Maestro MEA logo

Maestro MEA

A versatile, noninvasive platform for measuring and analyzing electrical activity in cells with real-time data.

Solution by Axion BioSystems
Visit website

Overview

The Maestro MEA platform provides an advanced noninvasive method to evaluate spontaneous activity, drug-induced changes, and functional maturation in electrically active cells. It surpasses other technologies by offering a comprehensive view of cell function.

This platform adapts seamlessly to various workflows, integrating precision with high throughput. It features multi-modal capabilities such as electrophysiology and impedance to deliver real-time, label-free functional data from a single platform.

Key Advantages:

  • High throughput with up to 96 wells recorded concurrently.
  • Versatile multi-modal applications such as MEA, impedance, and more.
  • No incubator needed due to integrated environmental controls for temperature, CO₂, and humidity.
  • Custom MEA compatibility for tailored laboratory applications.

The Maestro MEA is trusted by top-tier research institutions and pharmaceutical companies, reflecting its benchmark status in MEA technology. Options like the Maestro Pro, Edge, and Volt cater to different throughput and performance needs.

The Maestro Pro offers extensive flexibility and throughput, supporting detailed electrophysiological analyses, while the Maestro Edge provides mid-level throughput with extensive adaptability. Maestro Volt brings quality MEA data accessibility to any lab.

The user-friendly AxIS software, compatible with all Maestro systems, supports advanced analysis and real-time data acquisition. It simplifies high-quality data interpretation and sharing, tailored with specific software modules to meet research requirements.

Additives and accessories further enhance the platform’s capabilities, making it adaptable for high-throughput screening or precise research applications.

Select from various well plate formats, ensuring reliable, high-quality recordings, whether working with neural organoids or other complex tissue models.

Meta

Category
Assay Design & Analysis
Field(s)
Imaging & Diagnostics
Target user(s)
Bench Scientist / Lab TechnicianClinical / Diagnostic Professional
Tag(s)
Lab Automation & Robotics