Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Measuring Biotherapeutic Viscosity and Degradation On-Chip with Particle Diffusometry

View through CrossRef
In absence of efficient ways to test drug stability and efficacy, pharmaceuticals that have been stored outside of set temperature conditions are destroyed, often at great cost. This is especially problematic for biotherapeutics, which are highly sensitive to temperature fluctuations. Current platforms for assessing the stability of protein-based biotherapeutics in high throughput and in low volumes are unavailable outside of research and development laboratories and are not efficient for use in production, quality control, distribution, or clinical settings. In these alternative environments, microanalysis platforms could provide significant advantages for the characterization of biotherapeutic degradation. Here we present particle diffusometry (PD), a new technique to study degradation of biotherapeutic solutions. PD uses a simple microfluidic chip and microscope setup to calculate the Brownian motion of particles in a quiescent solution using a variation of particle image velocimetry (PIV) fundamentals. We show that PD can be used to measure the viscosity of protein solutions to discriminate intact protein from degraded samples as well as to determine the change in viscosity as a function of therapeutic concentration. PD viscosity analysis is applied to two particularly important biotherapeutic preparations: insulin, a commonly used protein for diabetic patients, and monoclonal antibodies which are an emerging class of biotherapeutics used to treat a variety of diseases such as autoimmune disorders and cancer. PD-based characterization of solution viscosity is a new tool for biotherapeutic analysis, and owing to its easy setup could readily be implemented at key points of the pharmaceutical delivery chain and in clinical settings.
Title: Measuring Biotherapeutic Viscosity and Degradation On-Chip with Particle Diffusometry
Description:
In absence of efficient ways to test drug stability and efficacy, pharmaceuticals that have been stored outside of set temperature conditions are destroyed, often at great cost.
This is especially problematic for biotherapeutics, which are highly sensitive to temperature fluctuations.
Current platforms for assessing the stability of protein-based biotherapeutics in high throughput and in low volumes are unavailable outside of research and development laboratories and are not efficient for use in production, quality control, distribution, or clinical settings.
In these alternative environments, microanalysis platforms could provide significant advantages for the characterization of biotherapeutic degradation.
Here we present particle diffusometry (PD), a new technique to study degradation of biotherapeutic solutions.
PD uses a simple microfluidic chip and microscope setup to calculate the Brownian motion of particles in a quiescent solution using a variation of particle image velocimetry (PIV) fundamentals.
We show that PD can be used to measure the viscosity of protein solutions to discriminate intact protein from degraded samples as well as to determine the change in viscosity as a function of therapeutic concentration.
PD viscosity analysis is applied to two particularly important biotherapeutic preparations: insulin, a commonly used protein for diabetic patients, and monoclonal antibodies which are an emerging class of biotherapeutics used to treat a variety of diseases such as autoimmune disorders and cancer.
PD-based characterization of solution viscosity is a new tool for biotherapeutic analysis, and owing to its easy setup could readily be implemented at key points of the pharmaceutical delivery chain and in clinical settings.

Related Results

New Compositional Models for Calculating Viscosity of Crude Oils
New Compositional Models for Calculating Viscosity of Crude Oils
Abstract Crude oil viscosity is an important physical property that controls and influences the flow of oil through porous media and pipelines. Hence, it is the b...
Research on the Dynamic Granulation Viscosity Reduction Technology for Venezuela' S Ultra Heavy Oil
Research on the Dynamic Granulation Viscosity Reduction Technology for Venezuela' S Ultra Heavy Oil
Abstract Based on the physico-chemical property of Venezuela ultra heavy oil, active macromolecule viscosity reducer (CVR) was designed and prepared. Viscosity reduc...
Comparing genome-wide chromatin profiles using ChIP-chip or ChIP-seq
Comparing genome-wide chromatin profiles using ChIP-chip or ChIP-seq
AbstractMotivation: ChIP-chip and ChIP-seq technologies provide genome-wide measurements of various types of chromatin marks at an unprecedented resolution. With ChIP samples colle...
Verification of High Speed on Chip with VIP using System Verilog
Verification of High Speed on Chip with VIP using System Verilog
Abstract - The exploration work is addressing verification of High speed on chips protocol; we've used the system Verilog grounded test bench structure. I developed a system Verilo...
Anaerobic Thermal Stability Testing of Polymers Under High Salinity and Temperature Conditions for EOR Applications
Anaerobic Thermal Stability Testing of Polymers Under High Salinity and Temperature Conditions for EOR Applications
Abstract Enhanced oil recovery (EOR) is a technique used to increase oil production from a reservoir. This study primarily focuses on chemical EOR using polymer f...
Abstract 4146122: Potential Protective Roles of Clonal Hematopoiesis of Indeterminate Potential in Angina Pectoris
Abstract 4146122: Potential Protective Roles of Clonal Hematopoiesis of Indeterminate Potential in Angina Pectoris
Introduction: Clonal hematopoiesis of indeterminate potential (CHIP) poses strong relationship to the occurrence of cardiovascular diseases with the process of aging. I...
Soil degradation – the result of anthropogenic factors
Soil degradation – the result of anthropogenic factors
Annotation Purpose. To develop a matrix for the classification of degradation processes, regarding the possibility of soil restoration according to their list, which will allow to ...

Back to Top