scholarly article | Q13442814 |
P356 | DOI | 10.1152/AJPCELL.00409.2006 |
P8608 | Fatcat ID | release_jewnxq4lunel3pbci4qvnczyim |
P698 | PubMed publication ID | 17108009 |
P50 | author | Nadine Dragin | Q55174957 |
P2093 | author name string | Daniel W Nebert | |
Lei He | |||
Bin Wang | |||
Manoocher Soleimani | |||
Marian L Miller | |||
Keith F Stringer | |||
Scott N Schneider | |||
Timothy P Dalton | |||
Douglas D Richardson | |||
Kuppuswami Girijashanker | |||
P2860 | cites work | Molecular and cellular mechanisms of cadmium carcinogenesis | Q23918413 |
Cadmium transport by human Nramp 2 expressed in Xenopus laevis oocytes | Q24298629 | ||
Intestinal expression of genes involved in iron absorption in humans | Q28207675 | ||
Refining the mouse chromosomal location of Cdm, the major gene associated with susceptibility to cadmium-induced testicular necrosis | Q28376566 | ||
Toward the evaluation of function in genetic variability: characterizing human SNP frequencies and establishing BAC-transgenic mice carrying the human CYP1A1_CYP1A2 locus | Q28510807 | ||
Identification of mouse SLC39A8 as the transporter responsible for cadmium-induced toxicity in the testis | Q28589274 | ||
BAC to the future: the use of bac transgenic mice for neuroscience research | Q34457226 | ||
Cadmium overload and toxicity | Q34571193 | ||
An oncological view on the blood-testis barrier. | Q34727714 | ||
Molecular handling of cadmium in transporting epithelia | Q35079295 | ||
Making better transgenic models: conditional, temporal, and spatial approaches | Q36033899 | ||
Molecular and ionic mimicry and the transport of toxic metals. | Q36104172 | ||
Barrier properties of testis microvessels | Q36688328 | ||
Endotoxin-tobramycin additive toxicity on renal proximal tubular cells in culture | Q36752917 | ||
ZIP8, member of the solute-carrier-39 (SLC39) metal-transporter family: characterization of transporter properties | Q40287593 | ||
Transport of N-acetylcysteine s-conjugates of methylmercury in Madin-Darby canine kidney cells stably transfected with human isoform of organic anion transporter 1. | Q40419029 | ||
Formation of Adenosine Cyclic 3′,5′-Phosphate by Nonproliferating Cells and Cell-free Extract of Brevibacterium liquefaciens | Q40435488 | ||
Development of a priority list of chemical mixtures occurring at 1188 hazardous waste sites, using the HazDat database | Q41445917 | ||
Targeted knockout of Cyp1a1 gene does not alter hepatic constitutive expression of other genes in the mouse [Ah] battery | Q42481869 | ||
Different transport mechanisms for cadmium and mercury in Caco-2 cells: inhibition of Cd uptake by Hg without evidence for reciprocal effects | Q44448369 | ||
Inhibition of renal Na+/H+ exchange in cadmium-intoxicated rats | Q46395265 | ||
Speciation of cationic selenium compounds in Brassica juncea leaves by strong cation-exchange chromatography with inductively coupled plasma mass spectrometry | Q46730840 | ||
Changes in blood flow and vascular permeability of the testis, epididymis and accessory reproductive organs of the rat after the administration of cadmium chloride. | Q51238076 | ||
Contribution of cigarette smoking to cadmium accumulation in man. | Q52993743 | ||
Universal, robust, highly quantitative SNP allele frequency measurement in DNA pools. | Q53668847 | ||
Effect of heavy metals on, and handling by, the kidney. | Q55040327 | ||
P433 | issue | 4 | |
P921 | main subject | cadmium | Q1091 |
Solute carrier family 39 (metal ion transporter), member 8 | Q21991429 | ||
P304 | page(s) | C1523-35 | |
P577 | publication date | 2006-11-15 | |
P1433 | published in | American Journal of Physiology - Cell Physiology | Q2227080 |
P1476 | title | Enhanced cadmium-induced testicular necrosis and renal proximal tubule damage caused by gene-dose increase in a Slc39a8-transgenic mouse line | |
P478 | volume | 292 |
Q37623717 | A blood pressure-associated variant of the SLC39A8 gene influences cellular cadmium accumulation and toxicity |
Q28396021 | Accumulation of cadmium in insulin-producing β cells |
Q23922004 | Cadmium concentrations in blood and seminal plasma: correlations with sperm number and motility in three male populations (infertility patients, artificial insemination donors, and unselected volunteers) |
Q33584117 | Cadmium-induced testicular injury |
Q36402067 | Cd2+ versus Zn2+ uptake by the ZIP8 HCO3--dependent symporter: kinetics, electrogenicity and trafficking |
Q33755252 | Chronic Kidney Disease and Exposure to Nephrotoxic Metals |
Q34760221 | Comparing gene expression during cadmium uptake and distribution: untreated versus oral Cd-treated wild-type and ZIP14 knockout mice. |
Q28392436 | Discovery of ZIP transporters that participate in cadmium damage to testis and kidney |
Q36280451 | Functional studies of Drosophila zinc transporters reveal the mechanism for zinc excretion in Malpighian tubules |
Q35104437 | Generation of a Slc39a8 hypomorph mouse: markedly decreased ZIP8 Zn²⁺/(HCO₃⁻)₂ transporter expression |
Q42750865 | Genetic background of resistance to cadmium-induced testicular toxicity in inbred Wistar-Imamichi rats |
Q89175111 | Hepatic ZIP8 deficiency is associated with disrupted selenium homeostasis, liver pathology, and tumor formation |
Q39555348 | High sensitivity of RBL-2H3 cells to cadmium and manganese: an implication of the role of ZIP8. |
Q60670850 | In utero gene expression in the Slc39a8(neo/neo) knockdown mouse |
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Q23911202 | Manganese accumulation in the mouse ear following systemic exposure |
Q35528429 | Molecular mechanisms of non-transferrin-bound and transferring-bound iron uptake in primary hippocampal neurons |
Q45088770 | Oral cadmium in mice carrying 5 versus 2 copies of the Slc39a8 gene: comparison of uptake, distribution, metal content, and toxicity |
Q28574851 | Over-expression of Zip-13 mRNA in kidney and lung during dietary zinc deficiency in Wistar rats |
Q36138755 | Physiologic implications of metal-ion transport by ZIP14 and ZIP8 |
Q33653826 | Potential mechanisms involved in the absorptive transport of cadmium in isolated perfused rabbit renal proximal tubules |
Q36377827 | Recent Positive Selection Drives the Expansion of a Schizophrenia Risk Nonsynonymous Variant at SLC39A8 in Europeans |
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Q90107258 | SLC39A8 gene encoding a metal ion transporter: discovery and bench to bedside |
Q37365534 | Slc39a14 gene encodes ZIP14, a metal/bicarbonate symporter: similarities to the ZIP8 transporter |
Q38090794 | The SLC39 family of zinc transporters. |
Q57790108 | The molecular and biochemical insight view of grape seed proanthocyanidins in ameliorating Cadmium-induced Testes-toxicity in rat model: Implication of PI3K/Akt/Nrf-2signaling |
Q36975555 | The vascular system as a target of metal toxicity |
Q35058693 | The zinc transporter Zip5 (Slc39a5) regulates intestinal zinc excretion and protects the pancreas against zinc toxicity |
Q45941439 | Therapeutic effects of date palm (Phoenix dactylifera L.) pollen extract on cadmium-induced testicular toxicity. |
Q34323944 | Tissue-Specific Induction of Mouse ZIP8 and ZIP14 Divalent Cation/Bicarbonate Symporters by, and Cytokine Response to, Inflammatory Signals |
Q55511302 | Toxicodynamics of Lead, Cadmium, Mercury and Arsenic- induced kidney toxicity and treatment strategy: A mini review. |
Q55288675 | Tubular iron deposition and iron handling proteins in human healthy kidney and chronic kidney disease. |
Q48637616 | ZIP14 and ZIP8 zinc/bicarbonate symporters in Xenopus oocytes: characterization of metal uptake and inhibition |
Q21246018 | ZIP8 expression in human proximal tubule cells, human urothelial cells transformed by Cd+2 and As+3 and in specimens of normal human urothelium and urothelial cancer |
Q36298311 | ZIP8 is an iron and zinc transporter whose cell-surface expression is up-regulated by cellular iron loading |
Q27303845 | ZIP8 zinc transporter: indispensable role for both multiple-organ organogenesis and hematopoiesis in utero |
Q91874559 | Zinc as a countermeasure for cadmium toxicity |
Q37376547 | Zinc- and bicarbonate-dependent ZIP8 transporter mediates selenite uptake |
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