top of page
Discover the Latest in Biomedical Research Innovation
Search


Revolutionizing In Vitro Scratch Assays: How CytCut is Setting a New Standard in Cell Migration Research
Tired of inconsistent scratch assays with pipette tips? Meet CellCut by CLYTE—the game-changing device that delivers fast, reproducible in vitro scratches across 96-well plates in seconds. Designed for cell migration and wound healing studies, CellCut ensures precision, boosts throughput, and eliminates human error. Whether you're studying cancer, tissue regeneration, or drug responses, CellCut sets a new standard in high-quality, high-impact research.
Apr 232 min read
Â
Â


Unlocking Cell Secrets: A Deep Dive into the In Vitro Scratch Assay for Cell Migration Analysis
Unlock cell movement secrets! Discover the in vitro scratch assay, a key, low-cost method to study cell migration. Learn how this technique mimics wound healing and analyzes cell-cell/cell-matrix interactions using basic lab tools & microscopy. We cover its power, versatility with transfected cells, and crucial considerations like standardization for understanding cell behavior in vitro. Essential reading for cell biology insights!
Apr 212 min read
Â
Â


Irreproducibility in Preclinical Research: Impact, Causes, and Solutions
Over 50% of biomedical research is irreproducible, costing $28B+ yearly. Learn the causes, impact, and solutions to fix science!
Apr 23 min read
Â
Â


The Process of Wound Healing: From Injury to Regeneration
Wound healing process explained in simplest terms! Meet the emergency responders, clean-up crew, builders & architects repairing your body.
Apr 13 min read
Â
Â


How Operator Mistakes Lead to Cell Culture Contamination and the Broader Impact on Research and Healthcare
Operator errors cause up to 30% cell culture contamination, impacting research, sustainability, and patient care—automation offers solution.
Mar 193 min read
Â
Â
bottom of page
