9,056
Views
153
CrossRef citations to date
0
Altmetric
New topics/Others

Characterisation of particles in solution – a perspective on light scattering and comparative technologies

ORCID Icon, , & ORCID Icon
Pages 732-745 | Received 01 May 2018, Accepted 27 Aug 2018, Published online: 18 Oct 2018

References

  • European Commission . Commission recommendation of 18 October 2011 on the definition of nanomaterial. Off J Eur Union. 2011 20 October;54. DOI:10.3000/19770677.L_2011.275.eng
  • Talamini L , Violatto MB , Cai Q , et al. Influence of size and shape on the anatomical distribution of endotoxin-free gold nanoparticles. ACS Nano. 2017 May 30. DOI:10.1021/acsnano.7b00497.
  • Movia D , Gerard V , Maguire CM , et al. A safe-by-design approach to the development of gold nanoboxes as carriers for internalization into cancer cells. Biomaterials. 2014 3;35(9):2543–2557.
  • Dekkers S , Oomen AG , Bleeker EA , et al. Towards a nanospecific approach for risk assessment. Regul Toxicol Pharmacol. 2016 Oct;80:46–59.
  • Schrurs F , Lison D. Focusing the research efforts. Nat Nanotechnol. 2012;7(9):546–548.
  • OECD . Guidance Manual for the Testing of Manufactured Nanomaterials: OECD Sponsorship Programme: First Revision (2010) ENV/JM/MONO(2009)20/REV available at http://www.oecd.org/officialdocuments/publicdisplaydocumentpdf/?cote=env/jm/mono(2009)20/rev&doclanguage=en
  • Hassellöv M , Readman J , Ranville J , et al. Nanoparticle analysis and characterization methodologies in environmental risk assessment of engineered nanoparticles. Ecotoxicology. 2008;17(5):344–361.
  • Tiede K , Hassellöv M , Breitbarth E , et al. Considerations for environmental fate and ecotoxicity testing to support environmental risk assessments for engineered nanoparticles. J Chromatogr. 2009;1216(3):503–509.
  • Gaumet M , Vargas A , Gurny R , et al. Nanoparticles for drug delivery: the need for precision in reporting particle size parameters. Eur J Pharmaceutics Biopharmaceutics. 2008;69(1):1–9.
  • Nguyen VH , Lee B-J. Protein corona: a new approach for nanomedicine design. Int J Nanomedicine. 2017 Apr 18;12:3137–3151.
  • Bhattacharjee S . DLS and zeta potential – what they are and what they are not? J Control Release. 2016 Aug 10;235: 337–351.
  • Gioria S , Caputo F , Urbán P , et al. Are existing standard methods suitable for the evaluation of nanomedicines: some case studies. Nanomedicine. 2018;13(5):539–554.
  • Gerlach JQ , Maguire CM , Krüger A , et al. Urinary nanovesicles captured by lectins or antibodies demonstrate variations in size and surface glycosylation profile. Nanomedicine. 2017;12:1217–1229.
  • ASTM . Standard guide for measurement of particle size distribution of nanomaterials in suspension by Nanoparticle Tracking Analysis (NTA) (E2834-12). West Conshohocken, PA, USA: ASTM International; 2012.
  • ASTM . Standard guide for measurement of particle size distribution of nanomaterials in suspension by Photon Correlation Spectroscopy (PCS) (E2490-09). West Conshohocken, PA, USA: ASTM International; 2015.
  • Frisken B . Revisiting the method of cumulants for the analysis of dynamic light-scattering data. Applied Optics. 2001;40(24):4087–4091.
  • Filipe V , Hawe A , Jiskoot W . Critical evaluation of Nanoparticle Tracking Analysis (NTA) by NanoSight for the measurement of nanoparticles and protein aggregates. Pharm Res. 2010;27(5):796–810.
  • Ernst D , Kohler J . How the number of fitting points for the slope of the mean-square displacement influences the experimentally determined particle size distribution from single-particle tracking. Phys Chem Chem Phys. 2013;15(10):3429–3432.
  • Hole P , Sillence K , Hannell C , et al. Interlaboratory comparison of size measurements on nanoparticles using nanoparticle tracking analysis (NTA). J Nanoparticle Res. 2013 Dec 19;15(12):1–12.
  • Maguire CM , Sillence K , Roesslein M , et al. Benchmark of nanoparticle tracking analysis on measuring nanoparticle sizing and concentration. J Micro Nano-Manuf. 2017;5(4):041002–041012.
  • Ishikawa K . Guide to quality control. Tokyo, Japan: JUSE; 1968.
  • Barwick VJ , Ellison SLR . VAM Project 3.2.1 development and harmonisation of measurement uncertainty principles part (d): protocol for uncertainty evaluation from validation data, Report No: LGC/VAM/1998/088, Teddington UK, January 2000.
  • Tuoriniemi J , Johnsson A-CJH , Holmberg JP , et al. Intermethod comparison of the particle size distributions of colloidal silica nanoparticles. Sci Technol Advanced Mater. 2014 June 01;15(3):035009.
  • Walker JG . Improved nano-particle tracking analysis. Meas Sci Technol. 2012;23(6):065605.
  • Maguire C , Sillence K , Roesslein M . Benchmark of nanoparticle tracking analysis on measuring nanoparticle sizing and concentration. J Micro Nano-Manuf. 2017;5:041002.
  • Haque A , Engel J , Teichmann SA , et al. A practical guide to single-cell RNA-sequencing for biomedical research and clinical applications. Genome Med. 2017;9(1):75.
  • Molin A , Camillo B . How to design a single-cell RNA-sequencing experiment: pitfalls, challenges and perspectives. Brief Bioinform. 2018. DOI:10.1093/bib/bby007]
  • Nyeo S-L , Ansari RR . Sparse Bayesian learning for the Laplace transform inversion in dynamic light scattering. J Comput Appl Math. 2011 Feb 15;235(8):2861–2872.
  • Gigault J , El Hadri H , Reynaud S , et al. Asymmetrical flow field flow fractionation methods to characterize submicron particles: application to carbon-based aggregates and nanoplastics. Anal Bioanal Chem. 2017 Nov 01;409(29):6761–6769.
  • Gigault J , Grassl B . Improving the understanding of fullerene (nC60) aggregate structures: fractal dimension characterization by static light scattering coupled to asymmetrical flow field flow fractionation. J Colloid Interface Sci. 2017 Sep 15;502: 193–200.
  • Instruments M . The better way to characterize nanoparticles – Manta’s viewsizer 3000 2016 cited 2017 Oct 04 . Available from: http://www.mantainc.com/wp-content/uploads/2016/06/better-way-to-characterize-nanoparticles.pdf
  • Burg TP , Godin M , Knudsen SM , et al. Weighing of biomolecules, single cells and single nanoparticles in fluid. Nature. 2007 Apr 26;446:1066.
  • Mehn D , Iavicoli P , Cabaleiro N , et al. Analytical ultracentrifugation for analysis of doxorubicin loaded liposomes. Int J Pharm. 2017; 523(1):320–326.
  • Fedotova N , Kaegi R , Koch J , et al. Influence of dispersion agents on particle size and concentration determined by laser-induced breakdown detection. Spectrochim Acta Part B At Spectrosc. 2015;103–104:92–98.
  • Shang J , Gao X . Nanoparticle counting: towards accurate determination of the molar concentration. Chem Soc Rev. 2014 08 07;43(21):7267–7278.
  • Lin Y , Böker A , He J , et al. Self-directed self-assembly of nanoparticle/copolymer mixtures. Nature. 2005;434(7029):55.
  • McKenzie LC , Haben PM , Kevan SD , et al. Determining nanoparticle size in real time by small-angle X-ray scattering in a microscale flow system. J Phys Chem C. 2010 12 23;114(50):22055–22063.
  • Li T , Senesi AJ , Lee B . Small Angle X-ray scattering for nanoparticle research. Chem Rev. 2016 09 28;116(18):11128–11180.
  • Montes-Burgos I , Walczyk D , Hole P , et al. Characterisation of nanoparticle size and state prior to nanotoxicological studies [journal article]. J Nanoparticle Res. 2010 Jan 01;12(1):47–53. .
  • van der Pol E , Coumans F , Varga Z , et al. Innovation in detection of microparticles and exosomes. J Thromb Haemostasis. 2013;11:36–45.
  • Staedler D , Passemard S , Magouroux T , et al. Cellular uptake and biocompatibility of bismuth ferrite harmonic advanced nanoparticles. Nanomedicine: Nanotechnology, Biol Med. 2015 5;11(4):815–824.
  • Soo CY , Song Y , Zheng Y , et al. Nanoparticle tracking analysis monitors microvesicle and exosome secretion from immune cells. Immunology. 2012;136(2):192–197.
  • Dragovic RA , Gardiner C , Brooks AS , et al. Sizing and phenotyping of cellular vesicles using nanoparticle tracking analysis. Nanomedicine. 2011;7(6):780–788.
  • Heider S , Muzard J , Zaruba M , et al. Integrated method for purification and single-particle characterization of lentiviral vector systems by size exclusion chromatography and tunable resistive pulse sensing. Mol Biotechnol. 2017 July 01;59(7):251–259.
  • Anderson W , Kozak D , Coleman VA , et al. A comparative study of submicron particle sizing platforms: accuracy, precision and resolution analysis of polydisperse particle size distributions. J Colloid Interface Sci. 2013;405:322–330.
  • EFSA Scientific Committee . Statistical significance and biological relevance. Efsa J. 2011;9(9): 2372.