Literature DB >> 27633565

Determination of the Absolute Number Concentration of Nanoparticles and the Active Affinity Sites on Their Surfaces.

Cong-Ying Wen1,2, Man Tang2, Jiao Hu2, Ling-Ling Wu2, Dai-Wen Pang2, Jing-Bin Zeng1, Xi-You Li1.   

Abstract

Number concentration of nanoparticles is a critical and challenging parameter to be identified. Recently, gravimetric strategy is a fundamental method for absolute quantification, which is widely accepted and used by researchers, yet limited by the inaccuracy in measuring related parameters (e.g, density). Hence, we introduced isopycnic gradient centrifugation to determine the nanopartices' density and improved the current gravimetric method for more accuracy. In this work, polymer nanospheres were used as a model to validate this method. Through isopycnic gradient centrifugation, nanospheres finally reached the zone of equal density as them. By measuring the density of the medium solution in this zone, the nanospheres' density was identified. Then, the density was multiplied by the volume of a single nanosphere characterized by transmission electron microscopy (TEM), and the average weight of a single nanosphere was obtained. Using total weight of the nanospheres divided by the unit weight, their number concentration was quantified. Directly using the real density of the nanoparticles achieved more accurate quantification than the current gravimetric method which used the density of the bulk material counterparts for calculation. Besides, compared with the viscosity/light scattering method and the high-sensitivity flow cytometry (HSFCM) method (another two kinds of typical methods respectively based on light measurements and single particle counting), the improved gravimetric method showed better reproducibility and more convenience. Further, we modified the nanospheres with streptavidin (SA) and antibody, and through biorecognition interaction, we determined the amount of the active affinity sites on each biofunctional nanosphere. Moreover, their bioactivity in different storage conditions was monitored, which showed good stability even in PBS at 4 °C over one year. Our work provided a promising method for more accurately determining the absolute number concentration of nanoparticles and the active affinity sites on their surfaces, which would greatly facilitate their downstream applications.

Entities:  

Year:  2016        PMID: 27633565     DOI: 10.1021/acs.analchem.6b02613

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  4 in total

1.  Aptamer-functionalized magnetic and fluorescent nanospheres for one-step sensitive detection of thrombin.

Authors:  Cong-Ying Wen; Jia-Hui Bi; Ling-Ling Wu; Jing-Bin Zeng
Journal:  Mikrochim Acta       Date:  2017-12-22       Impact factor: 5.833

2.  Intracameral Delivery of Layer-by-Layer Coated siRNA Nanoparticles for Glaucoma Therapy.

Authors:  Andrea E Dillinger; Michaela Guter; Franziska Froemel; Gregor R Weber; Kristin Perkumas; W Daniel Stamer; Andreas Ohlmann; Rudolf Fuchshofer; Miriam Breunig
Journal:  Small       Date:  2018-10-23       Impact factor: 13.281

3.  Kinetic Processes in Enzymatic Nanoreactors for In Vivo Detoxification.

Authors:  Zukhra Shajhutdinova; Tatiana Pashirova; Patrick Masson
Journal:  Biomedicines       Date:  2022-03-27

Review 4.  Methods for improving the immunogenicity and efficacy of cancer vaccines.

Authors:  Lorenzo Pilla; Soldano Ferrone; Cristina Maccalli
Journal:  Expert Opin Biol Ther       Date:  2018-06-17       Impact factor: 4.388

  4 in total

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