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.

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