The purpose of this study was to assess the stability of protein formulations using a device designed to generate defined, quantifiable levels of shear in the presence of a solid-liquid interface. The device, based on a rotating disk, produced shear strain rates of up to 3.4 × 104 s-1 (at 250 rps) and was designed to exclude air-liquid interfaces and enable temperature to be controlled. Computational fluid dynamics (CFD) was used to study the fluid flow patterns within the device and to determine the shear strain rate (s-1) at a range of disk speeds. The device was then used to study the effect on a monoclonal IgG4 of high levels of shear at the solid-liquid interface. Monomeric antibody concentration and aggregation of the protein in solut...
ABSTRACT: Purpose: To study the effect of several operative parameters, particularly pH and salt con...
Monoclonal antibodies (mAbs) represent an important part of biological pharmaceutics. A serious chal...
A novel microfluidic device that subjects a solution to a constant shear flow was developed. By taki...
Exposure to high shear during bioprocessing operations has been reported to be associated with losse...
AbstractRelative stability of therapeutic antibody candidates is currently evaluated primarily throu...
The development time of therapeutic monoclonal antibodies (mAbs) has been shortened by formulation p...
Current trends in market for high dose therapeutic proteins require concentrated liquid formulations...
Solutions of monoclonal antibodies (mAbs) at high concentration are strongly desirable for subcutane...
© 2020 The Author(s). Published with license by Taylor & Francis Group, LLC. High physical stabili...
Aggregation of biopharmaceuticals triggered by interfaces is a challenge at various levels from upst...
Exposure to interfaces can accelerate aggregation of antibody therapeutics, particularly under stres...
High protein titers are gaining importance in biopharmaceutical industry. A major challenge in the d...
The early-stage assessment of the physical stability of new monoclonal antibodies in different formu...
Purpose: The aim of this study was to markedly lower the viscosities of highly concentrated protein...
Adsorption of antibody therapeutics to air–liquid interfaces can enhance aggregation, particularly w...
ABSTRACT: Purpose: To study the effect of several operative parameters, particularly pH and salt con...
Monoclonal antibodies (mAbs) represent an important part of biological pharmaceutics. A serious chal...
A novel microfluidic device that subjects a solution to a constant shear flow was developed. By taki...
Exposure to high shear during bioprocessing operations has been reported to be associated with losse...
AbstractRelative stability of therapeutic antibody candidates is currently evaluated primarily throu...
The development time of therapeutic monoclonal antibodies (mAbs) has been shortened by formulation p...
Current trends in market for high dose therapeutic proteins require concentrated liquid formulations...
Solutions of monoclonal antibodies (mAbs) at high concentration are strongly desirable for subcutane...
© 2020 The Author(s). Published with license by Taylor & Francis Group, LLC. High physical stabili...
Aggregation of biopharmaceuticals triggered by interfaces is a challenge at various levels from upst...
Exposure to interfaces can accelerate aggregation of antibody therapeutics, particularly under stres...
High protein titers are gaining importance in biopharmaceutical industry. A major challenge in the d...
The early-stage assessment of the physical stability of new monoclonal antibodies in different formu...
Purpose: The aim of this study was to markedly lower the viscosities of highly concentrated protein...
Adsorption of antibody therapeutics to air–liquid interfaces can enhance aggregation, particularly w...
ABSTRACT: Purpose: To study the effect of several operative parameters, particularly pH and salt con...
Monoclonal antibodies (mAbs) represent an important part of biological pharmaceutics. A serious chal...
A novel microfluidic device that subjects a solution to a constant shear flow was developed. By taki...