In genomic and proteomic research, liquid handling systems—primarily pipettors and dispensers—transfer DNA or protein solutions into microwells or onto substrates, often at micro- or nanoliter volumes. Central to the reliability of these instruments is sealing technology, which ensures that the volume of liquid aspirated is the exact volume delivered to the target. This precision is a foundation of modern life sciences and medical instrumentation.
High-throughput experiments have become the standard for modern discovery, requiring extreme efficiency and reliability.
A seal's primary function is to maintain a pressure drop from a positive fluid pressure area to a relatively lower pressure area for a specific duration. In liquid handling tools, this pressure maintenance is vital for overcoming surface adhesion, which is the dominant force that prevents liquid from dropping when volumes are small.
Most precision instruments rely on the "memory effect" of seal materials. When a seal is installed and "squeezed" in a groove, it creates initial interference. As pressure is applied, the material deforms against the surface; the higher the pressure, the tighter the seal becomes, to provide a hermetic fit. However, inconsistency in this sealing force leads directly to volume errors and cross-contamination. In automated liquid handling systems, this consistency is essential because the seal governs the pressure differential that determines the exact volume of liquid aspirated and dispensed.
Standard seals often face significant hurdles in life science applications:
Polymer Concepts Technologies specializes in highly-engineered sealing solutions designed specifically for the most critical life science applications, including HPLC, UHPLC, and precision dispensing. Our approach addresses the deficiencies of standard seals through advanced materials and mechanical design.
Polymer Concepts Technologies utilizes a vast array of high-performance thermoplastics that outperform standard rubbers in aggressive lab environments:
Because high-performance polymers like PTFE lack the inherent elasticity of rubber, Polymer Concepts Technologies also utilizes spring-energized U-sections.
Polymer Concepts Technologies' solutions are custom-machined to fit the tight tolerances of automated workstations. By eliminating the "hang-up" common in standard seals and using composite coatings for low friction, these seals ensure the long-term reproducibility required for genomic sequencing and automated drug discovery.
As the life sciences transition toward screening millions of compounds at the nanoliter scale, the requirement for accurate and consistent liquid handling has never been higher. By leveraging the advanced engineering of Polymer Concepts Technologies, laboratories can ensure their instruments maintain the hermetic integrity necessary for the next generation of pharmaceutical discovery. Reliable sealing technology therefore becomes a foundational element in ensuring the accuracy, repeatability, and scalability required in modern high-throughput screening.
Need precision sealing solutions for your liquid handling, HPLC, or UHPLC instruments? Contact Polymer Concepts Technologies today to discuss a custom-engineered solution for your application.