| Literature DB >> 34820054 |
Vladimir Mihailovic1, Jelena S Katanic Stankovic2, Dragica Selakovic3, Gvozden Rosic3.
Abstract
Nanoparticles (NPs) are used in many products and materials for humans such as electronics, in medicine for drug delivery, as biosensors, in biotechnology, and in agriculture, as ingredients in cosmetics and food supplements. Besides that, NPs may display potentially hazardous properties on human health and the environment as a consequence of their abundant use in life nowadays. Hence, there is increased interest of researchers to provide possible therapeutic agents or dietary supplements for the amelioration of NP-induced toxicity. This review summarizes the new findings in the research of the use of antioxidants as supplements for the prevention and alleviation of harmful effects caused by exposure of organisms to NPs. Also, mechanisms involved in the formation of NP-induced oxidative stress and protective mechanisms using different antioxidant substances have also been elaborated. This review also highlights the potential of naturally occurring antioxidants for the enhancement of the antioxidant defense systems in the prevention and mitigation of organism damage caused by NP-induced oxidative stress. Based on the presented results of the most recent studies, it may be concluded that the role of antioxidants in the prevention and treatment of nanoparticle-induced toxicity is unimpeachable. This is particularly important in terms of oxidative stress suppression.Entities:
Mesh:
Substances:
Year: 2021 PMID: 34820054 PMCID: PMC8608524 DOI: 10.1155/2021/7244677
Source DB: PubMed Journal: Oxid Med Cell Longev ISSN: 1942-0994 Impact factor: 6.543
Figure 1Nanoparticle-induced oxidative stress in the cell—an outline of main events.
Plant extracts, essential oils, and phytocompounds used in antioxidant supplementation of NP-induced toxicity.
| Extract/compound | Nanoparticles | Action | Reference |
|---|---|---|---|
| Extracts and essential oils | |||
| Basil essential oil (nanoencapsulated) | IONPs | Hepatoprotection in rats | El-Nekeety et al. [ |
|
| AgNPs | Hepatoprotection in rats | Albrahim and Alonazi [ |
|
| TiO2-NPs | Hepatoprotection in rats | Shakeel et al. [ |
|
| TiO2-NPs | Increase antioxidant capacity in the liver and kidney and prevent genotoxicity and reproductive disturbances in male mice | Salman et al. [ |
|
| Hydroxyapatite NPs | Cardioprotection in rats | Alotaibi et al. [ |
|
| CaNPs | Reduce oxidative stress in brain tissue of rats as well as in liver, kidney, and testes tissues | Arsenijevic et al. [ |
|
| ZnO-NPs | Hepatoprotection in rats | Barakat [ |
|
| AgNPs |
| Hudecová et al. [ |
|
| AgNPs | Hepatoprotection in rats | Abd El-Maksoud et al. [ |
| Improved neurotoxic side effects in rats | Lebda et al. [ | ||
| Ginseng | SiO2-NPs | Reduce oxidative stress and apoptotic and inflammatory processes in rat lung | El-Sayed et al. [ |
| Grape seed extract | TiO2-NPs | Hepatoprotection in rats | Mohammed and Safwat, [ |
| Green tea extract | CuNPs | Hepatoprotection in rats | Ibrahim et al. [ |
|
| TiO2-NPs | Nephroprotection in rats | Abdou et al. [ |
|
| TiO2-NPs | Cerebroprotective effect | Kandeil et al. [ |
| CuNPs | Enhance gill and liver oxidative damage in | Noureen et al. [ | |
|
| NiO-NPs | Decrease ROS generation in human lung epithelial (A549) cells | Mohamed et al. [ |
| Pomegranate peel | AgNPs | Enhance liver and kidney damage, oxidative stress, and immunity biomarkers in Nile tilapia fish | Hamed et al. [ |
| Pomegranate juice | CuO-NPs | Reduce oxidative stress manifestations in the brain through regulation of HO-1 and Nrf2 gens | Hassanen et al. [ |
| Antioxidant, anti-inflammatory, and antiapoptotic effects in the liver and kidney of rats | Hassanen et al. [ | ||
| AgNPs | Hepatoprotection in mice | Sallam et al. [ | |
|
| IONPs | Hepatoprotection in rats | Attaran et al. [ |
| Pumpkin seed oil | Al2O3-NPs | Antioxidant protection of rats' maternal and fetal hepatic and brain tissues | Hamdi et al. [ |
|
| TiO2-NPs | Ameliorated plasma antioxidant markers in rets | Grissa et al. [ |
|
| TiO2-NPs | Enhance gill, liver and kidney oxidative damage and immunity biomarkers in Nile tilapia fish | Vineetha et al. [ |
|
| IONPs | Hepatoprotection in rats | Attaran et al. [ |
| Phytocompounds | |||
| Apigenin | NiO-NPs | Hepatorenal protection in rats | Ali et al. [ |
| Mesoporous silica nanoparticles (MSNs) | Nephroprotection in mice | Wang et al. [ | |
|
| TiO2-NPs | Cerebroprotective effect | Abdel-kareem and Ayat Domouky [ |
| Crocetin | CuO-NPs | Oxidative stress protection in HT22 cells | Niska et al. [ |
| Curcumin | NiO-NPs | Reduce oxidative stress in human HEp-2 and MCF-7 cells | Siddiqui et al. [ |
| TiO2-NPs | Reduction of ROS generation in | Sonane et al. [ | |
|
| Ryu et al. [ | ||
| ZnO-NPs | Reduction of ROS generation in | Sonane et al. [ | |
| Curcumin nanoparticles | Hydroxyapatite nanoparticles | Cardioprotection in rats | Mosa et al. [ |
| Ellagic acid | IONPs | Nephroprotection in rats | Mohammed et al. [ |
| Eugenol | TiO2-NPs | Reduce oxidative stress in different organs of rats | Wani et al. [ |
| Epigallocatechin-3-gallate | NiNPs | Reduce intracellular ROS generation and cell apoptosis in the JB6 cell line | Gu et al. [ |
| Geraniol | ZnO-NPs | Neuroprotective effect in rats | Farokhcheh et al. [ |
| Glycyrrhizic acid | TiO2-NPs | Hepatoprotection in rats | Orazizadeh et al. [ |
| Hesperidin | ZnO-NPs | Hepatoprotection in rats | Ansar et al. [ |
| Lycopene | TiO2-NPs | Reduce oxidative stress in testicular tissue of rats | Meng et al. [ |
| ZnO-NPs | Enhance gill, liver, and kidney oxidative damage in Nile tilapia fish | Abdel-Daim et al. [ | |
| Morin | TiO2-NPs | Reduce oxidative stress in testicular tissue of rats | Hussein et al. [ |
| Pterostilbene | AgNPs | Prevent oxidative stress in zebrafish embryos | Chen et al. [ |
| Resveratrol | CuO-NPs | Hepatorenal protection in rats | Khalid et al. [ |
| TiO2-NPs | Prevent testicular damage | Solaiman et al. [ | |
|
| Ryu et al. [ | ||
| ZnO-NPs | Prevent prooxidant mitochondrial damage and apoptotic and necrotic effects in zebrafish embryos | Giordo et al. [ | |
| Enhance gill, liver, and kidney oxidative damage in Nile tilapia fish | Abdel-Daim et al. [ | ||
| Rutin | TiO2-NPs | Reduce oxidative stress in testicular tissue of rats | Hussein et al. [ |
| Sesamol | Al2O3-NPs | Neuroprotective effect in rats | Abou-Zeid et al. [ |
| Silymarin | AgNPs | Hepatoprotection in Nile tilapia fish | Veisi et al. [ |
| Sulforaphane | CuO-NPs | Reduce oxidative stress in BALB C3T cells | Akhtar et al. [ |
| TiO2-NPs |
| Ryu et al. [ | |
| Tannic acid | AgNPs | Hepatorenal protection in rats | Mosa et al. [ |
| Thymol | TiO2-NPs | Protection of testicular damage | Jafari et al. [ |
| Hepatoprotection in rats | Jafari et al. [ | ||
| Quercetin | AuNPs | Hepatoprotection in rats | Abdelhalim et al. [ |
| Hepatoprotection in rats | Abdelhalim et al. [ | ||
| CuO-NPs | Reduce oxidative stress in the liver and antiapoptotic action in rats' liver | Abdelazeim et al. [ | |
| Hepatoprotection in rats | Arafa et al. [ | ||
| TiO2-NPs | Hepatoprotection in rats | Fadda et al. [ | |
| Nephroprotection in rats | Alidadi et al. [ | ||
| Protection of testicular damage | Khorsandi et al. [ | ||
| ZnO-NPs | Hepatoprotection in rats | Lotfy et al. [ |
Figure 2Plant phenolic compounds used in supplementation of nanoparticle-induced oxidative stress.
Figure 3Plant terpenoids used in supplementation of nanoparticle-induced oxidative stress.