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1.
Toxicol In Vitro ; 46: 213-218, 2018 Feb.
Article in English | MEDLINE | ID: mdl-29024778

ABSTRACT

The effects of micro and nanoparticles on the innate immune system have been widely investigated and a general lack of agreement between in vivo and in vitro assays has been observed. In order to determine the origin of these discrepancies, there is a need for comparing the results of in vivo and in vitro phagocytosis assays obtained using the same particles and same immune cells. Here, we establish an in vivo polystyrene microsized particle phagocytosis assay in Drosophila melanogaster and compare it with an in vitro assay consisting of exposing the same immune cells in culture to the same particles. The distribution of number of phagocytized beads per cell was shifted to lower numbers of beads per cell in the case of the in vitro assay compared to the in vivo assay, which we suggest is partly due to a reduced amount of membrane available in cultured cells.


Subject(s)
Hemocytes/physiology , Macrophages/physiology , Particle Size , Phagocytosis/physiology , Polystyrenes/toxicity , Animals , Biological Assay , Cells, Cultured , Drosophila melanogaster , Larva
2.
Chem Commun (Camb) ; 53(8): 1417-1420, 2017 Jan 24.
Article in English | MEDLINE | ID: mdl-28079197

ABSTRACT

Polymer nanogels are embedded within layers consisting of a nonlamellar liquid crystalline lipid phase to act as thermoresponsive controllers of layer compactness and hydration. As the nanogels change from the swollen to the collapsed state via a temperature trigger, they enable on-demand release of water from the mixed polymer-lipid layer while the lipid matrix remains intact. Combining stimuli-responsive polymers with responsive lipid-based mesophase systems opens up new routes in biomedical applications such as functional biomaterials, bioanalysis and drug delivery.

3.
Biomacromolecules ; 13(8): 2391-401, 2012 Aug 13.
Article in English | MEDLINE | ID: mdl-22724519

ABSTRACT

The interaction of DNA with monolayers of the cationic lipid dimethyldioctadecylammonium bromide, with/without 50 mol % of a neutral "helper" lipid, either dioleoylphosphatidylethanolamine or cholesterol, has been studied using specular neutron reflection, surface pressure-area isotherms, and Brewster angle microscopy. The amount of DNA bound to the lipid head groups has been comprehensively quantified in the range of 8-39 vol% of DNA with respect to the monolayer composition (monolayers composed of dimethyldioctadecylammonium bromide binding the most DNA and monolayers containing dioleoylphosphatidylethanolamine binding the least) and surface pressure (DNA binding being greatest at highest surface pressures). Surprisingly, regardless of these variables, the thickness of the DNA-containing layer remained approximately constant between 18 and 25 Å. This systematic study is the first direct quantification of the binding of DNA with two different helper-lipid-containing multicomponent monolayers, an important step toward understanding interaction parameters in more realistic models of gene delivery systems.


Subject(s)
Cholesterol/chemistry , DNA/chemistry , Phosphatidylethanolamines/chemistry , Quaternary Ammonium Compounds/chemistry , Cations , Gene Transfer Techniques , Models, Chemical , Models, Molecular , Neutron Diffraction , Surface Properties , Unilamellar Liposomes/chemistry
4.
J R Soc Interface ; 9(68): 548-61, 2012 Mar 07.
Article in English | MEDLINE | ID: mdl-21831895

ABSTRACT

Successful drug delivery via lipid-based systems has often been aided by the incorporation of 'helper lipids'. While these neutral lipids enhance the effectiveness of cationic lipid-based delivery formulations, many questions remain about the nature of their beneficial effects. The structure of monolayers of the cationic lipid dimethyldioctadecylammonium bromide (DODAB) alone, and mixed with a neutral helper lipid, either diolelyphosphatidylethanolamine or cholesterol at a 1 : 1 molar ratio was investigated at the air-water interface using a combination of surface pressure-area isotherms, Brewster angle microscopy (BAM) and specular neutron reflectivity in combination with contrast variation. BAM studies showed that while pure DODAB and DODAB with cholesterol monolayers showed fairly homogeneous surfaces, except in the regions of phase transition, monolayers of DODAB with diolelyphosphatidylethanolamine were, in contrast, inhomogeneous exhibiting irregular bean-shaped domains throughout. Neutron reflectivity data showed that while the thickness of the DODAB monolayer increased from 17 to 24 Å as it was compressed from a surface pressure of 5-40 mN m(-1), the thickness of the helper lipid-containing monolayers, over the same range of surface pressures, was relatively invariant at between 25 and 27 Å. In addition, the monolayers containing diolelyphosphatidylethanolamine were found to be more heavily hydrated than the monolayers of cationic lipid, alone or in combination with cholesterol, with hydration levels of 18 molecules of water per molecule of lipid being recorded for the diolelyphosphatidylethanolamine-containing monolayers at a surface pressure of 30 mN m(-1) compared with only six and eight molecules of water per molecule of lipid for the pure DODAB monolayer and the cholesterol-containing DODAB monolayer, respectively.


Subject(s)
Cholesterol/metabolism , Drug Delivery Systems/methods , Membrane Lipids/metabolism , Phosphatidylethanolamines/metabolism , Quaternary Ammonium Compounds/metabolism , Unilamellar Liposomes/metabolism , Microscopy/methods , Neutrons , Pressure , Water/metabolism
5.
Langmuir ; 25(7): 4203-10, 2009 Apr 07.
Article in English | MEDLINE | ID: mdl-19714900

ABSTRACT

Specular neutron reflectivity was used to study the time course and nature of the interaction of the positively charged, peripheral membrane protein cytochrome c with supported bilayers of zwitterionic 1,2-dioleoyl-sn-glycero-3-phosphatidylcholine (DOPC) containing the anionic lipid 1-palmitoyl-2-oleoyl-glycero-3-phosphatidylserine (POPS). The supported bilayers were prepared by deposition on silicon blocks of two monolayers of DOPC, the second of which contained either 10 or 20 mol % POPS at surface pressures of either 15 or 20 mN/m using a combination of Langmuir-Blodgett and Schaefer deposition techniques. Each supported bilayer was initially characterized by specular neutron reflectivity using subphases of 10 mM NaCl aqueous solutions. Regardless of POPS content and bilayer deposition pressure, the molecular architecture of the bilayers was similar. The addition of cytochrome c resulted in an almost immediate change in reflectivity, which was well modeled by assuming that an additional layer was present next to the outer leaflet of the bilayer. The thickness of this layer, which contained the volume fraction of approximately 15% protein, was approximately 30 A (consistent with the cross-section of a single cytochrome c molecule). The addition of cytochrome c to the subphase also resulted in a change in the structure of the phospholipid bilayer, suggesting some penetration of cytochrome c into the bilayer. Specular neutron reflectivity studies after careful washing with solvent showed that although most of the protein was washed off by flushing 10 mM NaCl D2O through the cell a small amount remained both within the bilayer and bound to the membrane surface.


Subject(s)
Cytochromes c/chemistry , Lipid Bilayers/chemistry , Phosphatidylcholines/chemistry , Phosphatidylserines/chemistry , Cell Membrane/metabolism , Cytochromes c/metabolism , Lipid Bilayers/metabolism , Neutron Diffraction , Phosphatidylcholines/metabolism , Phosphatidylserines/metabolism , Protein Binding , Silicon/chemistry , Silicon/metabolism , Sodium Chloride/chemistry , Sodium Chloride/metabolism
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