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Detection of Protease Activity by Fluorescent Peptide Zymography
Published on: January 20, 2019
Disposable MMP-9 sensor based on the degradation of peptide cross-linked hydrogel films using electrochemical
Anna Biela1, Michael Watkinson2, Ute C Meier3
1School of Engineering and Materials Science, Queen Mary University of London, UK.
Abstract:
Matrix metalloproteinase-9 (MMP-9) plays an important role in both physiological and pathological processes. This enzyme is a peripheral biomarker of neuroinflammation in multiple sclerosis (MS), a chronic autoimmune disease of the central nervous system. Presently, expensive magnetic resonance imaging (MRI) studies are used to monitor subclinical disease activity in MS. An alternative to costly MRI scans could be the detection of MMP-9, using a low-cost, disposable sensor system for MMP-9 suitable for home-monitoring of inflammation. This would allow an early prediction of the failure of anti-inflammatory therapies and more timely clinical intervention to limit neuronal damage and prevent disability. Herein we present the development of a disposable sensor for fast and straightforward detection of MMP-9. Biosensors were produced by coating electrodes with oxidized dextran and subsequent cross-linking with peptides containing specific cleavage sites for MMP-9. Exposure of the films to the enzyme resulted in the degradation of the films, which was monitored using impedance measurements. Sensor response was rapid, a significant impedance change was usually observed within 5 min after the addition of MMP-9. Sensors showed a negligible response to matrix metalloproteinase-2 (MMP-2), a protease which may interfere with MMP-9 detection. The peptide sequence with the highest sensitivity and selectivity Leu-Gly-Arg-Met-Gly-Leu-Pro-Gly-Lys was selected to construct calibration curves. MMP-9 was successfully detected in a clinically relevant range from 50 to 400 ng/ml. Two different processes of hydrogel degradation were observed on electrode surfaces with different roughness, and both appeared suitable to monitor MMP-9 activity. The sensor materials are generic and can be easily adopted to respond to other proteases by selecting peptide cross-linkers with suitable cleavage sites.
Insights
A new disposable sensor offers a low-cost method for detecting matrix metalloproteinase-9 (MMP-9), a biomarker for neuroinflammation in multiple sclerosis (MS). This could enable home monitoring and timely treatment adjustments, reducing the need for expensive MRI scans.
Area of Science:
- Biomedical Engineering
- Neuroscience
- Analytical Chemistry
Background:
- Matrix metalloproteinase-9 (MMP-9) is a key biomarker for neuroinflammation in multiple sclerosis (MS).
- Current monitoring of MS disease activity relies on expensive MRI scans.
- A low-cost, accessible method for detecting MMP-9 is needed for home-based monitoring.
Purpose of the Study:
- To develop a disposable sensor for the rapid and straightforward detection of MMP-9.
- To provide an alternative to MRI for monitoring subclinical disease activity in MS.
- To enable early prediction of anti-inflammatory therapy failure and facilitate timely clinical intervention.
Main Methods:
- Disposable biosensors were fabricated by coating electrodes with oxidized dextran and cross-linking with MMP-9-specific peptides.
- Enzyme activity was detected by monitoring impedance changes due to hydrogel degradation upon MMP-9 exposure.
- Sensor selectivity was tested against matrix metalloproteinase-2 (MMP-2).
Main Results:
- The sensor demonstrated rapid response, with significant impedance changes observed within 5 minutes of MMP-9 addition.
- The sensor showed negligible response to MMP-2, indicating high selectivity.
- MMP-9 was accurately detected within a clinically relevant range of 50–400 ng/ml.
- Two distinct hydrogel degradation processes were observed, both suitable for MMP-9 activity monitoring.
Conclusions:
- A novel, disposable sensor for MMP-9 detection has been successfully developed.
- This sensor system offers a promising, low-cost alternative to MRI for monitoring MS-related neuroinflammation.
- The generic sensor design allows for adaptation to detect other proteases by altering peptide cross-linkers.
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