Fluorometric immunoassay based on pH-sensitive dye-encapsulating liposomes and gramicidin channels

Mieko Horie1, Hiroyuki Yanagisawa, Masao Sugawara

  • 1Department of Chemistry, College of Humanities and Sciences, Nihon University, Sakurajosui, Setagaya-ku, Tokyo 156-8550, Japan.

Analytical Biochemistry
|August 28, 2007
PubMed

Insights

This study introduces a novel liposome array assay for direct fluorometric immunoassay. This method enables simultaneous quantification of multiple analytes without fluorescent labeling, offering a simple and sensitive diagnostic tool.

Area of Science:

  • Biochemistry
  • Analytical Chemistry
  • Nanotechnology

Background:

  • Traditional immunoassays often require fluorescent labeling of antibodies or antigens, adding complexity and cost.
  • Liposome-based systems offer a versatile platform for drug delivery and biosensing applications.
  • Direct fluorometric detection methods can simplify assay procedures and reduce assay time.

Purpose of the Study:

  • To develop a direct fluorometric immunoassay utilizing a liposome array.
  • To enable simultaneous quantification of multiple analytes without the need for fluorescent tags.
  • To investigate the sensitivity and selectivity of the developed liposome-based assay.

Main Methods:

  • Liposomes encapsulating the pH-sensitive dye BCECF were immobilized on an avidin slip with gramicidin channels.
  • Liposomes were composed of phosphatidylcholine (PC), cholesterol (Chol), biotinylated phosphatidylethanolamine (B-cap-PE), and specific recognition sites (DNP-PE, anti-substance P Fab', anti-neurokinin A Fab').
  • Analyte binding to recognition sites modulated gramicidin channel kinetics, altering BCECF fluorescence intensity for detection.

Main Results:

  • The assay demonstrated a direct correlation between analyte concentration and BCECF fluorescence intensity.
  • Successful quantification of anti-dinitrophenyl (anti-DNP), avidin, substance P, and neurokinin A within specific concentration ranges was achieved.
  • The assay procedure involved sequential incubation with sample and gramicidin solutions without washing steps, simplifying the process.

Conclusions:

  • The direct fluorometric immunoassay with a liposome array is a simple, sensitive, and selective method for simultaneous analyte quantification.
  • This liposome-based assay eliminates the need for fluorescent labeling of antibodies or antigens.
  • The developed assay holds promise for various diagnostic applications requiring multiplexed detection.