters manganese homeostasis and excretion resulting in brain manganese accumulation and motor deficits in mice. |
Q48583701 | SLC39A8 deficiency: biochemical correction and major clinical improvement by manganese therapy |
Q91863777 | Small Molecule Modifiers of In Vitro Manganese Transport Alter Toxicity In Vivo |
Q42497191 | Sodium P-Aminosalicylic Acid Improved Manganese-Induced Learning and Memory Dysfunction via Restoring the Ultrastructural Alterations and γ-Aminobutyric Acid Metabolism Imbalance in the Basal Ganglia |
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Q89920032 | The Effect of Sheep and Cow Milk Supplementation of a Low Calcium Diet on the Distribution of Macro and Trace Minerals in the Organs of Weanling Rats |
Q52879614 | The Impact of Environmental Mn Exposure on Insect Biology |
Q51746431 | The Multiple Faces of the Metal Transporter ZIP14 (SLC39A14). |
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Q98205390 | The schizophrenia risk locus in SLC39A8 alters brain metal transport and plasma glycosylation |
Q38992803 | UHPLC-Q-TOF/MS based plasma metabolomics reveals the metabolic perturbations by manganese exposure in rat models |
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Q40141578 | Zebrafish slc30a10 deficiency revealed a novel compensatory mechanism of Atp2c1 in maintaining manganese homeostasis |
Q42492256 | p73 gene in dopaminergic neurons is highly susceptible to manganese neurotoxicity |
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