Advances in Bioscience and Biotechnology

Advances in Bioscience and Biotechnology

ISSN Print: 2156-8456
ISSN Online: 2156-8502
www.scirp.org/journal/abb
E-mail: abb@scirp.org
"The chemical mechanism of oxidative stress due to the non-transferrin-bound iron (NTBI)"
written by Yuzo Nishida,
published by Advances in Bioscience and Biotechnology, Vol.3 No.7A, 2012
has been cited by the following article(s):
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[1] Systematic identification of regulators of oxidative stress reveals non-canonical roles for peroxisomal import and the pentose phosphate pathway
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[2] ToF-SIMS mediated analysis of human lung tissue reveals increased iron deposition in COPD (GOLD IV) patients
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[3] A novel, nontoxic iron chelator, super-polyphenol, effectively induces apoptosis in human cancer cell lines
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[4] Iron-mediated oxidative cell death is a potential contributor to neuronal dysfunction induced by neonatal hemolytic hyperbilirubinemia
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[5] Current insights on the role of iron and copper dyshomeostasis in the pathogenesis of bilirubin neurotoxicity.
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[6] Current insights on the role of iron and copper dyshomeostasis in the pathogenesis of bilirubin neurotoxicity
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[7] 鉄代謝異常の解明に向けて~ 新たな創薬のターゲット~
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[8] 鉄化合物の構造予測と発ガン性
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[9] Abnormal iron accumulation in brain and new iron chelator for labile iron removal therapy
International Journal of Chemistry, 2015
[10] IRON CHELATORS FOR LABILE IRON REMOVAL THERAPY AND ENHANCEMENT OF LONGEVITY
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[11] Investigated and available therapeutic options for treating aceruloplasminemia
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[12] PROTECTIVE EFFECTS OF HYDROGEN MOLECULE AND LABILE IRON REMOVAL THERAPY AGAINST NEPHROTOXICITY BY CIS-PLATIN
2015
[13] New Insight into Toxicity due to Oligomeric Amyloid-[Beta] Peptide and Alpha-Synuclein Protein induced by Copper (II) ion
International Journal of Chemistry, 2015
[14] Abnormal Iron Accumulation in Brain and New Iron Chelator for Labile Iron Removal Theraphy
International Journal of Chemistry, 2015
[15] New Insight into Toxicity due to Oligomeric Amyloid-b Peptide and Alpha-Synuclein Protein induced by Copper (II) ion
International Journal of Chemistry, 2014
[16] Model Reactions for the Formation of Iron Deposition
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