| Literature DB >> 22778625 |
Masaru Mukai1, Yoshihiro Sasaki, Jun-ichi Kikuchi.
Abstract
A nanosensory membrane device was constructed for detecting liposome fusion through changes in an enzymatic activity. Inspired by a biological signal transduction system, the device design involved functionalized liposomal membranes prepared by self-assembly of the following molecular components: a synthetic peptide lipid and a phospholipid as matrix membrane components, a Schiff's base of pyridoxal 5'-phosphate with phosphatidylethanolamine as a thermo-responsive artificial receptor, NADH-dependent L-lactate dehydrogenase as a signal amplifier, and Cu(2+) ion as a signal mediator between the receptor and enzyme. The enzymatic activity of the membrane device was adjustable by changing the matrix lipid composition, reflecting the thermotropic phase transition behavior of the lipid membranes, which in turn controlled receptor binding affinity toward the enzyme-inhibiting mediator species. When an effective fusogen anionic polymer was added to these cationic liposomes, membrane fusion occurred, and the functionalized liposomal membranes responded with changes in enzymatic activity, thus serving as an effective nanosensory device for liposome fusion detection.Entities:
Keywords: enzyme; liposome; liposome fusion; molecular device; phase transition; self-assembly
Mesh:
Substances:
Year: 2012 PMID: 22778625 PMCID: PMC3386724 DOI: 10.3390/s120505966
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.Schematic illustration of a liposomal molecular device inspired by biological signal transduction system.
Figure 2.Schematic illustration of a bio-inspired molecular device that detects liposome fusion by altering the activity of an enzymatic reaction. Left and right figures represent on and off-states of L-lactate dehydrogenase (LDH) before and after membrane fusion, respectively. The lipid bilayers are in gel and liquid-crystalline (LC) phases for on and off-states, respectively.
Figure 3.Molecular components of the bio-inspired molecular device.
Figure 4.Correlations of lipid molar fraction with LDH activity (open circle) and phase transition temperature (closed) of the bio-inspired molecular device in HEPES buffer (10 mM) at pH 7.0 and 35 °C. Concentrations in mM: [1]+[2], 1.0; [DMPE], 0.05; [PLP], 0.02; [LDH], 2.8 × 10−6; [NADH], 0.25; [pyruvate], 0.50; and [Cu2+], 4.0 × 10−3.
Figure 5.Dependences of polymer concentration on liposome fusion efficiency for PVSK and PVA (open and closed circles, respectively) evaluated by FRET assay. Aqueous fluorescence-labeled liposomes composed of lipids 1 and 2 (0.20 and 0.80 mM, respectively) and Rh-PE and NBD-PE (both 0.50 μM) were mixed with unlabeled aqueous liposomes composed of 1 and 2 (both 0.50 mM) in a volume ratio of 1/9 (v/v) at pH 7.0 and 35 °C; fusion efficiency evaluated for by addition of various concentrations of a polymer.
Figure 6.DSC thermograms from aqueous liposomes composed of lipids 1 and 2 at a 5/5 or 2/8 molar ratio (dotted and dashed line, respectively) with no polymer and their 9/1 (v/v) mixture with PVSK (solid line). Concentrations in mM: [1]+[2], 1.0 and [PVSK], 0.80 (per monomer unit).
Figure 7.Fluorescence microscopic images of a giant liposome composed of 1 and 2 at a 2/8 molar ratio and labeled with Rh-PE (A), small unilamellar liposomes at a 5/5 molar ratio and labeled with rhodamine 123 (B), and their 1/9 (v/v) mixture with PVSK (C). Concentrations in mM: [1]+[2], 1.0 and [PVSK], 0.80 (per monomer unit); scale bar, 10 μm.
Enzymatic activity on liposomes in HEPES buffer (10 mM) at pH 7.0 and 35 °C .
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| |||||
|---|---|---|---|---|---|
| 1 | none | none | none | 360 | 100 |
| 2 | none | none | Cu2+ | 10 | 4 |
| 3 | none | PVA | none | 340 | 100 |
| 4 | none | PVA | Cu2+ | 20 | 6 |
| 5 | none | PVSK | none | 340 | 100 |
| 6 | none | PVSK | Cu2+ | 20 | 6 |
| 7 | none | none | 290 | 100 | |
| 8 | none | Cu2+ | 200 | 68 | |
| 9 | PVA | none | 290 | 100 | |
| 10 | PVA | Cu2+ | 180 | 62 | |
| 11 | PVSK | none | 290 | 100 | |
| 12 | PVSK | Cu2+ | 120 | 42 | |
Concentrations in mM: [1]+[2], 1.0; [DMPE], 0.05; [PLP], 0.02; [LDH], 2.8 × 10−6; [NADH], 0.25; [pyruvate], 0.5; [Cu2+], 4.0 × 10−3; and [polymer], 0.8;
Initial velocity for LDH reduction of pyruvate to -lactate monitored by spectrophotometric detection of NADH consumption; values accurate within ±5%;
Magnitude of v0 in presence of Cu2+ ions compared to that in the Cu2+-free system;
Liposome composed of 1 and 2 in 2/8 molar ratio and receptor;
1/9 (v/v) Mixture of aqueous liposome composed of 1 and 2 (molar ratio, 2/8) with receptor and aqueous liposome composed of 1 and 2 (molar ratio, 5/5) without receptor.