The 768 channel gene synthesizer is a high-throughput gene synthesis device, and its core functions are mainly reflected in the following aspects:
1. High throughput parallel synthesis
Multi channel synchronous synthesis:
The core advantage of the 768 gene synthesizer lies in its parallel synthesis capability, which can simultaneously synthesize 768 genes. Each channel works independently, supports the construction of large-scale gene libraries, significantly improves synthesis efficiency, and is suitable for high-throughput needs in fields such as genomics, synthetic biology, and drug development.
Large scale production:
Through multi-channel design, rapid synthesis of multiple genes can be achieved, meeting the demand for a large number of gene fragments in scientific research projects or industrial production processes.
2. Accurate gene editing and synthesis
Precise sequence control:
Support precise design of gene sequences, including customized synthesis of promoters, coding regions, terminators, and other components. Accurate coupling of bases is achieved through chemical synthesis methods (such as phosphoramide method) to ensure that the synthesized gene sequence is consistent with the designed one.
Optimize synthesis strategy:
Built in algorithm optimizes the synthesis path, reduces synthesis errors and by-products, and improves the accuracy and success rate of gene synthesis.
3. Flexible synthesis range
How long is gene synthesis
Support gene synthesis from short fragments (such as tens of bases) to long fragments (such as thousands of bases), covering the needs of different application scenarios.
Modular design:
Complete genes, gene fragments, fusion genes, or mutants can be synthesized as needed to meet the diverse needs of research or industrial applications.
4.768 Gene Synthesis Instrument Automation and Intelligence
Fully automated process:
From raw material sampling, chemical reactions, cleaning to product collection, the entire process is automated to reduce manual intervention, errors, and pollution risks.
Intelligent control system:
Equipped with advanced temperature control, liquid control, and light control systems to ensure the stability and consistency of the synthesis reaction. At the same time, it supports remote monitoring and data analysis, making it convenient for users to adjust experimental parameters in real time.
5. Efficient purification and quality inspection
Online purification function:
The synthesized gene product can be quickly separated and purified through an integrated purification module, removing unreacted raw materials and by-products and improving product purity.
Quality inspection and verification:
Built in quality inspection functions (such as electrophoresis, fluorescence detection, etc.), real-time evaluation of the quality and integrity of synthesized genes, ensuring that products meet expected standards.
6. Data management and traceability
Experimental data recording:
Automatically record the synthesis parameters, reaction process, and result data of each channel, supporting data export and long-term storage.
Traceability:
Track each synthetic gene throughout the entire process using identifiers such as QR codes or barcodes to ensure the reliability and reproducibility of experimental results.
