
Advancing Cellular Insights in Neurodegenerative Disease Research
Explore cellular pathways, drug binding, protein expression, and more in one future-ready system. The SpectraMax i3x Multi-Mode Microplate Reader, when complemented with the MiniMax 300 Imaging Cytometer, transforms from a powerful detection platform into an integrated cellular research hub offering scientists the advantage of multiplexed data collection and visualization. For neurodegenerative disease research, this union offers a comprehensive tool that not only quantifies but also visualizes the intricate cellular events, providing a richer and more nuanced understanding of the disease mechanisms and potential therapeutic strategies.
Cellular Insights with Advanced Imaging
Delve deeper into the cellular dynamics of neurodegenerative diseases. Witness real-time phenotypic changes, from protein expression to cytotoxicity, offering unparalleled perspectives in disease progression and potential therapeutic interventions.
StainFree™ Technology: Simplifying Cell Analysis
Revolutionize cellular studies in neurodegenerative research with StainFree™ Cell Detection. Visualize and analyze neuronal cells without the need for destructive stains, preserving sample integrity and ensuring accurate insights into disease mechanisms.
Bridging Assays with Multi-Functional Detection
Effortlessly oscillate between diverse assays pivotal in studying neurodegenerative diseases. User-configurable detection modules ensure that as the complexity of your research grows, the technology evolves right alongside.
Enhancing Neuroscience Research with Spectamax I3x: Advanced Brain Modeling

Current models available to neuroscience researchers often fall short, hampering the development of new medicines. Traditional methods, such as post-mortem brains and animal models, fail to fully capture the complexity and functionality of the human brain. In vitro models, while scalable, lack the complex organization and structure of the human brain making it difficult to obtain accurate studies. To address these limitations, StemoniX® developed the microBrain® 3D platform using hiPSC-derived neural progenitor cells. This innovative approach creates highly homogenous 3D neural cortical spheroids that closely resemble the human brain, facilitating more accurate drug development. With instruments like the SpectraMax i3x Microplate Reader, researchers can now achieve unparalleled insights into human brain physiology in vitro, accelerating the quest for effective treatments for nervous system disorders.
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*Price, time to deliver, and specifications will vary based on mutually agreed technical requirements. Solution requirements may cause adjustment to standard performance.