Ceyone Life Sciences

We design customized analytical methods that are precisely tailored to each project’s requirements. Our focus is on creating robust, sensitive, and reproducible methods that ensure accurate data across all stages of development. Each method undergoes phase-appropriate validation and is seamlessly transferred to manufacturing or partner sites, ensuring consistency, compliance, and reliability.
Method Development and Optimization

Flexibility to adopt the right approach for exploratory or large-scale requirements.

Specialized kilo lab infrastructure designed for seamless scale-up from milligram to kilogram quantities.

Skilled in handling multi-step synthesis, novel scaffolds, and complex intermediates.

Why Choose us?

Tailored methods for small molecules, intermediates, and APIs

Optimization for accuracy, sensitivity, and robustness

Phase-specific validation aligned with global regulatory guidelines

Smooth transfer between development and commercial facilities

Popular questions
Can Ceyone optimize an existing analytical method?

Yes. Existing methods can be evaluated and optimized to improve performance, robustness, reproducibility, and suitability for routine testing or development requirements.

Yes. Following method development and optimization, Ceyone can support analytical method validation to demonstrate that the procedure is suitable for its intended purpose.

Yes. Ceyone can support analytical method transfer activities, helping ensure that established methods can be reproduced reliably at the receiving laboratory.

What method development services does Ceyone provide?

Ceyone supports the development and optimization of analytical methods for pharmaceutical compounds, intermediates, and related materials, with a focus on reliable, reproducible, and fit-for-purpose analytical procedures.

Yes. Ceyone can develop analytical methods for new compounds and products based on their specific characteristics, analytical requirements, and intended application.

Method optimization involves evaluating and refining analytical conditions to improve parameters such as specificity, accuracy, precision, sensitivity, resolution, and reproducibility.