Showing posts with label drugs. Show all posts
Showing posts with label drugs. Show all posts

Thursday, October 29, 2015

BPI 2015: Day Two Recap

By: LSPR

Day two of the 12th annual Bioprocess International (BPI) Conference & Exposition featured a full day of exhibitions and continued high-level technical discussions and presentations that attendees have come to expect from the show. The day began on a high note with keynote speakers giving insight into the next generation of manufacturing. Valuable conversations continued during exhibit hours with the curtain rising on the BPI Theater. Of course, there were technical sessions throughout the day, as well. Some of the highlights from the second day of BPI 2015 are below.

Keynote Addresses
Bioprocessing manufacturing facilities were the topic of the day during the keynote addresses, as representatives from Amgen and Genzyme, a Sanofi company, built on the keynotes presented on day one. Both day two speakers opened the door on technologies and trends to provide a peak on what the future may hold for the industry.

The future is now was the theme of the first presentation, given by Kimball Hall, Vice President Manufacturing, Amgen Singapore Manufacturing Pte. Ltd. Her address was on Amgen’s Next-generation Biomanufacturing Facility, which was four years in the making and is scheduled to open its doors in 2017. In changing the manner in which Amgen conducts bioprocessing manufacturing, the company is also re-shaping the entire industry, according to Hall.

“Whereas in the past, the focus was on high margins and capacity, today biomanufacturing is centered on cost, speed, and operation flexibility,” she explained.

Hall shared the thoughts of one of Tuesday’s keynote speakers, David J. Pollard, PhD, Executive Director, BioProcess Development, Merck & Co., Inc., when she spoke of a modular method for facility design.

“In a conventional facility design, capacity becomes a consideration in Phase II. That is not the case with a modular design as it allows facilities to expand or contract as the market demands. Additionally, the modular format is agnostic to a country or location,” she explained.

In addition to a modular format, the Amgen Singapore facility incorporates other design elements that have proven to create benefits in construction time, operations, and environmental footprint. Among those elements mentioned by Hall were integration of single-use technologies (95% of the equipment is single use), incorporating connected processing, and real-time and remote monitoring.

Hall explained that the disruptive approach taken by Amgen has cut the construction time of the Singapore facility in half and capital costs are one quarter that of a conventional facility. Operating expenses will be lowered by a third, as well, according to Hall. The end result will be an approximately 60% reduction in protein development cost.

“One of the first questions I’m asked about is the environmental impact of the facility. I am happy to say that it will use less water for heating, cooling, and cleaning. Because it is a smaller facility, it will have a lower air quality classification, and emissions will be lower due to reduced energy usage and Singapore’s cleaner energy,” explained Hall.

All told, the new facility in Singapore is expected to have an 80% reduction in energy and water use. 

In the second keynote, Konstantin Konstantinov, PhD, Vice President, Technology Development for Genzyme asked What is the Future of Continuous Processing – What is the Time Frame for Implementing Fully Continuous Processing in Commercial Production? He spoke of changes in upstream and downstream processes that will help create a “dominant design” in the next 5-10 years that will help shape bioprocessing.

“The commercialization of innovation will lead to a dominant design where almost any protein can be developed using a universal platform. It will take a lot of courage and focus to accomplish this dominant design,” offered Dr. Konstantinov.

The dominant design outlined by Dr. Konstantinov is an end-to-end continuous integrated upstream and downstream principle. While there has been promising results in a pilot facility, Dr. Konstantinov noted, “Success is impossible without a high-performance cell line.”

Thankfully, Dr. Konstantinov believes there is tremendous opportunity to improve cell lines. Success will be determined by three factors – stable productivity over a long period of time, stable quality over a long period of time, and low cell specific perfusion rate.

While upstream processing improvements are one step, Dr. Konstantinov expects “a lot of changes” in the downstream. He noted developments in equipment, and spoke of a large scale continuous purification system with a very broad capacity range currently in a laboratory at Genzyme’s Framingham, Massachusetts, campus.

Despite all the progress, Dr. Konstantinov noted that the industry is entering a “very interesting stage.” New technologies still need to be developed to fill a few gaps, including cell retention devices and viral inactivation.

He also suggested the industry broaden its approach to the integration of continuous processing. “Why stop at drug substance? We should also look at drug product because continuous manufacturing can bring advantages there, as well.”

Technical Session Highlights
In his session entitled High-throughput Process Development to Accelerate Speed to the Clinic for Antibodies, Gregory A. Barker, Ph.D., Sr. Engineer, Biologics Process Development, Bristol-Myers Squibb spoke of High-throughput Process Development (HTPD) and how it allows scientists to examine 300,000 compounds per day so it only takes a few weeks to screen millions of substances. Before HTPD, Bayer researchers could take several months to develop special activity assays.

The goal of using HTPD, a computer-based serial-testing method that incorporates robotic systems, is to determine whether a substance reacts biochemically with the target, according to Dr. Barker. During the HTPD process, robots fill millions of reaction vessels with the assays.

“For example, a specific vessel may hold only 50 nanoliters of fluid with the vessels aligned on a plate that holds 1,536 wells. This would allow for 1,536 biochemical or cell-based assays to be performed simultaneously on a single microliter plate. In fact, thousands of these are often used in a single HTPD run,” said Dr. Barker.

As Dr. Barker explained, key benefits of HTPD for chromatography unit operations include:
-          A platform for rapid execution of experiments using sparingly small amounts of material to enable investigation of a broad range of process conditions
-          Fundamental data that may be used for scale-up via statistical modeling and process simulate
-          Systematic and highly reproducible execution of complex DOEs to survey the knowledge space and enable multivariate understanding

Specific methods of HTPD for chromatography were detailed, such as:
1. Isotherms
2. Batch uptake curves
3.  Batch chromatography

Dr. Barker described several HTPD methods that are used to augment FIH process development packages, including protein solubility, Protein A optimization and Sartobind Q membrane optimization. The comparison between common data sets enables adaptation of the platform and modification to process ranges.

In summarizing his remarks, Dr. Barker said that HTPD methods are well-defined and are producing data aligned with literature values. The data alone enables a broader PD knowledge space. Empirical models built directly from batch chromatography data enable a first level of prediction for large scale chromatography and rapid FIH timelines. One thing he noted was that a comparison of HTPD campaigns across different proteins reflected both commonalities and differences. As a result, the next steps will be to explore the drivers of commonalities and differences based on structural motifs.

Poster Highlight
One of the more distinguished posters at BPI 2015 was presented by MedImmune and was entitled The Final Push? Expelling mAb Drug Product from Pre-Filled Syringe Configurations for Sub-Visible-Particle Testing. The poster proposed that a partial expulsion of drug products in pre-filled syringe (PFS) configurations would more accurately reflect protein behavior.

The poster showed that completely expelling a PFS generates a significant surge of sub-visible particle (SVP) counts, stemming from the silicone oil (SiO) scraped from the syringe barrel and forced through the needle. Conclusions drawn from the experiment and published were that completely expelling a PFS results in SVP counts as much as 50x greater than if PFS was partially expelled. Particles in the surge are SiO droplets scraped off the barrel during the expulsion process and introduced into the liquid upon complete expel. Other conclusions drawn are that partially expelling a PFS is robust with respect to expel volume. Removing the product through the stopper is an orthogonal method of sampling without introducing the high artificial SiO background. The final conclusion was that product stability should be monitored by partial expel during the drug development process, as it best isolates the protein behavior.

Product Highlight 
Roche Custom Biotech made three announcements, two on products and a third on partnership, at BPI 2015.

The two new production introductions were:
Cedex Bio HT, a highly reliable metabolite and substrate analyzer for cell culture analysis. It offers unique photometric technology that delivers high data accuracy, as well as a cost-saving expandable menu. 

Tools for In Vitro Glycoengineering that can be used after proteins have been harvested. The tools increase productivity and can be used in early stage development.

Roche also announced a partnership with Flownamics that features auto sampling technology. Through the technology, multiple bioreactors can be sampled simultaneously to streamline testing and reduce down time to enhance manufacturing efficiencies


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Friday, October 23, 2015

Rising from the Historical Grave

By: Frank Corden is the Senior Director of Growth Services for New England Controls

Well it’s almost Halloween.  So a story about data rising from the dead seemed an appropriate theme.  Let’s start with a little background.

Data historians are a staple of the manufacturing control infrastructure at most, if not all, biotech manufacturing facilities.  Whether provided as a component of the distributed control system (DCS) offered by Honeywell, Siemens, Emerson, or other DCS suppliers, or integrated as standalone software, such as offered by AspenTech, the historian is the go-to data source for the time-sequenced record of what has occurred on the manufacturing floor.  When combined with an enterprise- or site-wide historian such as OSISoft’s PI Historian, the manufacturing data, the building control system data, and data from other selected sources can be combined in a single repository.  Although these historians may be used in batch reporting, as well as for conducting investigations of process deviations, much of the data remains buried, unused, and unloved.  As one of my colleagues put it, “they’re just data graveyards.”

Biotech manufacturers actively have been expanding their enterprise historians and adding capabilities using various data analytics software packages, including Biovia Discoverant, Dell Statistica, and Bio-G, to name a few.  These systems enable manufacturers to integrate data sets not only from one or more data historians, but also from the Laboratory Information Management Systems (LIMS), the Enterprise Resource and Planning systems (ERP), the Learning Management Systems (LMS), the Product Lifecycle Management systems (PLM) and others.  The objectives of the analytics system installation vary from company to company but there are common themes.  These software systems enable more efficient and timely creation of reports, charts, and graphs to support:  1) routine generation of control charts and other process views, 2) operational excellence initiatives including but not limited to overall equipment effectiveness ( OEE), 3) investigations of process events, and 4) process development / tech transfer. In a few instances, the systems even come full circle with Quality by Design (QbD).

In the process development (PD) labs, the environment and the data challenge is very different from manufacturing.  In any PD lab you can find a range of equipment from various manufacturers, all of which have control systems and collect data, but not many of these systems communicate with each other or to a central data repository.  So in PD, the data lies buried in these islands.

Although the PD labs are comfortable with data analytics and use the tools routinely, the challenge lies in aggregating the data to make it available to them and extracting the data from these islands of automation. 

To address this disparate data nightmare, one PD lab, has embarked on an ambitious program to integrate all their lab scale units to an OSI PI historian.  By doing so, much more of the data is readily accessible without the manual transcription, creation, and distribution of spreadsheets that we often see in laboratories.  One goal of the program is to enable the lab to generate their routine data analyses with greater automation and free their scientists to spend more time doing the experimental and analytics work they are trained for.  By combining automated data aggregation with a historian and applying the newest analytics tools that also automate routine data analyses, we can liberate the data and bring to life the knowledge that is trapped within it.  And that is a happy ending to our Halloween story.

Happy Halloween!


About the Author: Frank Corden is the Senior Director of Growth Services for New England Controls, the leading supplier of process automation equipment and related services in the New England region. Frank has 20 years of experience in the Life Sciences industry.  He has served as a Director for Decision Management International, PerkinElmer, and Emerson Process Management in operational, research and development as well as quality leadership roles. In his current position, Frank is responsible for managing an expanding team of engineers and technicians that deliver software products and services to industrial and life science customers throughout New England. 


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Thursday, October 15, 2015

Biotech Halfway Around the World

By: Frank Cordon, Senior Director of Growth Services, New England Controls

If you were to Google “biotech hubs,” cities like Boston, San Francisco, and San Diego would certainly be first on the results page.  These centers cover our industry from early stage cutting-edge research through the highest levels of full scale manufacturing.  For those of us in the industry a bit longer, we would expect to see  centers in the Carolinas, the Midwest, the United Kingdom and smaller clusters in France, Germany, Belgium, and Denmark show up on pages 2 and 3.  With our western biases we would tend to think much less about Asian locations as full-fledged biotech centers.



Last month, I had the opportunity and great pleasure to assist in a gap analysis project for a biotech plant in Singapore.  This was my third trip to this wonderful city state in the last 10 years.  Once again, I was very impressed with the manufacturing professionals I worked with.  Not only were they excellent technically, but more impressive was their commitment to their work.  With a 12 hour time difference to the east coast USA, it’s never a good time to have a conference call or video conference.  Yet, my Singaporean counterparts are the first to offer to stay up late into the evening to accommodate a meeting at 9 or 10 or 11am Eastern Time.  I would invariably have to twist their arms to agree to a 6am or 9pm EST call so they aren’t the only ones working outside of the normal work day.

As I was flying back, I was able to reflect on the experience - and yes it’s a long trip so there’s plenty of time to reflect – and came away with a sense that the people of Singapore see high tech manufacturing and life sciences, in particular, as a strategic imperative to the long-term health of their country.  This commitment is apparent with the building boom occurring in the Tuas area of the island which is where most, if not all, of the biotech plants reside. 

During my first couple of trips, I was made aware of the strength of biotech manufacturing in Singapore.  What I didn’t realize until I attended the BioProcessing International Conference & Exposition (BPI) in Boston  in 2013, was the depth of the innovation culture and the progressive research and development commitment to the industry that companies and people in Singapore truly have.  During that 2013 conference, I attended several sessions where researchers from the Bioprocessing Technology Institute of Singapore presented their work.  Over the past 2 years, there have been so many news-worthy announcements coming out of Singapore; Medical school partnerships with Duke University and the Imperial College of London and R&D centers like the Novartis Institute for Tropical Diseases have been built to name a few. There are over 30 major R&D centers on the island (www.pharmaphorum.com – February 2014) with new announcements coming out weekly.  The pace of growth has led to a real talent shortage as reported last week on Biotechin.asia. 

You can imagine that as I browsed the program for this year’s BPI Conference & Exposition, I was pleased to see that the Bioprocessing Technology Institute of Singapore is being represented yet again.  With representatives from Amgen Singapore and other Asian-based biotech companies, speakers represent the tremendous growth of our industry in Asia.  When combined with presentations from colleagues based in Europe and the Americas, BPI is truly a global gathering. So, if you haven’t gotten the opportunity to travel halfway around the world to visit these world-class facilities, you’ve got to make it to Boston from October 26-29th for the 2015 BioProcessing International Conference and Exposition. I hope to see you there.


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Wednesday, September 16, 2015

Top 10 Reasons to Attend BioProcess International 2015 This Fall

BioProcess International Conference & Exposition is the largest bioprocessing event bringing you new ideas, demystifying technology, and fostering partnerships in highly engaging formats to move drug candidates closer to approval. Register today to attend this year’s meeting, held October 26-29, 2015 at the Hynes Convention Center in Boston, MA.

At the conference, formal and informal networking experiences will connect you to peers, prospects, and customers; parallel tracks give you the option to dive deep or take a big picture approach to learn about industry trends, challenges, and benchmark against the latest research developments and; big pharma and large, mid-size and emerging biotechs collaborating with solution providers will feature proven and next generation technologies – making BPI a one-of-a-kind meeting place.

Above all, here are the top 10 reasons we think BPI is the right bioprocessing event for you:

1.       More than 150+ comprehensive solution providers, next generation technologies, and start-ups – all in one place inside the exposition hall.
2.       6 tracks for one fee. Go specialized or expand your horizons across disciplines for a personalized, curated content experience.
3.       Back by Popular Demand! BPI Theater, a curated showcase of the best innovations.
4.       NEW! Town Hall Forums for highly focused industry best practice sharing.
5.       New and Improved! BPI Connect Partnering App to help jump start your next partnership or collaboration.
6.       NEW! Exposition Hall Tour for focused exhibit viewing led by an industry insider.
7.       NEW! Ask the Regulators Open Forum that will answer your critical questions about regulatory expectations.
8.       NEW! 15 Bioprocessing Problem-Solving Moderated Discussions to help you move drug candidates closer to approval.
9.       The Right Partners for You. Form collaborations and alliances with innovators, suppliers, academia and associations to reach new heights of clinical and commercial success
10.   The Most Comprehensive Science. Capitalize on the latest data-driven research and moderated discussions to move towards commercialization and streamlined development and production from upstream to drug product/fill-finish.

Download the brochure for more information about BPI 2015: http://bit.ly/1NBdz3I

As a valued member of our LinkedIn community, you get $100 off the current rate when you register using code XB15171LINK: http://bit.ly/1NBdz3I

We hope to see you in Boston next month!

Best,
The BPI 2015 Team
@IBCUSA
#BPIConf




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Thursday, September 10, 2015

Why You Should Attend IN3 Medical Device 360 Summit This Fall

IN3 brings together buy side strategics, VCs, and medtech innovators to build the necessary connections to expand portfolios, secure funding, and drive medical device progress. This event not only provides you with insights from experienced strategics and investors, it also provides you with a state-of-the art partnering tool to maximizes your networking capabilities.


Top Reasons to Attend IN3:

Know What Investors Look For. Crafting the right narrative and showcasing the best value metrics are essential to selling your technology. Discover exactly what criteria Strategics and VCs use to evaluate potential acquisitions. Download the agenda: http://bit.ly/1OCI0nd

Pitch to Put Your Technology on the Map. Competition is fierce in the medtech sector. Do what it takes to rise above your rivals -- pitch your technology to a global audience of top-tier investors. Secure Your Spot before Your Rivals Take it. Apply Now: http://bit.ly/1izpUbE

Find Your Next Partner. Introducing partneringONE®, the perfect platform for meeting exactly the right person at exactly the right time. Leverage partneringONE® to pre-arrange one-on-one meetings with the high-level decision makers you’ve been searching for. Move beyond chance encounters and conduct more quality meetings in two days than most companies do throughout the entire year.  Explore how it works: http://bit.ly/1KcxBPp

Also, here’s the event’s keynote lineup:

  • Chris King, VP, Business Development and Strategic Partnering, Medtronic
  • Bill Roskopf, VP, Business Development and Strategic Planning, Stryker
  • Sherrie Perkins, VP, Business Development, Sorin Group
  • Evelyn Douglas, VP, Corporate Strategy & Development, BD
  • Jeff Karan, Managing Partner, Mavericks Capital
  • Gil Kliman, Managing Director, InterWest Partners
  • Ted Driscoll, Partner, Digital Healthcare Lead, Claremont Creek Ventures
  • John Ryan, Partner, ONSET Ventures
  • David Allison, Investment Professional, Versant Ventures
  • Andrew Baldwin, Principal, Western Technology Investment
  • Arthur Pappas, Managing Partner, Pappas Ventures
  • Ittai Harel, General Partner, Pitango Venture Capital
  • Gregory Grunberg, Managing Director, Longitude Capital
  • Zack Scott, Managing Partner, Leerink Revelation Partners
  • Bill Starling, Managing Director, Synergy Life Science Partners
  • Jeffery T. Barnes, Managing Director, BioVentures Investors
  • Greg Grunberg, Managing Director, Longitude Capital
As a valued reader of our blog, you get an exclusive $100 off the current rate when you use code IN315BL to register: http://bit.ly/1OCI0nd

We hope to see you in San Francisco this Fall!

Cheers,
The IN3 Team
@FutureofBioPharma

#IN3SF


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Thursday, September 3, 2015

Containment and the challenges of ADC Manufacture

Monoclonal antibody therapeutics are a leading class of biopharmaceutical which have been very successful in the clinic and commercially for their sponsors. The key attribute of these medicines that has led to their success has been their very high degree of specificity enabling monoclonal antibody therapies to target antigens found only on cells that clinicians are seeking to destroy such as cancerous cells without damaging a patient’s healthy cells and tissues. In this way life threatening diseases can be treated with far fewer side effects than has traditionally been possible.

Antibody Drug Conjugates

To capitalize on this success, leading biopharmaceutical companies have sought to enhance the therapeutic effect of antibodies by linking highly potent toxophore molecules to antibodies through a conjugation step in the manufacturing process. These antibody-drug conjugates or ADCs benefit patients because they achieve the best of both worlds; high specificity that targets the drug to diseased tissue and minimizes side effects and high potency with the potential to destroy the targeted tissue with a high degree of efficiency.
The manufacture of ADCs presents some additional complexities on top of those typically experienced during the production of biopharmaceuticals. Conjugation steps are typically performed towards the end of the downstream process where linker and toxophore molecules entities must be added to purified antibodies in a reactor. Those molecules that do not conjugate must then be removed from the conjugated antibody which is often performed by an ultrafiltration operation. Once formulation steps are completed the ADC can be filtered and filled

Challenges of ADC Manufacture

The high potency of the ADC drugs themselves and the intermediates used in their production requires manufacturers to consider the issue of containment to an even greater extent than they might for a non-ADC antibody. ADCs and toxophores might be present in very small amounts and can therefore be difficult to detect yet may still represent a potential hazard as a contaminant in the environment or facility, to operators and a cross contaminant in other processes in multi-product operations.

Biomanufacturers may look to perform steps in isolators or within equipment that allows for closed system processing. In a previous post I have described how single-use technologies canallow for processing while maintaining a closed processing environment.

ADCs at BPI Boston 2015

The BioProcessInternational Conference & Exposition to be held in Boston on 26-29 October 2015 will dedicate a pre-conference symposium to ADC Development and Production and will have additional presentations throughout the conference such as Berthold Boedeker of Bayer Pharma’s talk entitled “ADC Production: Integration of the Conjugation Step in a Standard Protein Plant Using Closed System” which is part of the Closed System Manufacturing Track.


Join me at #BPIconf
Contact me at nick.hutchinson@parker.com

Dr Nick Hutchinson has a Masters and Doctorate in Biochemical Engineering from University College London, UK where he focused on laboratory tools for rapid bioprocess development and characterization. He then worked at Lonza Biologics in an R&D function investigating novel methods for large-scale antibody purification before moving to an operational role scaling-up and transferring manufacturing processes between Lonza sites in the UK, Spain and USA. Nick now works in Market Development at Parker domnick hunter where his focus is in bringing Parker's strengths in Motion & Control to Bioprocessing. This will enable customers to improve the quality and deliverability of existing and future biopharmaceuticals.


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Tuesday, September 1, 2015

Top Scientists Address Downstream Processing

Characterization of Host-Cell Proteins Using Mass Spectrometry Enables Effective Purification Optimization

Lin Zang, Senior Scientist, Analytical Development, Biogen describes the mass spectrometry workflow for host cell protein identification that she will be presenting on at the BioProcess International Conference & Exposition, and discusses the implications of HCPs on downstream process development.

Hear more from Lin at 4:00 pm on Wednesday, October 28, 2015 at BPI.

Listen to her interview here: http://bit.ly/1VucXxR



A Novel Approach to Monitor Clearance of Host Cell Proteins Associated with Monoclonal Antibodies 

The big challenge in downstream process development concerning host cell proteins is that the amount of HCPs in the purified product is often so low that it is hard to determine the identity of the HCP. Min Zhu, Senior Scientist, Purification Process Sciences, MedImmune LLC, describes how the approach she will be presenting at the conference overcomes this challenge.

Hear more from Min at 4:30 pm on Wednesday, October 28, 2015 at BPI.

Listen to her interview here: http://bit.ly/1VucXxR



Implementing Multi-Attribute LC/MS Methods for More Informed Process Development 

Matthew Traylor, Analytical Scientist, Process Development, Shire, discusses how he gets a deep characterization a specific protein out of a mixture, using LC/MS software packages that automate the process. He shares how this technology can be used at laboratory, pilot and production scale process development.

Hear more from Matthew at 9:20 am on Tuesday, October 27, 2015 at BPI.

Listen to his interview here: http://bit.ly/1NKYZWY



Continued Process Verification (CPV) Informatics Systems and Validation 

Carly Cox, Senior Process Engineer, Pfizer, describes what a CPV informatics system is and how it’s used in product manufacturing. She’ll be presenting at the BioProcess International Conference on how multiple source systems can pull data on product manufacturing processing and be collected into a CPV informatics system, and some of the important areas to consider for validation and configuration for regulatory reporting and process monitoring.  

Hear more from Carly at 9:20 am on Wednesday, October 28, 2015 at BPI.



Rapid Microbiological Methods for Real-Time Release of Autologous Cell Therapy Products 

Hear about how a risk based approach to autologous cell therapy products used at Vericel. In this podcast, John Duguid, Principal Scientist, Vericel Corporation, describes how rapid microbiological methods are used in product release of autologous cell therapy products, and discusses the areas of contamination risk. Audio Player

Hear more from John at 2:00 pm on Thursday, October 29, 2015 at BPI.

Listen to his interview here: http://bit.ly/1IFdZ0I

If you haven’t already, register for BPI 2015 taking place this fall in Boston. BPI is engineered to be exactly what YOU need it to be. Formal and informal networking experiences connect you to peers, prospects, and customers. Parallel tracks give you the option to dive deep or take a big picture approach to learn about industry trends, challenges, and benchmark against the latest research developments. Big pharma and large, mid-size and emerging biotechs collaborating with solution providers featuring proven and next generation technologies make BPI a one-of-a-kind meeting place.As a valued reader of our blog, you get an exclusive $100 off the current rate when you use code XB15171BLOG. Register here: http://bit.ly/1JA9EQe




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Thursday, August 27, 2015

Listen to the Cell Culture & Upstream Processing Podcast Series

At BioProcess International Conference & Exposition, the Cell Culture & Upstream Processing track will feature process development scientists, engineers and technical experts sharing their recent achievements in reducing timelines and cost of goods while increasing efficiency and productivity through implementation of disruptive approaches and technologies.

Today, BPI is recognized as the leading bioprocessing industry conference where industry and academia come together annually to share technical, scientific and strategic innovations. BioProcess International Magazine is the exclusive provider of pre-conference podcast interviews with speakers who offer their expert perspective and commentary on the scientific trends impacting Drug Product Manufacturing & Fill-Finish Processing; Cell Culture & Upstream Processing; Recovery & Purification; Manufacturing Strategy; and Analytical, Formulation and Quality.

Prior to the conference, this exclusive podcast series gives you access to three interviews with top industry leaders.

First, Barry Buckland, Senior Advisor, Protein Sciences, discusses development of a scaleable and productive insect cell culture-based process for making Flublok, the First FDA licensed recombinant influenza vaccine. Buckland will be presenting at 11:30 am on Wednesday, October 18th at BPI.
In addition, Michael Butler, Professor, University of Manitoba, talks about modeling of glycosylation – predicting profiles of glycosylation from metabolic data. Butler will be presenting at 1:30 pm on Tuesday, October 27th at BPI.

And, Trent Munro, Principal Scientist, Amgen, discusses high-throughput multi-parametric clone screening approach for the generation of tailored production cell lines. Munro will be presenting at 8:05 am on Tuesday, October 17th at BPI.

Listen to all three interviews here: http://bit.ly/1NfG0CN

These podcasts allow you to get a glimpse of what you will experience and learn while attending along with kick-starting the questions you may have for these speakers at the 2015 BioProcess International Conference & Exhibition in Boston.

Thank you for experiencing the BPI Conference Pre-Event Podcasts and we hope to see you in Boston, October 26-29! For more information about the conference, click here: http://bit.ly/1NCAMSw


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Monday, August 3, 2015

Increasing the flexibility of fill finish operations with single-use technology

There are many benefits to using single-use technology for the manufacture of biopharmaceuticals. The enabling aspect of the technology that allows closed-system processing has been examined in a previous postThe single-use principle can be applied across the biomanufacturing process with bioreactors, chromatography and cross flow filtration all available in single-use formats.

Single-Use and Fill Finish

The role of single-use in adding flexibility to fill finish operations will be the subject of a presentation given by Chris Smalley, Ph.D., from Merck & Co. at the Bioprocess International 2015 Conference that will be held in Boston in October. Chris’presentation will be part of the ‘Drug Product Manufacturing & Fill-Finish Processing’ track which is new for this year.

In a recent interview, Chris highlighted the fact that single-use technologies can play an important role in helping to rapidly establish global networks of fill finish operations. These are required in order to meet emerging demands (Merck Champions Single-Use ByAddressing Emotion Vs. Science, by Trisha Gladd at Bioprocess Online)

One way of developing such a network will be to utilize existing manufacturing locations and staff. Minimizing the amount of work required to redevelop these existing facilities around the world will be crucial in achieving the level of operational agility that will likely be required. Taking a single-use approach to fill finish will allow this by reducing the need for HVAC, cleanrooms and WFI systems. The affordability of drugs can be improved as the capital costs, labor requirements and time needed to design and build new facilities will be reduced.

Particulates and Extractables

In the article, Smalley addresses two common concerns about single-use technologies that are particularly pertinent during fill finish operations, namely, particulates and extractables. These are especially important issues for fill finish because there are no further processing steps that can remove impurities derived from equipment or consumables at this stage in the process. Smalley believes that the available studies show that there is little or no risk to patients from particulates and he is an advocate of suppliers providing adopting the BPOG guidelines with respect to extractables.

To facilitate the implementation of single-use across the company, Merck have a Single-Use Network (SUN) of advocates that set guidelines and define good practices. Smalley sees standardization as a key success factor for single-use implementation within the industry. He will no doubt be interested in participating in the Town Hall Forum Discussion on single-use technologies with industry organizations such as BPSA, BPOG, PDA, ASME BPE and ASTM.

Have your say

To what extent do you think challenges, such as particulates and extractables, relating to the implementation of single-use technologies can be overcome?


Join me at #BPIconf
Contact me at nick.hutchinson@parker.com


Dr Nick Hutchinson has a Masters and Doctorate in Biochemical Engineering from University College London, UK where he focused on laboratory tools for rapid bioprocess development and characterization. He then worked at Lonza Biologics in an R&D function investigating novel methods for large-scale antibody purification before moving to an operational role scaling-up and transferring manufacturing processes between Lonza sites in the UK, Spain and USA. Nick now works in Market Development at Parker domnick hunter where his focus is in bringing Parker's strengths in Motion & Control to Bioprocessing. This will enable customers to improve the quality and deliverability of existing and future biopharmaceuticals.


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Tuesday, July 21, 2015

Single-Use Standardization on the agenda for BPSA at BPI Boston, 2015

“The BioProcess International Conference has always been a good venue for the Bio-Process Systems Alliance to work with industry to identify issues and define next steps”, say Todd Kapp, BPSA Board Member and Sales & Market Development Manager of Parker domnick hunter – North America.

The Bio-Process Systems Alliance is a leading trade association which facilitates the implementation of single-use bioprocessing through networking opportunities, creating a safe harbour for dialogue between industry and business leaders, providing forums for end-users and suppliers to work together and producing best practice guides.

“The BPSA has become a recognized leader in the industry for bringing users and suppliers of single-use technology together to discuss and educate one another on best practices and guidelines for implementation”, Kapp observes.

Single-Use Standardization

Along with other industry organizations such BPOG, PDA, ASTM and ASME BPE they will be participating in a Town Hall Forum Discussion on Single-Use Standardization at the BioProcess International Conference andExposition 2015 in Boston.

Standardization of single-use assemblies is an objective for many biomanufacturing organizations as they seek to reduce inventories and working capital. Historically, standardization exercises within the processing industries have been somewhat protracted affairs as various players try and agree on the preferred solution to standardize upon.


Todd Kapp (Parker domnick hunter & BPSA Board Member) 
EPICSolutions™ for Single-Use Technologies

Successfully implementing single-use technologies into biomanufacturing processes raises a number of issues that end-users are having wrestle with including the safety of the materials used, whether they shed particles or can maintain integrity and an increased reliance on the quality systems of their suppliers including their change notification procedures.

To help end-users address these issues the BPSA will be leading or contributing to sessions along the theme of EPICSolutions™ which stands for Extractables, Particles, Integrity, Change and Sustainability and was the main theme of the BPSA Summit held in Washington DC last week.

Kapp explains, “BPI has been and continues to be a great way for BPSA to communicate with the market and spread the word about the value it brings to industry”.

Without doubt BPI will be a richer learning experience for bioprocess engineers on their journey to implement single-use technologies by the inclusion of the BPSA in the program.

Dr Nick Hutchinson

Join me at #BPIconf
Dr Nick Hutchinson has a Masters and Doctorate in Biochemical Engineering from University College London, UK where he focused on laboratory tools for rapid bioprocess development and characterization. He then worked at Lonza Biologics in an R&D function investigating novel methods for large-scale antibody purification before moving to an operational role scaling-up and transferring manufacturing processes between Lonza sites in the UK, Spain and USA. Nick now works in Market Development at Parker domnick hunter where his focus is in bringing Parker's strengths in Motion & Control to Bioprocessing. This will enable customers to improve the quality and deliverability of existing and future biopharmaceuticals.


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Tuesday, July 7, 2015

The continuous production of biopharmaceutical drugs


If there is one hot topic in biomanufacturing at this moment in time it has to be continuous processing. Journals and websites are feeding, what appears to be, the biopharmaceutical industry’s almost insatiable appetite for information on the subject. The interest is reflected in the deals made within the industry such as Pall Corporation's acquisition of the BioSMB technology platform from Tarpon Biosystems and Repligen Corporation’s 2014 acquisition of Refine Technology. Refine developed and manufactured the Alternating Tangential Flow (ATF) filtration device which can be used to retain mammalian cells within bioreactors while continuously harvesting product.
With such a focus within biopharma upon continuous processing it is no surprise that a significant portion of the Bioprocess International 2015 Conference, agenda is allocated to talks on this subject. Before we look at some of those talks in more detail, however, we should review the industry drivers that appear to be taking the bioprocess sector away from the batch process paradigm and moving it towards a continuous manufacturing future.
The four key industry drivers behind continuous bioprocessing
In an excellent article, Veena Warikoo from Genzyme, a Sanofi company, and co-workers published in 2012 on the “Integrated Continuous Production of Recombinant Therapeutic Proteins” (Biotech Bioeng, 2012;109: 3018-3029). Four key drivers are given as:
1.    the need for biopharma companies to flexibly accommodate large-volume and orphan drugs potentially within the same facility
2.    the need for production platforms to accommodate both stable monoclonal antibody and less stable recombinant protein therapeutics
3.    the need to make rapid adjustments in production capacity in line with the dynamics of market demand
4.    increasing cost pressures, not least, due to the growing pipeline of biosimilars in development
The benefits of bioprocess intensification
Warikoo and her co-authors explain that the conversion for batch to continuous manufacturing has occurred in many other industries in the past and has led to the following benefits:
1.    steady-state operation
2.    small equipment size
3.    high volumetric productivity
4.    streamlined process flows
5.    low cycle times
6.    reduced capital costs
Too conservative for continuous?
Bioproduction is renowned for being a conservative endeavour. Despite the business deals and industry drivers are we really ready for continuous biomanufacturing or is the noise in the media simply empty hyperbole? Will continuous processing become the rule or remain the exception? Join the debate by letting us know your thoughts.
 

Dr Nick Hutchinson
Join me at #BPIconf
Dr Nick Hutchinson has a Masters and Doctorate in Biochemical Engineering from University College London, UK where he focused on laboratory tools for rapid bioprocess development and characterization. He then worked at Lonza Biologics in an R&D function investigating novel methods for large-scale antibody purification before moving to an operational role scaling-up and transferring manufacturing processes between Lonza sites in the UK, Spain and USA. Nick now works in Market Development at Parker domnick hunter where his focus is in bringing Parker's strengths in Motion & Control to Bioprocessing. This will enable customers to improve the quality and deliverability of existing and future biopharmaceuticals.


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