Showing posts with label Single Use Systems. Show all posts
Showing posts with label Single Use Systems. Show all posts

Wednesday, May 28, 2014

Single-Use Tech: How it Stacks Up in Virus Production

This post was contributed by @MikeMadarasz of the Institute of International Research

Over the last ten years, single-use bioreactors have been gaining traction in biopharmaceutical manufacturing by answering some of the key challenges in the industry.  We can expect manufacturers to look to this technology to answer key questions in vaccine production, especially with the need for animal vaccines reportedly expected to increase.  HIPRA, an animal health company focused on biologic products for poultry, swine and dogs among other things, had some recent experience working with single-use bioreactors (SUBs).  They outlined some of the major implications in implementing single-use bioreactors and how they stack up against multiuse bioreactors (MUBs) in a recent study.

Implementation
According to the study, the first thing that should be taken into account when considering a single-use system is whether or not you’re changing from multiuse technology or implementing a single-use system initially.  SUBs tend to deviate from conventional design, so converting from MUBs requires some adjustment on behalf of the manufacturers.  On the other hand, when beginning directly with SUBs, it becomes much easier to start small and scale-up. 

Set up time
SUB installation is much more efficient than the multiuse variety requiring only electrical, power, water and gas supplies.  In addition, the sterilization and cleaning efforts are also greatly reduced.  The report cites this as saving HIPRA about two months of set up time. 

Handling
The fashion in which SUBs and MUBs are handled also deviates.  SUBs tend to require more manual handling than MUBs, where many of the sterilization processes are automated.  To prevent some of the manual errors, many single-use bioreactors utilize a system of interchangeable tubes that must be welded together.  That said, the report recommends changing out “nonweldable” tubing for the variety that’s able to be welded in order to eliminate those errors.  
  
Quality of Process
Due to the nature of these processes and the fact that they deal with many viruses, efficiency is not the only thing that needs attention.  Safety is certainly a concern as well.  How can you properly mitigate biosafety risks?  What can be done to uphold bag integrity?  Is the vendor offering the necessary training?  These are some of the considerations that must be taken into account in both processes.

You can get the full study, Comparing Multiuse and Single-Use Bioreactors for Virus Production, here

We’ve got more on the latest in Single-Use technology.  Check out Single Use for BiopharmaceuticalManufacturing, June 9-10, Boston, MA.  You can download the agenda here.

SAVE 20%* to attend this meeting.  Register here and use code XB14187BLOG. 

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Wednesday, April 16, 2014

Single-Use Tech: Four Facts to Impress Your Colleagues

This post was authored by Mike Madarasz of the Institute for International Research.  You can follow him on Twitter at @MikeMadarasz

The verdict is on the environmental effects of single-use technology in comparison to stainless steel.  We now have a good grasp on this topic and all signs point to single-use systems impacting the surrounding environment to a much lesser extent than re-useable technologies.  BioProcess International recently took a close look at some of the sustainability issues associated with single-use processes.  Here are four facts you can use to impress your colleagues the next time this conversation comes up:

·       -  A single-use technology facility uses about 50% less energy than one based in stainless steel.  This is largely due to the amount of energy required to heat processed water in sterilizing reusable equipment. 

·      -  Some studies suggest that adopting a single-use system results in a reduction of about 85% of both water usage and waste generation from that of stainless steel.

·      -  One study shows that energy demand and global warming potential with single-use systems is 30-35% lower than stainless steel systems over the full manufacturing life of the facility.

·      -  As far the different types of environmental impacts associated with single-use, 22 different categories have been identified. 

How can single-use technology become improve on its environmental impact? One idea is to reduce the impact of disposable plastic containers used in these processes. The most common solution there appears to be finding ways to repurpose and recycle that plastic rather than letting it amount to waste.

Any other ideas on improving sustainability?

You can check out the full article from BPI here.

We’ve got much more on single-use systems. Check out Single-UseApplications for Biopharmaceutical Manufacturing. June 9-10, Boston MA

Register now and SAVE 20%. Use code XB14187BLOG

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Friday, February 28, 2014

Nine Case Studies Improve Your Single-Use Platform

http://bit.ly/1lnTgbtDid you know that a production facility using single-use technologies can reduce capital costs by up to 40% compared to traditional stainless steel facilities?

Learn how industry leaders are utilizing the latest disposable technologies to increase productivity and lower costs while complying with regulatory guidelines at IBC's Single-Use Applications for Biopharmaceutical Manufacturing conference this June in Boston.

Over the last decade, this interactive conference has helped scientists, engineers, managers, directors and executives from across the globe design more efficient and economical single-use platforms.

Nine Case Studies Help You Overcome Complex Drug Product and Manufacturing Challenges:

Single-Use Systems in a Perfusion Cell Culture Process
Russell Wong, Ph.D., Principal Engineer, Bayer Health Care

Single-Use Cell-Expansion and Volume Reduction Technologies
Sally Hassan, Ph.D., Post-Doctoral Research Associate, University College London

Identifying and Solving a Cell Growth Inhibition Issue in Single-Use Shake Flasks
Olga Smiliotopoulos, M.S., Scientist, Culture Process Development, Pfizer Inc.

Production of Cell Culture-Based Influenza A Virus in Single-Use Bioreactors
J. David Gangemi, Ph.D., President and CSO, ViraCell Advanced Products, LLC

Single-Use Mixing systems in Large-scale Live-viral Vaccine Upstream Processes
Daniel C. Vellom, Ph.D., Senior Director, Sanofi Pasteur Biologics

Adopting a Fully Single-Use Process to Improve Speed to Clinic
Ross W. Acucena, Regulatory Consultant, EMD Millipore

A Closed Sterile System for Viral Vaccine Purification Using Single-Use Technologies
Julia Telychko, Associate Scientist, BioProcess R&D, Sanofi-Pasteur

Rational Selection and Capacity Improvement of Disposable Filters
Johannes Felix Buyel, M. Sc., Integrated Production Platforms, RWTH Aachen University

Single Use Systems - An End User's Perspective
Alex Tschumakow, Director, Manufacturing, Shire

To learn more, download our brochure.

Register with priority code XB14187BLOG to save 20% off of our standard rate:. If you have questions about the event, feel free to contact our group manager, Kate Devery (Kdevery@iirusa.com), or visit our webpage.

We look forward to seeing you June 9th-10th in Boston!

Cheers,
The Single-Use Team

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Wednesday, January 15, 2014

8 Case Studies of Facility Implementation & Lessons Learned:

http://bit.ly/1m5p2GiRegister Today for a Look at State-of-the-Art Facilities, Technologies and Processes to Optimize Your Future Production Needs. View our case studies below:

• Reinventing Biomanufacturing: Case Studies of Flexible Facilities; Multi-product Vaccine Facility – Benefits and Challenges Niels Guldager, Senior Technology Partner, NNE Pharmaplan, Denmark Klaus Hermansen, Senior Technology Partner, NNE Pharmaplan, Denmark

• Facility of the Future – Single Use Facility Chien Lin, Senior Manager, Process Engineering, Global Project Engineering, Biogen Idec, Inc.

• Implementing New Flexible and Single-Use Devices and Processes for Vaccine Manufacturing: Case Study on Formulation and Filling Kirsten Strahlendorf, Senior Scientist, Sanofi Pasteur, Canada

• Flexibility Defined: A Case Study on Multi-Product, Multi-Technology Vaccine Manufacturing Facilities Andrew Strong, President and CEO, Kalon Biotherapeutics

• Single-use Mixing Systems in Large-scale Live-viral Vaccine Upstream Processes Daniel C. Vellom, Ph.D., Sr Director, Biotechnology Expert, Global Technology Innovation, Sanofi Pasteur Biologics, LLC

• Increasing Control and Flexibility for Development and Manufacturing Processes Sebastien Ribault, Ph.D., Director, Bioproduction and Development, Merck Millipore, France

• Single Use Systems – An End User’s Perspective Alex Tschumakow, Director, Manufacturing, Shire

• Implementing and Improving Disposable Systems Chris M. Brodeur, Associate Director, Commercial Operations, BioMarin

To learn more, view our full agenda.

 Register by 1/17 with priority code FLEX14BLOG and save $200 off of the standard rates. If you have questions about the event, feel free to contact our group manager, Kate Devery (Kdevery@iirusa.com), or visit our webpage.

We look forward to seeing you February 24-25 in Berkeley, California!

Cheers,
The Flexible Facilities Team

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Tuesday, September 3, 2013

Single-Use Technologies: From Passenger to Industry Driver

Today's guest post comes from BioProcess International Exhibitor Catalent Pharma Solutions. BPI will take place September 16-19, 2013 in Boston, MA. As a reader of this blog, when you register to join us and mention code , you can save 20% off the standard rate when you mention BLOG13JP.

Biological molecules, such as proteins, peptides and monoclonal antibodies, are widely used as safe, effective, and tailored treatments for a number of diseases, but producing them involves number of steps, from production in cells (often mammalian cells) through to separation, purification and formulation. Traditionally, these biomolecules have been produced in stainless-steel systems which have been fixed into walls and floors, making movement of these systems impossible at worst and difficult at best. The fact that each system needs to be cleaned and sterilized when moving to a new production increases the amount of time between manufacturing runs and requires many resources in order to qualify and clean. This is the old way of production and in order to increase speed and reproducibility, many manufacturers are moving to Single Use technologies.

Why should we care?

As the biopharmaceutical industry matures, improving manufacturing efficiency is taking on increasing importance. Single-use systems have made manufacturing not only more convenient but also more efficient, the manufacturing more reproducible and sustainable. Single use systems will therefore have a substantial impact on the future of conventional therapies. In addition, this technological advance will finally allow for the cost-effective production of orphan and personalized medicine, something that the industry is striving considering the recent changes in Breakthrough Medicines at the Agency.

Learn more about the impact Single-Use Technologies is having in:
  • • Increasing the Speed of Bioprocessing
  • • Cost Cutting
  • • Flexible Processing Conditions
  • • Quality, Reproducibility and Compatibility

Download the Free eBook - Single Use Technology: From bioprocess convenience to drug-development driver today.


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Tuesday, October 2, 2012

BioProcess International Spotlight: Best Practices for Implementation Challenges with Single Use Systems Symposium

Speaker Jeffrey C. Johnson, New Technology Lead, Sterile, Technology and Commercialization, Merck & Co., Inc. spent 1983-1984 cycling around the world.  He also was leaded the Technology Transfer Team for Gardasil, a vaccine against cervical Cancer.  Next week, he will be at the BioProcess International Conference and Exhibition presenting in the Best Practices for Implementation Challenges with Single Use Systems symposium on Monday, October 8.

What sessions and speakers can you look forward to in this track?
  • Evolution and Sustainability of Single Use Systems
    • wRobert Repetto, M.S., MBA., Research Fellow, External Affairs, Pfizer BioTherapeutics Pharmaceutical Sciences; Chair, PDA Single-Use System Task Force
  • Economics of Single Use Operations and Loss Risk
    • wAndrew Sinclair, Managing Director, BioPharm Services Ltd., United Kingdom
  • Material Understanding and Supplier Partnerships
    • wDuncan Low, Ph.D., Scientific Executive Director, Amgen Inc.
  • Using Single-Use Technologies to Improve Speed to Clinic: A Case Study Looking at Scalability as Well as Leachables and Extractables in a Fully Disposable Downstream Process
    • wJoshua Hayes, Field Marketing Manager – Single Use  Processing Systems, Biopharm Process Solutions, EMD Millipore
  • Global Adoption of Single Use Technologies: Perspectives from an End User
    • wJeffrey C. Johnson, New Technology Lead, Sterile Technology and Commercialization, Merck & Co., Inc.
BioProcess International will take place October 8-12 in Providence, Rhode Island.  For more information on this program featuring over 180+ speakers, download the agenda here.  Would you like to join us?  Register today.



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