Description
The High-Throughput Screening (HTS) System is an advanced automated platform designed for rapid, large-scale testing of chemical compounds, biological samples, and genetic materials. By integrating robotics, liquid handling, and high-speed data acquisition, it enables researchers to identify potential drug candidates, biomarkers, and novel therapeutic targets with unparalleled efficiency.
Key Features:
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- Ultra-High-Speed Compound Screening:
- Capable of processing thousands to millions of samples per day.
- Reduces time-to-discovery for novel therapeutics and biomolecular interactions.
- Automated Liquid Handling & Sample Processing:
- Robotic pipetting systems ensure precise and reproducible sample dispensing.
- Supports nanoliter-scale reactions, minimizing reagent consumption and cost.
- Multi-Modal Detection & Imaging:
- Compatible with fluorescence, luminescence, absorbance, and mass spectrometry readouts.
- High-content imaging for phenotypic screening and cellular response analysis.
- AI-Powered Data Analysis & Machine Learning Integration:
- Advanced algorithms identify promising hits, reducing false positives and negatives.
- Predictive modeling enhances lead optimization and target validation.
- Scalable & Modular Design:
- Adaptable for small-scale academic research or large pharmaceutical pipelines.
- Expandable automation components for increasing throughput capacity.
- Customizable Assay Formats:
- Supports 96-, 384-, and 1536-well plate configurations for flexible experimental design.
- Compatible with cell-based assays, biochemical reactions, and molecular screening.
- Integrated Robotics & Workflow Automation:
- End-to-end automation reduces manual intervention, increasing reproducibility.
- Minimizes human error and enhances laboratory efficiency.
- Seamless Data Management & Cloud Connectivity:
- Centralized data storage for easy access, analysis, and sharing.
- Integrates with laboratory information management systems (LIMS) for streamlined workflows.
- Ultra-High-Speed Compound Screening:
Applications:
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- Drug Discovery & Pharmaceutical Research: Screening thousands to millions of compounds for potential drug candidates.
- Genomics & Proteomics: Identifying gene functions, protein interactions, and biomarker discovery.
- Biotechnology & Synthetic Biology: Testing engineered biological pathways and optimizing enzyme activities.
- Toxicology & Safety Pharmacology: Evaluating compound toxicity and adverse effects in preclinical studies.
- Precision Medicine & Personalized Therapies: Screening patient-derived cells for individualized treatment approaches.





