Multiplex ELISA Solid Substrate Analyte Detection

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Solution Overview

Problem

Current methods for detecting multiple analytes in a single sample face challenges such as distinguishing between analytes, overlap and interference of detection signals, insufficient sensitivity, and high costs, especially in complex biological samples.

Innovation Solution

The use of a method and kit that involves providing a reaction vessel with a solid substrate and multiple capture agents immobilized on it, allowing for the simultaneous detection of multiple analytes by binding and detecting these agents on the substrate, which reduces signal overlap and interference and improves sensitivity.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Measurement precision

If multiple analytes are detected in parallel using separate reactions, then the ability to distinguish between analytes is improved, but the time consumption and resource usage increase

Engineering Contradiction:
Improveability to distinguish between analytesVSAvoidtime consumption
Core Design Contradiction:
Measurement precisionVSLoss of time

Solution Approach 1:

The patent combines multiple separate analyte detection reactions into a single reaction well by using a multiplex ELISA approach. Different capture antibodies specific to various analytes are immobilized on the solid substrate, allowing simultaneous detection of multiple analytes in one reaction, thereby reducing time consumption while maintaining the ability to distinguish between different analytes through specific antibody recognition

Inventive Principle:
Principle #5Merging (Combining)

Solution Approach 2:

The solid substrate serves multiple functions simultaneously: it acts as a platform for immobilizing multiple different capture antibodies, provides a common detection surface for multiple analytes, and enables single-well reaction conditions. This multi-functional design allows one reaction system to perform what would traditionally require multiple separate reactions

Inventive Principle:
Principle #6Universality (Multi-functionality)

2Productivity

If multiple analytes are detected in the same reaction using multiplex detection, then the time efficiency is improved, but signal overlap and interference between detection signals worsen

Engineering Contradiction:
Improvetime efficiencyVSAvoidsignal overlap and interference
Core Design Contradiction:
ProductivityVSObject-affected harmful factors

Solution Approach 1:

Each capture antibody on the solid substrate is specific to a particular analyte, creating locally distinct binding sites that prevent cross-reactivity. The detection antibodies are also analyte-specific, ensuring that each analyte produces a unique detectable signal. This local specificity maintains signal distinction even when multiple analytes are detected simultaneously in the same reaction well

Inventive Principle:
Principle #3Local quality

3Productivity

If traditional multiplex detection methods are used, then multiple analytes can be detected in a single reaction, but the sensitivity to detect low amounts of analyte deteriorates

Engineering Contradiction:
Improvemultiple analyte detection capabilityVSAvoidsensitivity
Core Design Contradiction:
ProductivityVSMeasurement precision

Solution Approach 1:

The patent uses detection antibodies that are conjugated to detectable agents (such as enzymes, fluorophores, or other detectable molecules) to amplify and copy the signal from each analyte. This signal amplification mechanism allows sensitive detection of low analyte concentrations while maintaining the multiplex capability to detect multiple analytes simultaneously in the same reaction

Inventive Principle:
Principle #26Copying

4Measurement precision

If new technologies and equipment are adopted for multiplex detection, then the detection capability is improved, but the cost and device complexity increase

Engineering Contradiction:
Improvedetection capabilityVSAvoidequipment acquisition cost
Core Design Contradiction:
Measurement precisionVSDevice complexity

Solution Approach 1:

The patent employs a solid substrate-based ELISA format that can be performed using standard, readily available laboratory equipment and reagents. The method utilizes conventional plate readers and standard detection chemistry rather than requiring expensive specialized instruments, making the multiplex detection capability accessible to laboratories with existing resources

Inventive Principle:
Principle #27Cheap short-living objects (Disposable)

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

This approach enables efficient and cost-effective detection of multiple analytes in a single reaction environment with improved sensitivity and reduced interference, utilizing existing hardware and reagents, and is suitable for complex biological samples.

Implementation Method 1

Detection of analytes in such samples often utilises recognition of the analyte by binding to another molecule

Methodology Applied
Scientific EffectAntigen-antibody binding:

Implementation Method 2

the detectable agents that bind to the at least two different analytes; wherein one or more of the at least two different detectable agents comprises a lanthanide ion

Methodology Applied
Scientific EffectFluorescence: Fluorescence

Implementation Method 3

the detectable agents that bind to the at least two different analytes; wherein one or more of the at least two different detectable agents comprises an enzyme that converts a substrate into a detectable product

Methodology Applied
Scientific EffectEnzymatic reaction: Enzyme

Data Source

PatentEP3800474A1Detection of multiple analytes
Publication Date: 2021.04.07 TGR BIOSCI
  • EP3800474A1 patent drawingFigure 1A~1B
  • EP3800474A1 patent drawingFigure 2A~2B
  • EP3800474A1 patent drawingFigure 3

AI summary

The present disclosure relates to methods and kits for detecting multiple analytes in a sample. Certain embodiments are directed to a method for detecting different analytes in a sample comprising providing at least two different capture agents that bind to at least two different analytes and the at least two different capture agents can be immobilised on at least one solid substrate. Certain embodiments are directed to the use of pre-immobilised capture agents. Certain other embodiments are directed to capture agents that are immobilised on a solid substrate using an affinity capture system, including a peptide tag/anti-peptide tag antibody affinity capture system.