Showing posts with label Pfizer. Show all posts
Showing posts with label Pfizer. 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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Tuesday, October 20, 2015

Cell Therapy A Focus at BIO-Europe in Munich


By: Leah Kinthaert

On November 2, Michel Detheux, CEO of iTeos Therapeutics returns as a panelist for BIO-Europe in Munich. On that day, BIO-Europe will partner with the Alliance for Regenerative Medicine (ARM) to showcase some of the biggest movers and shakers in the cell therapy and regenerative medicine space. For a preview, you can watch Detheux at BIO-Europe 2014 on a panel with others from Novartis, Innovio and Bristol-Myers Squibb here. Their discussion focused on answering questions such as: "Are there opportunities to remain a company without having to exit?" and - "Is it the endgame to get acquired?"

Is it the endgame to get acquired? – At the event last year, Detheux answered this question by commenting that his company would be running out of funds the following year and that: "If a company like iTeos wants to get access to a large portfolio of different immunotherapies we need to partner quite early stage".

Partnership with Pfizer – In December 2014, iTeos partnered with Pfizer. iTeos gave Pfizer rights to their pre-clinical compounds targeting ID01 and TD02 while Pfizer was to be responsible for the development and commercialization of ID01 and TD02 drug candidates.

Check in on their partnership – Eleven months later, it will be exciting to see how the partnership between iTeos and Pfizer is moving along. Beatrice Gerard of Quintiles will be moderating; other panelists include: Mohamed Ragab, of Bristol Myers-Squibb, Iain Dukes of MSD and Philippe Lopes-Fernandes of Merck-Serono. This interesting mix of individuals representing big pharma and start-ups was a great discussion generator last year and promises to be very informative for both biotech start-ups looking for guidance and R&D looking to fill gaps and bring in innovation.

About iTeos – Based in Gosselies, Belgium, iTeos Therapeutics SA is a private biotechnology company with a focus on developing small-molecule immunomodulators for cancer treatment. Originating from a partnership between the Ludwig Institute for Cancer Research and de Duve Institute at the Université catholique de Louvain, iTeos Therapeutics SA is led by management and research teams with proven track records in tumor immunology, immunotherapy, drug discovery and development. In December 2014, iTeos signed a transformative deal with Pfizer to develop small molecules immunomodulators. In parallel with this strategic partnership, iTeos is now developing a new pipeline of proprietary programs targeting the tumor microenvironment to improve patients outcome. iTeos Therapeutics is focused on the validation and development of "immunomodulatory" molecules with the potential to act in synergy with other cancer therapies to restore immune activity against tumours. The company is interested in three enzymes involved in immunosuppression: an immunosuppressive enzyme expressed by the tumour's stromal cells. An inhibitor of this enzyme is known and its effects on humans have already been studied for other applications. iTeos hopes to begin clinical trials with this molecule by 2014; indoleamine 2,3-dioxygenase (IDO) and tryptophan 2,3-dioxygenase (TDO), for which iTeos will soon be launching a high-speed screening system for identifying inhibitory molecules. The company hopes to develop an immunomodulator from these two enzymes by 2017.

You can see the description of the cell therapy and regenerative medicine events on November 2 and 4 here.



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Wednesday, April 8, 2015

BDP Week 2015: Conventional vs Single-Use Facilities Panel Discussion

By: Maribel Rios, Managing Editor of BioProcess International

On Wednesday, 1 April 2015, the Biopharmaceutical Development and Production Week meeting held a Q&A session between attendees and a selected panel, moderated by Adam Goldstein (Genentech, a member of the Roche group). Panelists included Nuno Fontes (Boehringer Ingelheim), David Fritsch (Fritsh Consulting), Francis Kobina Insaidoo, PhD (Merck Research Laboratories), Chris Antoniou (Biogen Idec), and James D. Vogel (The BioProcess Institute). The panel first discussed the merits of moving to an all-single-use facility, such as Amgen’s facility in Singapore as opposed to continuing to use a stainless-steel-based facility and making modifications with single-use systems. Questions and discussion focused on the following:

·         Does building a complete single-use facility make sense? The panel agreed that there are some processes (e.g., early stage, smaller volume, pilot studies) in which the complete or near-complete use of single-use systems make sense. Larger-volumen(>2,000 L), commercial-scale, and dedicated processes would be more susceptible for stainless-steel systems.
·         How does cost of goods and other economic factors play a role? The panel agreed that manufacturers must examine all factors carefully, including timelines for building a facility. Other concepts, such as ballroom-style or modular facilities also can reduce timelines.
·         Are there single-use solutions for high cell density and high-titer processes? And are there ideas for addressing the limitations of single-use mixing of such processes? The panel responded that work on “loop” systems is ongoing through companies such as HyClone/Thermo/GE.




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Wednesday, October 9, 2013

Last Chance to Register for IIR's 14th Annual Business of Biosimilars

Finally, it's almost here! IIR's 14th Annual Business of Biosimilars takes place next week, October 15-17 in Boston. Just a final reminder that your last chance to register online is next Monday, October 14th. Join us at the Hyatt Regency in Boston to hear directly from AstraZeneca, Pfizer, Amgen, Teva and more!

Have you seen our latest agenda that includes one of our most exciting and exclusive opportunities - Understanding the Nuts and Bolts of Biosimilar Regulatory Strategy Workshop where you will experience intensive training to improve your Biosimilar regulatory strategy.

To learn more, download our full agenda.

As a member of the Business of Biosimilars LinkedIn Group, you’ll receive 15% off when you use code XP1886BLOG to register. Have any questions about the event? Feel free to contact Kate Devery at kdevery@iirusa.com or visit the webpage.

We hope to see you next week!

Cheers,
The Business of Biosimilars Team

Business of Biosimilars Webpage
Join our LinkedIn Group
Follow Us On Twitter


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Friday, September 27, 2013

FDA Perspective - Changing The Manufacturing Process to Remove Impurities

As the complexity of therapeutic protein increases, so do the challenges of controlling variants and impurities during process and product development, for scientists must continue to implement new methods and strategies to mitigate everything from quality control an assurance issues to immunogenic consequences.

Attend IBC's Product and Process Variants & Impurities conference to hear comprehensive updates on the latest approaches, methods, and technologies. to overcome these issues. An eclectic mix of regulatory, industry and academic speakers provide a diverse perspective on the topic, including:

• FDA perspective on changing the manufacturing process to remove impurities

• Industry panel discussion on biophysical methods to detect impurities

• Pfizer's technology roadmap to navigate the characterization landscape for increased product understanding

• University of Kent's list of challenges of product- and process related impurities to an evolving biopharmaceutical industry • Genentech's use of nucleic acid technologies to for early mutation detection

• NIST's sub-visible particle round-robin comparison on the level of agreement on sizing and counting

• Amgen's aggregation control strategy in manufacturing, QbD expectations and other process specifications

Want to learn more? Download our agenda.

As a member of the Bioanalytical Method Development group, you’ll receive 15% off the standard rate when using code XB13194BLOG to register. If you have questions about the event, contact Kate Devery (Kdevery@iirusa.com), or visit our webpage.

We look forward to seeing you October 21-23 in Washington, D.C!

Cheers,
The PPVI Team

PPVI Webpage
Follow us on Twitter
Join PPVI on Linkedin

P.S. When you register for IBC’s Produce and Process Variants & Impurities conference, you’ll also have access to all sessions for our co-located event, Well Characterized Biologicals.


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Tuesday, April 9, 2013

A look at Antisense Technologies

One of the greatest technologies to determine how to specifically treat diseases in humans, animals and plants is with antisense technologies.  These technologies, which manipulate DNA or RNA, end up interrupting the normal cellular processing to a gene and we can therefore discover what the gene functions as.  Integrated Gene Technologies recently released a white paper examining this issue.

Here is an excerpt:
Antisense Oligonucleotides
Oligonucleotide-based antisense techniques represent the most common and, to date, the most successful approach to achieving suppression or elimination of a genetic message. The antisense effect of a synthetic oligonucleotide sequence was first demonstrated in the late 1970s by Zamecnik and Stephenson [1]. Using nucleotide sequences from the 5’ and 3’ ends of the 35S RNA of Rous sarcoma virus (RSV), Zamecnik and Stephenson identified a repeated sequence of 21 nucleotides (nt) that appeared to be crucial to viral integration. They synthesized a 13-mer oligonucleotide, d(AATGGTAAAATGG), complement to a portion of this viral sequence. When this synthetic oligonucleotide sequence was introduced into cultured fibroblast cells infected with RSV, viral production was significantly inhibited. They correctly concluded that the oligonucleotide was inhibiting viral integration by hybridizing to the crucial sequences and blocking them. The term they introduced to describe such oligonucleotides was “hybridon.”

At the same time as this work was being done, other groups, notably Tennant et al. [2] and Miller et al. [3], were reporting similar effects for synthetic oligonucleotides in other systems. These results stimulated a rash of studies focusing on the ability of synthetic oligonucleotides to interfere with genetic processes. Many of theses studies failed to achieve the desired effect and it quickly became clear that there were a number of issues that needed to be addressed if synthetic oligonucleotides were to become generally useful reagents for these studies. The most immediately important of these issues was what can be called “persistence.” Synthetic oligonucleotides are foreign to the cells into which they are introduced and they immediately become prey for endogenous nucleases. If synthetic oligonucleotides were to attain the level of persistence in the cell that would be needed for them to accomplish their tasks, they would have to be protected from those endogenous nucleases. Following Kurreck [4], there are three possible sites on a nucleotide where protective modifications could be introduced (Figure 1). In both DNA and RNA nucleotides the base can be altered or changes can be effectedin the phosphate backbone. In RNA nucleotides the 2’ hydroxyl group, missing in DNA nucleotides, can also be modified. The “trick” involved in protective modifications of nucleotides is to introduce an alteration that is protective against nuclease degradation that does not, at the same time, eliminate the desired effect of the oligonucleotide sequence by blocking complementary hybridization or harming the cell. 

Read the full white paper here.

This May at the TIDES Event,we will be looking at antisense technologies in a number of presentations including Antisense Development Portfolio Advances with Richard S. Geary, Ph.D., Senior Vice President, Development, Isis Pharmaceuticals, Inc. and Characterization of Oligonucleotide Biotherapeutics by LC/MS/MS with Pfizer. For more information on these sessions, download the agenda. If you'd like to join us at the TIDES event taking place May 12-15, 2013 in Boston, as a reader of this blog when you register to join us and mention code TIDES12JP, you'll save 20% off the standard rate!


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Monday, January 17, 2011

2011 Immunogenicity for Biotherapeutics Brochure Now Available!

At Immunogenicity for Biotherapeutics, coming up this April 4-6, 2011, in Washington, DC, get practical insights from more than 30 new case studies including how to assess the clinical impact of protein aggregates and pre-existing antibody for correlation with clinical safety and the highly anticipated white paper from UIPS on aggregates, breakage of tolerance and the role of CD4+ T cells.

12 Reasons to Attend the 12th Annual Immunogenicity Event
→ 10 Poster Sessions to Expand Scientific Discussions
→ 5 Perspectives Comparing FDA and EMEA Guidelines
→ 4 Panel Discussions Revealing Industry Tools to Reduce Immunogenicity
→ 7 Countries Represented for Global Regulatory and Pharmaceutical Perspectives
→ 4 New Technology Comparison Case Studies
→ 10 Round Table Subject Matter Expert Opportunities
→ 3 Hour workshop on Strategies for Immunogenicity Assessment of Biosimilars
→ 30 Biopharmaceutical Companies Represented
→ 3 Hours Dedicated to the Fundamentals of Immunogenicity Studies
→ 5 Approaches for Accurately Predicting Immunogenicity
→ 6 White Paper Authors Provide Clear Recommendations
→ 40 Industry Experts Share Best Practices for Immunogenicity Studies

Join speakers from Biogen Idec, Bristol-Myers Squibb, Covance , Pfizer, Genentech, Amgen, Ambrx, Astellas , Meenu Wadhwa, NIBSC, ProFibrix and more!

Download the brochure to find out more about the speakers and presenters at this year's event.
Register here to join us today.


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Wednesday, October 13, 2010

Pfizer buying King Pharmaceuticals

Pfizer recently announced it's purchase of King Pharmaceuticals for #3.6 billion. Big pharma continues to buy small Pharma firms looking to acquire new products to their pipelines.

King's main products include, pain drugs, including painkillers designed to be resistant to abuse, and EpiPen, a pre-filled injection to treat allergic reactions. Pfizer has stated that they will cut $200 million in costs. News Observer has the full story.


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Thursday, July 15, 2010

Meet the 2010 Biorepositories Speaking Faculty

Now in its third year, the IIR Biorepositories event convenes the most innovative minds that have recognized early on the critical need to protect sample integrity. The expanded speaking faculty in 2010 is unparalleled - hear from these and other distinguished industry leaders on September 27-29, 2010 in Boston!

Helen M. Moore, PhD, Biospecimen Research Network, Office of the Director, NATIONAL CANCER INSTITUTE

Marie-Claire Peakman, Executive Director, PFIZER
Improve Biobank Effectiveness through Continuous Operational Improvement and Greater Customer Focus

Anita Nelson, Manager, R&D Human Sample Biorepository, GLAXOSMITHKLINE
Insights to Adapt Your Sample Management Strategy to the Changing Environment

Leonardo Sahelijo, MD, Medical Director, Pharmacogenomics, TAKEDA GLOBAL RESEARCH & DEVELOPMENT CENTER

Click here for the agenda for more on these speakers and their sessions:
http://bit.ly/bZVxXS



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Thursday, November 12, 2009

Pfizer and Wyeth merger changes vaccine R&D structure

With the take over of Wyeth, vaccine research and development will be spread to other areas of the Pfizer and Wyeth facilities. There will be five major facilities looking to capture the research and development for the company including: Pearl River, NY, Cambridge, MA, La Jolla, CA, Groton, CT and Sandwich in the UK. Wyeth has been key in the vaccine development industry, which was appealing to Pfizer, as it's viewed as a steady revenue stream as developments allow scientists to find more way to prevent illnesses. Read more here.

This is the global drug delivery partnerships meeting place, focusing on bringing together professionals seeking the latest strategies, industry updates, and networking opportunities to help position your company for a successful partnership/collaboration. Join us today on LinkedIn or Follow us on Twitter!


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Thursday, May 21, 2009

Green Pharma Summit: Who you're going to hear from

Who is going to be at this year's Green Pharma Summit?

Over 20 Leading Pharmaceutical and Industry sustainability experts providing you with green strategies and tools that you can implement immediately upon your return:

Pharma/Biotech
• Michael Whaley, Director of Environmental Health and Safety, Allergan
• Ann Lee-Jeffs, Manager, Worldwide Environmental Affairs, Johnson & Johnson
• Ingrid Mergelsberg, PhD, Director, Chemical and Physical Sciences (Chemical Development), Schering -Plough Research Institute
• Concepcion Jimenez-Gonzalez, PhD, Director, Operational Sustainability, GlaxoSmithKline
• Peter Dunn, PhD, Green Chemistry Team Leader, Pfizer
• Marcus Chung, MBA, Director, Corporate Citizenship, McKesson Corporation
• James Hagan, Vice President, Corporate Environment, Health, Safety and Sustainability, GlaxoSmithKline
• Norman Goldschmidt, Principal, Pharma Engineering Advisors, and Former Sr. Director of Global Engineering & Design, Bristol-Myers Squibb

Government
• Chen Wen, Office of Prevention, Pesticides and Toxics, US Environmental Protection Agency
• Ã…ke Wennmalm, MD, PhD, Professor, Environmental Director, Stockholm County Council
• Michael Gonzalez, National Risk Management Research Lab, US Environmental Protection Agency
• Walt Tunnessen, National Program Director for the EPA Energy Star® Program, US Environmental Protection Agency

Academia
• Terrence J. Collins, PhD, Thomas Lord Professor of Chemistry, Director, Institute for Green Science, Carnegie Mellon University
• William Trombetta, Professor of Marketing, St. Joseph’s University

Enviromental Guru Keynote
• Kim Carlson, Founder, Earthsmart Consumer and author of Green Your Work: Boost Your Bottom Line While Reducing Your Carbon Footprint

The Green Pharma Summit is about how Pharma is going green. Pharmaceutical companies are discovering that going green is not just for altruistic reasons, but that going green actually has benefits to the bottom line. Going green saves and makes money. If you'd like to network with other professionals who are working in the Green Pharma field, join our Green Pharma LinkedIn Group!


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Pfizer Program Means Free Meds, Even Viagra, For Many Jobless

The main circumstance through which a consumer becomes eligible for Pfizer's new "free drug" assistance program is one to avoid. Nonetheless, the program's benefits are sure to be welcomed by the unemployed who are able to take advantage.

Eligibility requirements of the new program include:

  • Loss of employment since January 1, 2009


  • Prescribed and taking a Pfizer medicine for at least 3 months prior to becoming unemployed and enrolling in the program


  • Lack of prescription drug coverage


  • Can attest to loss of employment/loss of insurance


  • Must fill out application and provide needed documentation

The good news is that there is no limit to previous income before the consumer is laid off. And, more than 70 medications will be covered through the program. Interestingly enough, the program includes Viagra. It does not include many expensive treatments, for cancer, for example.

The program will be fully operational on July 1, 2009 and will be open for enrollment through Dec. 31, 2009. Qualified consumers and their families can take advantage of free treatment for up to one year, or until they become reinsured.

The Wall Street Journal ran a blog item on Pfizer's new program. This informative entry also includes examples of other companies who are providing benefits to consumers who lose their jobs.

Nearly 46 million Americans lack health insurance coverage, and that number is increasing as unemployment rates reach their highest levels in 25 years.

Brian Bujdos
AccessRx.com


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Wednesday, May 6, 2009

What are companies doing to make Pharma greener?

The pharmaceutical sector is working hard to adopt more sustainable and environmentally friendly practices that offer measurable improvements without sacrificing the bottom-line. As more and more environmental health and sustainability professionals turn their attention to green initiatives, the c-suite is looking to these programs to deliver measurable value with quantifiable impact.

At the Green Pharma Summit, learn how…
* Johnson & Johnson and GlaxoSmithKline adopted successful greening strategies to engage all departments
* Pfizer implemented a company-wide Green Chemistry Team to substantially reduce waste throughout their manufacturing and chemical development processes
* Allergan earned the US EPA Energy Star® Partner of the Year Award by implementing Green R&D and manufacturing practices for energy efficiencies and cost savings
* Schering-Plough influences smart solvent and reagent choices by implementing solvent selection guides to encourage Green decisions from the start

To network with other professionals in the Green Pharma field, we invite you to join our LinkedIn group here.


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Wednesday, April 1, 2009

David Douglas of Pfizer joining us at Project Management for the Drug & Device Industry

On April 29th, David Douglas, Head of Project Management Center of Excellence at Pfizer will provide a critical assessment of the evolving drug development landscape and the impact on your day-to-day environment as a project manager. If you’re interested in understanding how to best position your PM strategy in light of recent M&A activity and the reduction in workforce, then you simply cannot miss this year’s Project Management for the Drug & Device Industry.


For more information on the Project Management for the Drug & Delivery Industry Conference, click here. If you'd like to network with other professionals in the field of project management in the drug industry, join our group of professionals at LinkedIn.



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Wednesday, February 18, 2009

Pfizer Plans to Disclose Payments Made to Clinical Investigators

According to Clinical Trials Today, Pfizer plans to publicly report payments made to clinical investigators, physicians and other health care professionals by early next year, making it the first pharmaceutical company to commit to disclosing payments it makes for conducting clinical trials, speaking and consulting. It seems that Pfizer wants to aim for transparency of their practices, perhaps providing an easier system of due diligence within the pharmaceutical and CRO/Clinical Trials arenas. What do you think of this move by Pfizer?


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Wednesday, February 11, 2009

Pfizer Discloses Payment Information for Clinical Trials

According to this article on outsourcing-pharma.com Pfizer will disclose payments made to principal investigators, major academic institutions and research sites involved in Phase I to IV trials that exceed $500 a year and non-monetary items such as meals that cost more than $25.

Pfizer is getting closer than any drug maker in terms of full disclosure, but if the Physician Payments Sunshine Act of 2009 is passed into law, it would require companies to disclose all payments exceeding $100 a year and would face a fine of up to $1 million if they do not comply.


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