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Dive into the research topics where Juliane Diedrich is active.

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Featured researches published by Juliane Diedrich.


Journal of Chromatography A | 2017

Multi-state steric mass action model and case study on complex high loading behavior of mAb on ion exchange tentacle resin

Juliane Diedrich; William Heymann; Samuel Leweke; S. Hunt; R. Todd; Christian Kunert; Will Johnson; Eric von Lieres

Tentacle resins for IEX are increasingly applied in preparative chromatography for their higher selectivity and higher capacities in comparison to IEX resins without tentacles. However, tentacle resins are often observed to cause unusual elution behavior of monoclonal antibodies under high loading conditions. Understanding this elution behavior is important for a quality by design approach, as it is now mandated by regulatory agencies. A model-based analysis of load, wash and gradient elution is performed for a monoclonal antibody (mAb) on Fractogel SO3-. Four experiments with increasing loaded mass show complex peak shapes and formation of a shoulder under overloaded conditions. We hypothesize that the observed peak shapes are caused by mAbs binding in multiple states on the tentacle ion-exchange resin. A new multi-state SMA binding model is used for testing this hypothesis. A two-state binding model is found to quantitatively reproduce all four experiments. An in-depth analysis reveals that the shoulder formation under overloaded conditions can be explained by multi-state binding that particularly manifests in rapid but weak re-adsorption of eluting molecules near the column end. The introduced multi-state SMA model combines features of the so-called spreading model (multiple bound states) and of the standard SMA model (salt dependency). It is by no means limited to ion-exchange chromatography on tentacle resins, but the same concept can be applied for studying systems that are based on other physical mechanisms. The new model can potentially improve mechanistic understanding and facilitate quantitative simulation of various phenomena, such as caused by reorientation, reconformation or unfolding of bound species. Similar concepts can be applied for studying surface-induced aggregation and denaturation.


Chemie Ingenieur Technik | 2018

Multi-state steric mass action model applied to binding of mAb on tentacle resins under high loading conditions

Juliane Diedrich; William Heymann; Samuel Leweke; E. von Lieres; S. Hunt; R. Todd; C. Kunert; W. Johnson


Helmholtz-Jahrestagung im Strategieprozess "Biotechnologie 2020+", MIE-Projekt | 2017

Strongly coupled network simulation with CADET (Chromatography Analysis and Design Toolkit)

William Heymann; Juliane Diedrich; Samuel Leweke; Eric von Lieres


Helmholtz-Jahrestagung im Strategieprozess "Biotechnologie 2020+", MIE-Projekt | 2017

A new binding model for complex elution behavior of mAb under high loading conditions on tentacle resins

Juliane Diedrich; S. Hunt; R. Todd; Samuel Leweke; W. Johnson; William Heymann; C. Kunert; Eric von Lieres


4th European Congress on Applied Biotechnology (ECAB4) | 2017

A new binding model for complex elution behavior of mAb under high loading conditions on cation exchange tentacle columns

Juliane Diedrich; S. Hunt; R. Todd; Samuel Leweke; W. Johnson; William Heymann; C. Kunert; Eric von Lieres


30th International Symposium on Preparative and Process Chromatography | 2017

A new binding model for complex elution behaviour of mAb under high loading conditions on cation Exchange tentacle resins

Juliane Diedrich; S. Hunt; R. Todd; Samuel Leweke; W. Johnson; William Heymann; C. Kunert; Eric von Lieres


13th International PhD Seminar on Chromatographic Separation Science | 2017

A modeling framework for transport, binding and equilibria of buffer components in packed bed columns

Juliane Diedrich; Eric von Lieres


PhD Seminar on Chromatographic and Separation Science | 2016

Chromatographic and Separation Science

Juliane Diedrich; Samuel Leweke; T. Maßmann


New Biotechnology | 2016

Integrated modeling of transport processes, buffer equilibria and biochemical reactions in chromatography columns using CADET

Juliane Diedrich; Samuel Leweke; Eric von Lieres


International Conference on Molecular Interaction Engineering (MIE) | 2016

Integrated modeling of transport processes, buffer equilibria and biochemical reactions in CADET

Juliane Diedrich; Samuel Leweke; Eric von Lieres

Collaboration


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Eric von Lieres

Forschungszentrum Jülich

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Samuel Leweke

Forschungszentrum Jülich

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William Heymann

Forschungszentrum Jülich

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E. von Lieres

Forschungszentrum Jülich

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S. Leweke

University of Cologne

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