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TECHNOLOGY

Engineering Biology with Precision

Accubiotas develops human-relevant New Approach Methodologies (NAMs) by combining microengineering, advanced biological models, and quantitative measurement technologies.

From Biological Models to Quantitative Insights

Accubiotas develops engineered biological systems that combine relevant cellular models, controlled microenvironments, and quantitative measurement. The goal is to create research platforms that provide more informative and measurable biological data for preclinical research.

01 MODEL

Human-relevant biological systems

02 MEASURE

Quantitative and real-time measurements

03 ANALYZE

Data-driven biological interpretation

Core Technologies

Microengineering

Organ-on-a-Chip

Microengineered platforms designed to recreate relevant cellular and physiological environments in controlled in vitro systems.

Barrier Models

BBB-on-a-Chip

A three-dimensional blood-brain barrier model designed to study barrier function and drug responses under controlled conditions.

Monitoring

Real-Time TEER

Quantitative measurement of barrier integrity through real-time trans-endothelial electrical resistance monitoring.

Advanced Platforms

3D Platforms Spheroid&Organoid

3D cellular and spheroid-based platforms supporting controlled biological research and experimental workflows.

FEATURED TECHNOLOGY

BBB-on-a-Chip

A quantitative platform for studying blood-brain barrier function and drug responses.

Accubiotas' BBB-on-a-Chip platform integrates three-dimensional cell culture, controlled fluidic flow, endothelial cell–astrocyte co-culture, and real-time TEER measurement.

3D Cellular Architecture

Controlled Fluidic Flow

Endothelial–Astrocyte Co-culture

Real-Time TEER Measurement

HOW THE PLATFORM WORKS

From Biological Model to Quantitative Insight

Accubiotas combines engineered biological environments with quantitative measurements to study barrier function and biological responses under controlled in vitro conditions.

STEP 01

Cellular Model

Use relevant endothelial cells and astrocytes to establish a biologically meaningful BBB model.

STEP 02

3D Culture & Flow

Maintain the cellular model within a three-dimensional microfluidic environment with controlled fluidic flow.

STEP 03

Barrier Monitoring

Monitor barrier integrity quantitatively using real-time TEER measurement.

STEP 04

Experimental Response

Evaluate changes in barrier function and biological responses under experimental conditions.

Measure What Matters

REAL-TIME TEER

Barrier integrity is a critical parameter in blood-brain barrier research. Accubiotas integrates real-time TEER measurement to quantitatively monitor changes in barrier integrity during experiments.

FEATURE 01

Quantitative Measurement

Real-time TEER provides a quantitative measure of barrier integrity during an experiment.

FEATURE 02

Continuous Monitoring

Monitor changes in barrier properties over the course of experimental conditions rather than relying only on endpoint observations.

FEATURE 03

Experimental Insight

Use quantitative barrier measurements to support interpretation of biological responses and experimental outcomes.

From biological structure to measurable function.

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