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Targeting Free Radicals in Oxidative Stress-Related Human Diseases.

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TLDR
Metal chelation, based on the application of selective metal chelators or metal delivery, may induce neuroprotective signaling and represents a promising therapeutic strategy in cancer and AD.
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Cholinesterase Inhibitors in Alzheimer's Disease

TL;DR: Data indicate that aminoacridines, as a class of compounds, have a statistically significant effect to diminish, slightly, some of the cognitive symptoms of Alzheimer's Disease, and encourage the use of drugs that will reverse multiple neurotransmitter deficits.
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Bioactive compounds and bioactivities of ginger (zingiber officinale roscoe)

TL;DR: It is hoped that this updated review paper will attract more attention to ginger and its further applications, including its potential to be developed into functional foods or nutraceuticals for the prevention and management of chronic diseases.
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Oxidative stress and diabetic retinopathy: Molecular mechanisms, pathogenetic role and therapeutic implications.

TL;DR: The abnormalities correlated with oxidative stress provide multiple potential therapeutic targets to develop safe and effective treatments for diabetic retinopathy and are summarized.
Journal ArticleDOI

Iron homeostasis and iron-regulated ROS in cell death, senescence and human diseases

TL;DR: Understanding the spatiotemporal availability of iron and the role of iron in generating ROS will provide clues for the suppression of ROS and cytotoxic redox-active iron and enable us to find novel therapeutic targets for various diseases.
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Journal ArticleDOI

Prediction of individual response to anticancer therapy: historical and future perspectives.

TL;DR: Different currently used chemosensitivity assays including 2D and 3D cell culture models and several –omics approaches for the discovery of predictive biomarkers are presented and the potential of these assays and biomarkers to predict the clinical outcome of individual patients and future perspectives are discussed.
Journal ArticleDOI

Identifying, By First-Principles Simulations, Cu[Amyloid-β] Species Making Fenton-Type Reactions in Alzheimer’s Disease

TL;DR: The study gives a rationale for the Fenton-type reactivity of Cu-Aβ and how dimeric Cu(I)-Aβ could lead to a higher reactivity, which opens a new therapeutic angle of attack against Cu- aβ-based reactive oxygen species production.
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Involvement of reactive oxygen species in 2-methoxyestradiol-induced apoptosis in human neuroblastoma cells

TL;DR: 2-methoxyestradiol inhibited the proliferation and induced apoptosis in human neuroblastoma SK-N-SH and SH-SY5Y cells and suggested that oxidative stress plays an important role in 2-ME-induced apoptotic death of human Neuroblastoma cells.
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7-Methoxytacrine-p-Anisidine Hybrids as Novel Dual Binding Site Acetylcholinesterase Inhibitors for Alzheimer’s Disease Treatment

TL;DR: Following the multi-target directed ligands (MTDLs) strategy, the synthesis, biological evaluation and docking studies for novel 7-methoxytacrine-p-anisidine hybrids designed to purposely target both cholinesterases and the amyloid cascade proved to be effective non-specific cholinersterase inhibitors showing non-competitive AChE inhibition patterns.
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Dual targeting of the thioredoxin and glutathione antioxidant systems in malignant B cells: a novel synergistic therapeutic approach.

TL;DR: It is suggested that AUR+BSO synergistically induces malignant B-cell death, a process mediated by dual inhibition of TrxR and NF-κB, and such an approach warrants further investigation in B- cell malignancies.
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