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Greening the Economy: Sustainable Cities
Introduction to Graphic Illustration
Computational Social Science Methods
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Explore Node-Pore Sensing, an innovative electronic method for cell phenotyping. Learn how this technique measures cell properties and distinguishes sublineages in human mammary epithelial cells.
Explore how LIMS enhances laboratory quality through automation, data management, and compliance with regulatory requirements. Learn to implement effective quality measures for accurate, reliable results.
Explore automated tools for consistent, reliable, and efficient plasmid and protein purification, Western blotting, and cell isolation. Gain insights from industry expert Rouba Najjar.
Explore droplet microfluidics in PCR, focusing on Digital Droplet PCR technology, its advantages over traditional qPCR, and applications in various fields like NIPT, pathogen detection, and liquid biopsy.
Explore innovative 'Lab on a Particle' technology for single-cell analysis, linking cell function to multi-omic data. Learn about hydrogel microparticles for cell capture and secretion analysis in various applications.
Explore ultra-high throughput single cell biology for T cell potency and drug testing. Gain insights into CAR-T therapies, potency assays, and overcoming barriers in cell-based medicines.
Explore cost-effective automation of ELISA assays, including sandwich EIA, competitive ELISA, and bead-based ELISA for SARS-CoV-2 antibodies. Learn streamlined workflows and compare manual vs automated techniques.
Explore G protein-coupled receptors and receptor activity-modifying proteins interactions through multiplexed mapping, uncovering potential therapeutic targets for various human diseases.
Explore pharmacokinetics and pharmacodynamics of β-lactam antibiotics, focusing on precision dosing strategies for ICU patients. Learn about population-level approaches and Bayesian probability in antibiotic administration.
Explore innovative stem cell-based models for studying lung cancer mechanisms, focusing on Small Cell Lung Cancer and adenocarcinoma, to overcome limitations in current cancer research.
Explore an innovative microphysiological system model for NASH, addressing the urgent need for improved preclinical testing to better predict drug efficacy in metabolic-associated steatohepatitis.
Explore best practices and recent advances in CNS drug delivery for development and toxicology, focusing on emerging therapies, translational challenges, and innovative dosing approaches.
Explore novel treatments targeting epithelial-mesenchymal transition to combat drug resistance and metastasis in cancer, focusing on recent developments and therapeutic potential.
Explore a streamlined workflow for sequencing and analyzing pharmacogenomic data, advancing research in personalized medicine and drug response prediction.
Explore targeted sequencing techniques for diverse viruses, from small to large genomes, with insights from UNC Vironomics Core Director Dr. Dirk Dittmer.
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