Revolutionizing Tuberculosis Diagnostics: A Graphene Oxide-Based Biosensor for Enhanced Sensitivity and Selectivity in Cord Factor Detection

NERC · United Kingdom government procurement

Closed March 30, 2028. GlobalGov surfaces government procurement from around the world, including the markets your competitors overlook.

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Opportunity Overview

"Bovine tuberculosis is a chronic infectious disease which affects a broad range of mammalian hosts. The disease can be transmitted in several ways; for example, by direct contact, contact with the excreta of an infected animal, or inhalation of aerosols, depending on the species involved. The global burden of TB remains a significant public and animal health challenge whereby innovative techniques for early identification and successful management are required.

Next generation biosensor technology allows for SMART detection systems for disease detection.
Molecular techniques, particularly Polymerase Chain Reaction (PCR) and the revolutionary Xpert MTB/RIF test, have transformed TB detection, offering rapid and accurate results. Biosensors designed for the detection of various TB biomarkers are being developed, playing a crucial role
in the identification and management of the disease. Recent advancements in piezoelectric, magnetic, optical, and electrochemical biosensors have been notable. Graphene oxide (GO) is one of the most attributed materials for opening new possibilities in the development of next generation biosensors including biosensors based on fluorescence resonance energy transfer (FRET), laser desorption/ionization mass spectrometry (LDI-MS), surface-enhanced Raman spectroscopy (SERS), and electrochemical detection. Due to the coexistence of hydrophobic domain from pristine graphite structure and hydrophilic oxygen containing functional groups, it exhibits biocompatibility, and high affinity for specific biomolecules as well as properties of graphene itself partly depending on preparation methods.

Nanomaterials such as graphene oxide (GO) nanoparticles have emerged as a versatile and promising platform and are characterized by various physicochemical properties, including nanoscale size, high surface area, and electrical charge. Reduced graphene oxide can be used in
(bio)sensors, biomedical applications, supercapacitors, membranes, catalysts,...

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Solicitation Details

Issuing agencyNERC
CountryUnited Kingdom
CategoryResearch Development
PublishedSeptember 30, 2024
Procurement stageActive solicitation
ClosedMarch 30, 2028
StatusClosed — no longer accepting responses
Official sourceView original notice
Last verifiedAugust 10, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

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