Opentrons Flex Tip Adapter Set


Opentrons Flex Tip Adapter Set is an innovative accessory designed to support third-party Evosep Evotips tips. It is designed to realize a fully automatic preparation process of protein samples before mass spectrometry analysis, freeing scientific researchers from tedious manual operations and focusing on more valuable data analysis and scientific research innovation.

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Make sample purification before mass spectrometry “fully automatic and more reliable”

Unparalleled flexibility puts you in control of your research

  • Full process support, one-stop solution for sample purification and storage

    The adapter set fully supports the Evosep Evotip process. From sample purification to storage, the entire process can be automated on the Opentrons Flex platform and directly connected to mass spectrometry analysis, greatly simplifying the experimental link.

  • Modular design, lightweight, durable and more economical

    Adopting a lightweight and durable aluminum structure, it can be used as a cost-effective accessory that can be flexibly added to new or existing Flex systems, eliminating the need for large-scale equipment replacement and reducing scientific research costs.

  • Validated workflow for worry-free experimental reproducibility

    The Opentrons protocol library provides standardized and verified workflows to ensure stable and reliable experimental results, helping scientific researchers to get started quickly and conduct experiments efficiently.

Product introduction

The Opentrons Flex Tip Adapter Set contains 4 adapters that perfectly support the Opentrons Flex 96-channel pipette (5–1,000 μL), enabling efficient loading and capture of enzymatic protein samples into Evotips.

Demo video

Click to watch the Opentrons Flex Tip Adapter Kit operation demonstration

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experimental data

Protein sample cleanup from HeLa cells was automated on third-party Evosep Evotips using optimized protocols on Opentrons Flex. Direct comparison to manual preparation showed that the total number of protein identifications remained consistent across 3 independent experimental batches of 48 samples each, demonstrating that this method yields reproducible and reliable results while reducing hands-on time.

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