نتایج جستجو برای: probably iron nanoparticles with impaired cellular oxidative pathways

تعداد نتایج: 9600514  

تصدیقی, امیرمحمد, شکرزاده, محمد, شکی, فاطمه, مدانلو, منا,

Background and purpose: Copper is a trace element that is used in various industries. Copper nano-particles are being used in different skin care products, lubricants, oils, polymers, metal covers, plastics, inks, etc. Previous studies have shown that both copper sulfate and copper nano-particles can induce cellular genotoxicity and DNA damage. So, this study aimed at evaluating and comparing g...

Journal: :Acta biochimica Polonica 2003
Marcin Kruszewski Teresa Iwaneńko

Labile iron pool (LIP) constitutes a crossroad of metabolic pathways of iron-containing compounds and is midway between the cellular need for iron, its uptake and storage. In this study we investigated oxidative DNA damage in relation to the labile iron pool in a pair of mouse lymphoma L5178Y (LY) sublines (LY-R and LY-S) differing in sensitivity to hydrogen peroxide. The LY-R cells, which are ...

2017
Jose Luis Martin-Ventura Raquel Rodrigues-Diez Diego Martinez-Lopez Mercedes Salaices Luis Miguel Blanco-Colio Ana M. Briones

Atherothrombosis remains one of the main causes of morbidity and mortality worldwide. The underlying pathology is a chronic pathological vascular remodeling of the arterial wall involving several pathways, including oxidative stress. Cellular and animal studies have provided compelling evidence of the direct role of oxidative stress in atherothrombosis, but such a relationship is not clearly es...

Journal: :Environmental science. Nano 2021

The dynamic interplay between toxicity pathways (oxidative stress, calcium disturbances, genetic damage) caused by nanoparticles and the repair mechanisms of inhibition cell division induction death is explored in zebrafish embryo cells.

Superparamagnetic iron oxide nanoparticles (SPIONs) have made extensive advances in nanotechnology. The unique properties of these particles have expanded their application in various fields, including medicine. One of these applications is non-invasive analysis for cell tracking. However, the possibility of toxicity in cells is reported by these nanoparticles. Due to the fact that cellular dam...

2016
Xueliang Liu Paola A. Lopez Tobias W. Giessen Michael Giles Jeffrey C. Way Pamela A. Silver

Genetically encoding the synthesis of functional nanomaterials such as magnetic nanoparticles enables sensitive and non-invasive biological sensing and control. Via directed evolution of the natural iron-sequestering ferritin protein, we discovered key mutations that lead to significantly enhanced cellular magnetism, resulting in increased physical attraction of ferritin-expressing cells to mag...

Journal: :Journal of biochemistry and molecular biology 2007
Kyung-Suk Kim Yu-Jung Chang Yun-Jo Chung Chung-Ung Park Hyang-Yim Seo

Our heterologous expression system of the human ferritin H-chain gene (hfH) allowed us to characterize the cellular effects of ferritin in yeasts. The recombinant Saccharomyces cerevisiae (YGH2) evidenced impaired growth as compared to the control, which was correlated with ferritin expression and with the formation of core minerals. Growth was recovered via the administration of iron supplemen...

Journal: :Frontiers in bioscience : a journal and virtual library 2008
Ambreena Siddiq Leila R Aminova Rajiv R Ratan

Most homeostatic processes including gene transcription occur as a result of deviations in physiological tone that threatens the survival of the organism. A prototypical homeostatic stress response includes changes in gene expression following alterations in oxygen, iron or 2-oxoglutarate levels. Each of these cofactors plays an important role in cellular metabolism. Accordingly, a family of en...

Journal: :Neuro-Signals 2005
Silvia A Mandel Yael Avramovich-Tirosh Lydia Reznichenko Hailin Zheng Orly Weinreb Tamar Amit Moussa B H Youdim

Many lines of evidence suggest that oxidative stress resulting in reactive oxygen species (ROS) generation and inflammation play a pivotal role in the age-associated cognitive decline and neuronal loss in neurodegenerative diseases including Alzheimer's (AD), Parkinson's (PD) and Huntington's diseases. One cardinal chemical pathology observed in these disorders is the accumulation of iron at si...

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