Your browser doesn't support javascript.
loading
FULL-MDS: Fluorescent Universal Lipid Labeling for Microfluidic Diffusional Sizing.
Baron, Jasmin; Bauernhofer, Lena; Devenish, Sean R A; Fiedler, Sebastian; Ilsley, Alison; Riedl, Sabrina; Zweytick, Dagmar; Glueck, David; Pessentheiner, Ariane; Durand, Grégory; Keller, Sandro.
Afiliação
  • Baron J; Biophysics, Institute of Molecular Biosciences (IMB), NAWI Graz, University of Graz, Humboldtstr. 50/III, Graz 8010, Austria.
  • Bauernhofer L; Field of Excellence BioHealth, University of Graz, Graz 8010, Austria.
  • Devenish SRA; BioTechMed-Graz, Graz 8010, Austria.
  • Fiedler S; Biophysics, Institute of Molecular Biosciences (IMB), NAWI Graz, University of Graz, Humboldtstr. 50/III, Graz 8010, Austria.
  • Ilsley A; Field of Excellence BioHealth, University of Graz, Graz 8010, Austria.
  • Riedl S; BioTechMed-Graz, Graz 8010, Austria.
  • Zweytick D; The Paddocks Business Centre, Fluidic Analytics Ltd., Unit A, Cherry Hinton Road, Cambridge CB1 8DH, United Kingdom.
  • Glueck D; The Paddocks Business Centre, Fluidic Analytics Ltd., Unit A, Cherry Hinton Road, Cambridge CB1 8DH, United Kingdom.
  • Pessentheiner A; The Paddocks Business Centre, Fluidic Analytics Ltd., Unit A, Cherry Hinton Road, Cambridge CB1 8DH, United Kingdom.
  • Durand G; Biophysics, Institute of Molecular Biosciences (IMB), NAWI Graz, University of Graz, Humboldtstr. 50/III, Graz 8010, Austria.
  • Keller S; Field of Excellence BioHealth, University of Graz, Graz 8010, Austria.
Anal Chem ; 95(2): 587-593, 2023 01 17.
Article em En | MEDLINE | ID: mdl-36574263
ABSTRACT
Microfluidic diffusional sizing (MDS) is a recent and powerful method for determining the hydrodynamic sizes and interactions of biomolecules and nanoparticles. A major benefit of MDS is that it can report the size of a fluorescently labeled target even in mixtures with complex, unpurified samples. However, a limitation of MDS is that the target itself has to be purified and covalently labeled with a fluorescent dye. Such covalent labeling is not suitable for crude extracts such as native nanodiscs directly obtained from cellular membranes. In this study, we introduce fluorescent universal lipid labeling for MDS (FULL-MDS) as a sparse, noncovalent labeling method for determining particle size. We first demonstrate that the inexpensive and well-characterized fluorophore, Nile blue, spontaneously partitions into lipid nanoparticles without disrupting their structure. We then highlight the key advantage of FULL-MDS by showing that it yields robust size information on lipid nanoparticles in crude cell extracts that are not amenable to other sizing methods. Furthermore, even for synthetic nanodiscs, FULL-MDS is faster, cheaper, and simpler than existing labeling schemes.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Microfluídica / Corantes Fluorescentes Idioma: En Revista: Anal Chem Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Áustria

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Microfluídica / Corantes Fluorescentes Idioma: En Revista: Anal Chem Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Áustria