CRISPR/Cas-Enabled Paper Microfluidics Device for Rapid Diagnosis

CRISPR/Cas-Enabled Paper Microfluidics Device for Rapid Diagnosis

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Intro

1 of 12

1 of 12

Intro

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CRISPR/Cas-Enabled Paper Microfluidics Device for Rapid Diagnosis

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  1. 1 Intro
  2. 2 с Challenges: pathogen detection
  3. 3 Outline & Learning Objectives
  4. 4 Our approach: how does paper-origami device work?
  5. 5 Design and mechanism of new AGATHA sensor for viral RNA
  6. 6 Wastewater surveillance as a new public health tool
  7. 7 Wastewater-based epidemiology - a potential solution for predicting next pandemic?
  8. 8 What's going on wastewater surveillance worldwide?
  9. 9 A on-site nucleic acid enrichment method: Move sewage testing from the lab to the field
  10. 10 Detection mechanism with CRISPR/CAS-RT-LAMP
  11. 11 Paper-Origami Devices for Diagnosis and Sensing Wastewater for Public Health
  12. 12 Our contribution on wastewater surveillance for early warning of pandemic

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