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Cell Imaging Protocol: A Step-by-Step SOP for Quantitative, Analysis-Ready Microscopy
A no-fluff, step-by-step cell imaging protocol for microscopy images you can actually quantify. Eighteen numbered steps take you from Köhler setup and pixel calibration, through setting exposure on your brightest sample so nothing saturates, to acquiring the whole set under locked, identical settings. Works for brightfield, phase contrast, and fluorescence. Includes an equipment table, an acceptance-criteria checklist, and a troubleshooting table mapping each symptom to the s
Jul 296 min read


CytCut 3.5 Is Available Now: The Wound Healing Assay Tool You Asked For, Ready to Ship Today
You asked to get CytCut onto your bench now instead of waiting, so here it is. CytCut 3.5 is available for immediate order at $36, in 24- and 48-well, the same wound healing assay tool that turns minutes of pipette scratching into seconds of consistent, reproducible wounds. It's UV- and alcohol-sanitizable with a 3–6 month working life. The autoclavable CytCut 4.0 is still on track for end of September at $99 pre-order. Order 3.5 with code cytcut352673 for $15 off through Jul
Jul 105 min read


Alternative to ImageJ for Easy Cell Migration Analysis
Stop wasting hours on manual ImageJ thresholding. Sophie AI 3.0 introduces a "Zero-Click" Scratch Assay Analyzer that quantifies cell migration in seconds. With batch processing, AI-driven edge detection, and instant statistical reporting, it's the modern replacement for Fiji. Learn how to automate your wound healing assays and eliminate user bias today.
Jan 284 min read


CLYTE 2025 Wrapped: From Hardware Beta to AI-Powered Biomedical Platform
2025 was the year CLYTE evolved from a hardware startup into a biomedical platform. From validating the CytCut device to launching Sophie AI, we achieved ~50k monthly visitors and 5 million impressions with extreme capital efficiency. Discover how we uncovered a massive market gap in lab protocols and secured our place in the future of lab automation.
Jan 24 min read


Scrap the Tip: How CytCut Is Eliminating ~200 Tons of Laboratory Plastic Waste
Scientific research has a plastic problem. Every year, laboratories perform an estimated 3 million "scratch assays" using disposable pipette tips, generating around 200 tons of contaminated plastic waste that cannot be recycled. CytCut offers a solution: a reusable device that eliminates this waste at the source. By replacing single-use tips and improving experimental reproducibility, CytCut cuts carbon footprints by up to 11-fold, proving that science can be rigorous without
Dec 26, 20255 min read


The Wound Healing (Scratch) Assay Tool Labs Have Been Waiting For: CLYTE Releases CytCut!
Stop letting inconsistent pipette scratches ruin your wound-healing assays. Manual methods waste time and money, while automation costs $20k+. The solution is here: CytCut by CLYTE. This simple, robust tool creates uniform scratches in 10-20 seconds with <5% CV precision for a $199 pre-order. It's fully autoclavable, requires no training, and pays for itself by preventing a single failed plate. Standardize your data and pre-order CytCut now.
Oct 27, 20256 min read


CLYTE: The AI-Powered Biotech Startup Revolutionizing Biomedical Research
CLYTE, a trailblazing AI-biotech startup, is revolutionizing biomedical research. With groundbreaking innovations like the AI lab assistant Soφ, the precision tool CellCut, and the upcoming cell culture monitor Cadmus, CLYTE is tackling inefficiencies and enhancing research standardization. Their unique "First-Client Initiative" offers researchers free access to beta products, fostering a collaborative approach to scientific discovery and accelerating the pace of healthcare i
Sep 26, 20253 min read


What Is Happening At The Edge Of The Cell Migration?
Ever wondered what's really happening at the edge of your scratch assay? It's more than just an empty gap—it's a bustling frontier of cellular transformation. Cells at the wound edge aren't just sitting there; they are undergoing a profound morphological shift, polarizing their bodies, sprouting sheet-like lamellipodia, and gripping the substrate to pull themselves forward. This isn't an artifact; it's the beautiful, complex biology of cell migration in action.
Aug 11, 20255 min read
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