Gold nanoparticle-based enhanced lateral flow immunoassay for detection of Cronobacter sakazakii in powdered infant

Ruili Pan1, Yujun Jiang1, Luhong Sun1

  • 1Key Laboratory of Dairy Science, Ministry of Education, Department of Food Science, Northeast Agricultural University, Harbin, China, 150030.

Insights

A new enhanced lateral flow immunoassay (LFA) detects Cronobacter sakazakii in powdered infant formula (PIF) with 100x greater sensitivity. This rapid, visual test uses gold nanoparticles to improve detection accuracy for newborn safety.

Area of Science:

  • Food Safety
  • Analytical Chemistry
  • Biotechnology

Background:

  • Cronobacter sakazakii is an opportunistic foodborne pathogen.
  • Newborns are vulnerable to C. sakazakii infections via powdered infant formula (PIF).
  • Traditional detection methods for C. sakazakii lack sensitivity and speed.

Purpose of the Study:

  • To develop a highly sensitive, rapid, and visual immunoassay for C. sakazakii detection in PIF.
  • To enhance the signal amplification strategy of traditional lateral flow immunoassays (LFAs).
  • To improve the safety of powdered infant formula through advanced pathogen detection.

Main Methods:

  • Developed an enhanced lateral flow immunoassay (LFA) using concentrated gold nanoparticles (AuNP) as signal enhancers.
  • Conjugated concentrated AuNP with capture antibodies to increase immobilized antibody concentration.
  • Optimized concentrations of capture antibodies (2.2 mg/mL) and AuNP (0.06 nM) for maximal signal amplification and specificity.

Main Results:

  • Achieved a detection sensitivity of 10^3 cfu/mL, a 100-fold improvement over traditional LFA.
  • Demonstrated high specificity for C. sakazakii detection.
  • Reduced the detection time for C. sakazakii in PIF by 3 hours.

Conclusions:

  • The enhanced LFA provides a sensitive, rapid, visual, and qualitative method for C. sakazakii detection.
  • This novel approach offers a valuable point-of-care testing solution for ensuring PIF safety.
  • The use of concentrated AuNP as an enhancer significantly improves LFA performance for foodborne pathogen detection.

Related Concept Videos

Chemical Formulas02:52

Chemical Formulas

A chemical formula presents information about the proportions of atoms constituting a particular chemical compound or molecule, mainly using symbols of elements and numbers. At times other symbols, such as dashes, parentheses, brackets, commas, plus, and minus signs, are also used. A chemical formula can be one of three types – molecular, empirical, and structural.
61.8K
Ionic Compounds: Formulas and Nomenclature03:34

Ionic Compounds: Formulas and Nomenclature

An element composed of atoms that readily lose electrons (a metal) can react with an element composed of atoms that readily gain electrons (a nonmetal) to produce ions through complete electron transfer. The compound formed by this transfer is stabilized by the electrostatic attractions (ionic bonds) between the oppositely charged ions.
88.1K
Molecular Compounds: Formulas and Nomenclature03:10

Molecular Compounds: Formulas and Nomenclature

Molecular compounds or covalent compounds result when atoms share electrons to form covalent bonds. Since there is no electron transfer, molecular compounds do not contain ions; instead, they consist of discrete, neutral molecules. 
56.2K
Experimental Determination of Chemical Formula02:37

Experimental Determination of Chemical Formula

The elemental makeup of a compound defines its chemical identity, and chemical formulas are the most concise way of representing this elemental makeup. When a compound’s formula is unknown, measuring the mass of its constituent elements is often the first step in determining the formula experimentally.
47.7K
Formula Mass and Mole Concepts of Compounds02:56

Formula Mass and Mole Concepts of Compounds

Formula Mass of Covalent Compounds
82.6K
The Midpoint Formula01:24

The Midpoint Formula

In coordinate geometry, determining the central point between two locations is common. This central point, or midpoint, lies exactly halfway along the line segment connecting two points in a two-dimensional space. It has applications in mathematics, physics, engineering, and various planning disciplines.Given two points labeled as A (x1, y1) and B (x2, y2) on a coordinate plane, a straight line segment can be plotted between them. The midpoint, labeled point M, divides this segment into two...
1.1K