Our team has versatile technical engineering knowlege in Peptide technology design and synthesis, and was one of the architectural construction team at Pfizer back in the days. Our research-scale peptide synthesizers are ideal for research and development, process enhancement, and small-scale production. By employing our patented nitrogen bubbling and 180º inversion mixing techniques, we ensure complete resin-to-solvent interaction during peptide synthesis.
O TirzPharm provides a 15ml reaction vessel that can be utilized alongside reaction vessel sizes from 20ml to 200ml, allowing for the simultaneous use of up to three reaction vessels for concurrent synthesis. Our 6-peptide parallel synthesis and 180 ° inversion mixing are applicable for research and development as well as high-volume GMP small-scale production, utilizing reaction vessel sizes between 20 mL and 100 mL.
Our pilot-scale peptide synthesizers are tailored for process development, scaling up, and single-batch production of clinical and commercial peptides. By utilizing overhead stirring with reaction vessel sizes from 200 mL to 5 L, our pilot-scale systems ensure consistency in the development of processes for commercial manufacturing. Each pilot-scale peptide synthesizer is custom-built to meet the specific requirements of the end user.
Our large-scale systems represent the leading automated peptide synthesizers available globally and are recognized as the gold standard for commercial-scale peptide synthesis. These commercial-scale peptide synthesizers are designed and manufactured according to customer specifications, boasting the largest installation base of any manufacturer. With reaction vessels ranging from 5L to 800L, we are equipped to fulfill any customer's needs for large-scale peptide synthesis.
TirzPharm designs oligonucleotide synthesizers at both pilot and commercial scales. These systems can be outfitted with our patented 180 ° inversion mixing for smaller-scale synthesis or with overhead mixing (stirred bed reactor) for larger-scale synthesis. The capacity of the reaction vessels is adjustable.
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