State of Academic Knowledge on Toxicity and Biological Fate of Quantum Dots
Open Access
- 14 August 2009
- journal article
- review article
- Published by Oxford University Press (OUP) in Toxicological Sciences
- Vol. 112 (2), 276-296
- https://doi.org/10.1093/toxsci/kfp188
Abstract
Quantum dots (QDs), an important class of emerging nanomaterial, are widely anticipated to find application in many consumer and clinical products in the near future. Premarket regulatory scrutiny is, thus, an issue gaining considerable attention. Previous review papers have focused primarily on the toxicity of QDs. From the point of view of product regulation, however, parameters that determine exposure (e.g., dosage, transformation, transportation, and persistence) are just as important as inherent toxicity. We have structured our review paper according to regulatory risk assessment practices, in order to improve the utility of existing knowledge in a regulatory context. Herein, we summarize the state of academic knowledge on QDs pertaining not only to toxicity, but also their physicochemical properties, and their biological and environmental fate. We conclude this review with recommendations on how to tailor future research efforts to address the specific needs of regulators.Keywords
This publication has 55 references indexed in Scilit:
- Toxicity of CdSe Nanoparticles in Caco-2 Cell CulturesJournal of Nanobiotechnology, 2008
- Unmodified CdSe Quantum Dots Induce Elevation of Cytoplasmic Calcium Levels and Impairment of Functional Properties of Sodium Channels in Rat Primary Cultured Hippocampal NeuronsEnvironmental Health Perspectives, 2008
- The fate of MAb-targeted Cd125mTe/ZnS nanoparticles in vivoNuclear Medicine and Biology, 2008
- Quantum dots in axillary lymph node mapping: Biodistribution study in healthy miceBMC Cancer, 2008
- Renal clearance of quantum dotsNature Biotechnology, 2007
- Persistent Tissue Kinetics and Redistribution of Nanoparticles, Quantum Dot 705, in Mice: ICP-MS Quantitative AssessmentEnvironmental Health Perspectives, 2007
- Migration of Intradermally Injected Quantum Dots to Sentinel Organs in MiceToxicological Sciences, 2007
- Probing the cytotoxicity of CdSe quantum dots with surface modificationMaterials Letters, 2007
- Self-Assembled Quantum Dot−Peptide Bioconjugates for Selective Intracellular DeliveryBioconjugate Chemistry, 2006
- Cellular Effect of High Doses of Silica-Coated Quantum Dot Profiled with High Throughput Gene Expression Analysis and High Content Cellomics MeasurementsNano Letters, 2006