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Ebba Biotech

Ebba Biotech

ounded in 2016, Ebba Biotech is a pioneer in optotracer technology, developing innovative fluorescent tracer molecules for the visualisation and analysis of complex biological nanostructures. Designed for research applications across academia, clinical science and industry, Ebba Biotech's unique optotracer platform enables researchers to study proteins, carbohydrates, bacteria and biofilms with exceptional specificity and sensitivity. 

E bba Biotech's product portfolio includes the Amytracker®, CarboTrace® and EbbaBioLight® ranges, which support the detection and visualisation of protein aggregates, carbohydrate structures, bacterial extracellular matrix components and biofilm formation. These advanced fluorescent tracers are widely used in neurodegeneration research, infection biology, biomaterials science and sustainable materials development.

As their trusted distributor, Cambridge Bioscience provides access to the complete Ebba Biotech portfolio, supported by responsive local technical expertise and customer service.

Cambridge Bioscience is pleased to provide Ebba Biotech products in the UK and Ireland.

Your trusted supplier of optotracers and nanostructure visualisation tools: Ebba Biotech

Amytracker® fluorescent tracers for detecting and imaging protein aggregates in tissues, cells and animal models 

► EbbaBioLight® probes for visualising bacteria, bacterial extracellular matrix and biofilm formation 

► CarboTrace® tracers for non-destructive carbohydrate analysis and glucan visualisation 

► Tools for biofilm research, infection biology, neurodegeneration and biomaterials science 

► Unique optical fingerprinting technology for distinguishing carbohydrate structures 

► CarboTrace® Testing Service for specialist carbohydrate characterisation and analysis

Optotracing, fluorescent tracers, amyloids, protein aggregates, fibrillar, fibrillation assays, amyloidogenic proteins or peptides, carbohydrate structures, non-destructive carbohydrate analysis, plants, biofuel, bacteria, bacterial films, bacterial extracellular matrix, direct visualisation,