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Updated: Aug 9, 2026

Antigenic Liposomes for Generation of Disease-specific Antibodies
Published on: October 25, 2018
Contact-dependent, immunecomplex-mediated lysis of hapten-sensitized liposomes
B Babbitt1, L Burtis, P Dentinger
1LipoGen, Inc., Knoxville, Tennessee 37932.
Insights
New contact-sensitive liposomes, made with dioleoylphosphatidylethanolamine (DOPE), aggregate and lyse upon specific antibody binding. This liposome destabilization is temperature-dependent and shows potential for immunodiagnostic assays.
Area of Science:
- Liposome technology
- Immunosensors
- Biophysical chemistry
Background:
- Liposomes are versatile drug delivery systems.
- Developing liposomes with specific triggers for destabilization is crucial for targeted applications.
- Contact-sensitive liposomes offer a novel approach to triggered liposome release.
Purpose of the Study:
- To characterize a new class of stable, contact-sensitive liposomes.
- To investigate the mechanism of liposome aggregation and lysis induced by antibodies.
- To explore the potential of these liposomes in immunodiagnostic assays.
Main Methods:
- Formulation of large unilamellar liposomes using dioleoylphosphatidylethanolamine (DOPE) and a haptenated lipid.
- Stability assessment in isotonic buffer at 4°C.
- Induction of aggregation and lysis using bivalent anti-hapten antibodies.
- Thermostability testing and effect of antibody concentration.
- Demonstration of immunodiagnostic potential using theophylline-haptens.
Main Results:
- Liposomes exhibited remarkable stability for over 6 months at 4°C.
- Specific bivalent antibody binding induced rapid liposome aggregation and lysis.
- Lysis was immunospecific and dependent on antibody valency.
- Aggregation preceded lysis, and lysis was accelerated at higher temperatures (70-80°C).
- Theophylline-haptens demonstrated dose-dependent inhibition of antibody-induced lysis.
Conclusions:
- Contact-sensitive liposomes are a stable and specifically triggered liposome system.
- Liposome aggregation is a prerequisite for antibody-induced lysis.
- These liposomes show promise for homogeneous immunodiagnostic assays, such as for theophylline detection.
Abstract:
Large unilamellar liposomes (d approximately 160 nm) composed of dioleoylphosphatidylethanolamine (DOPE) (80-90%), a negatively charged phospholipid stabilizer (10-20%), and a small amount (0.1-1%) of a haptenated lipid are unusually stable in divalent cation-free isotonic buffer at pH 7.4. The liposomes can be stored under this condition at 4 degrees C for at least 6 months without any detectable leakage of the entrapped fluorescent dye calcein. However, the liposomes undergo a rapid (1 h) aggregation and lysis reaction in the presence of free bivalent anti-hapten antibody. The liposome destabilization was immunospecific in that it did not occur with the normal IgG or in the presence of excess free hapten. Liposome lysis was always accompanied by liposome aggregation. Aggregation and lysis of the liposomes was completed in 5 min if the incubation temperature was raised to 70-80 degrees C. Replacing DOPE with dioleoylphosphatidylcholine in the liposomes did not abolish the liposome aggregation, but no liposome lysis was observed even at 80 degrees C. Since liposome aggregation appeared to be a necessary (but not sufficient) prerequisite for liposome lysis, we have named this new class of liposome "contact-sensitive liposomes." The immunodiagnostic potential of the contact-sensitive liposome was demonstrated with liposomes containing theophylline-DOPE. The aggregation and lysis of the liposomes induced by a monoclonal anti-theophylline antibody could be inhibited by free theophylline at concentrations of therapeutic significance. The observation could be the basis of a homogeneous assay for theophylline.
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