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1.
Biochim Biophys Acta Gen Subj ; 1862(3): 427-439, 2018 Mar.
Article in English | MEDLINE | ID: mdl-29126854

ABSTRACT

BACKGROUND: Quantum dots (QDs) are outstanding nanomaterials of great interest to life sciences. Their conjugation versatility added to unique optical properties, highlight these nanocrystals as very promising fluorescent probes. Among uncountable new nanosystems, in the last years, QDs conjugated to glycans or lectins have aroused a growing attention and their application as a tool to study biological and functional properties has increased. SCOPE OF REVIEW: This review describes the strategies, reported in the literature, to conjugate QDs to lectins or carbohydrates, providing valuable information for the elaboration, improvement, and application of these nanoconjugates. It also presents the main applications of these nanosystems in glycobiology, such as their potential to study microorganisms, the development of diseases such as cancer, as well as to develop biosensors. MAJOR CONCLUSIONS: The development of glyconanoparticles based on QDs emerged in the last decade. Many works reporting the conjugation of QDs with carbohydrates and lectins have been published, using different strategies and reagents. These bioconjugates enabled studies that are very sensitive and specific, with potential to detect and elucidate the glycocode expressed in various normal or pathologic conditions. GENERAL SIGNIFICANCE: Produce a quick reference source over the main advances reached in the glyconanotechnology using QDs as fluorescent probes.


Subject(s)
Glycoconjugates , Nanotechnology/methods , Quantum Dots , Bacteriological Techniques , Biosensing Techniques , Carbohydrate Metabolism , Carbohydrates/analysis , Cell Line, Tumor , Chemistry Techniques, Analytical/methods , Fluorescence , Glycoconjugates/administration & dosage , Glycoconjugates/chemistry , Glycoconjugates/therapeutic use , Humans , Lectins/administration & dosage , Lectins/chemistry , Metal Nanoparticles , Models, Molecular , Mycology/methods , Nanotechnology/trends , Neoplasms/chemistry , Neoplasms/diagnosis , Optical Imaging/methods , Parasitology/methods , Quantum Dots/administration & dosage , Quantum Dots/chemistry , Quantum Dots/therapeutic use
2.
Toxicol Lett ; 208(2): 115-24, 2012 Jan 25.
Article in English | MEDLINE | ID: mdl-22027348

ABSTRACT

Colloidal quantum dots (QD) show great promise as fluorescent markers. The QD used in this study were obtained in aqueous medium rather than the widely used colloidal QD. Both methodologies used for the production of QD are associated with the presence of heavy metals such as cadmium (Cd). Here we investigate the short-term inhalation toxicity of water-soluble core-shell CdS/Cd(OH)2 QD. Male Wistar rats were head-nose exposed for 6 h/day on 5 days at the technically maximum concentration (0.52 mg Cd/m³). Histological examination was performed directly after the last exposure. Additional rats were used for Cd organ burden determinations. Clinical parameters in blood, bronchoalveolar lavage fluid and lung tissue were determined 3 days after the last exposure. To analyze the reversibility or progression of effects, the examinations were performed again after a recovery period of 3 weeks. The results of the study indicate that CdS/Cd(OH)2 QD caused local neutrophil inflammation in the lungs that partially regressed after the 3-week recovery period. There was no evidence that QD were translocated to the central nervous system nor that a systemic acute phase response occurred.


Subject(s)
Cadmium Compounds/toxicity , Lung/drug effects , Sulfides/toxicity , Aerosols , Animals , Cadmium Compounds/administration & dosage , Inflammation/chemically induced , Inhalation Exposure , Male , Microscopy, Electron, Transmission , Neutrophils/drug effects , Quantum Dots , Rats , Rats, Wistar , Sulfides/administration & dosage , Tissue Distribution
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