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Conditional Custom Model Construction Technologies & Cre-ESC Innovation
LIVE WEBINAR
Conditional Custom Model Construction Technologies & Cre-ESC Innovation
Generating conditional models (especially CKI/CKO) via traditional strategies is often plagued by significant bottlenecks: slow turnaround times, high costs, low efficiency, and labor-intensive breeding. In this webinar, we will introduce Cyagen’s independently developed TurboKnockout®-based Cre-ESC technology, which fundamentally addresses these bottlenecks and enables the rapid, one-step generation of high-purity CKI/CKO homozygous models.
DATE
10: 00 AM - 11:00 AM PDT
LOCATION
Online | Zoom

Webinar Summary

This webinar focuses on the application value, technical principles, and key challenges of conditional custom animal model construction.
We will systematically explain:
  • Why cKO/cKI models dominate current research demand
  • The underlying mechanism of the Cre-loxP system
  • Critical pain points in conventional multi-generation breeding
  • How TurboKnockout®-based Cre-ESCs dramatically shorten construction cycles
  • Real case studies demonstrating tissue-specific gene activation and validation in F0 generation
Topic Covered
  • Application Value & Core Demands of Custom Models
  • Conditional Custom Model & Technical Pain Points
  • TurboKnockout® - Pain Point Resolution Foundation
  • Cre-ESCs - Pain Point Resolution Technology
  • Successful Case Studies
  • Available Cre-ESC Lines
Who Should Attend
Are building or planning cKO/cKI mouse models
  • Need tissue-specific gene activation or knockout, but are limited by long timelines or complex breeding
  • Work in gene function studies, disease mechanism research, or preclinical drug development
  • Want to shorten model generation cycles while maintaining high model purity and stability
Attend this Webinar to:
  • Learn how TurboKnockout®-based Cre-ESCs overcome long construction cycles
  • See how 99.9% chimeric cKO/cKI homozygotes can be achieved in one step
  • Review real experimental data validating tissue-specific Cre efficiency
  • Gain insights into available Cre-ESC lines and turnaround timelines

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