Pages

.

Showing posts with label Cancer. Show all posts
Showing posts with label Cancer. Show all posts

Nektar presents positive preclinical data for NKTR-214, cancer immunotherapy a novel, in the 50th meeting of ASCO

SAN FRANCISCO, June 1, 2014 /PRNewswire/ -- Nektar Therapeutics (NASDAQ: NKTR) announced positive preclinical data for NKTR-214, a new investigational cancer immunotherapy which selectively activates the IL-2 receptor complex and is being developed as a potential treatment for multiple cancers. The results were presented today at the 2014 ASCO Annual Meeting in Chicago.

"When NKTR-214 is combined with either anti-CTLA-4 or anti-PD-1, we observe dramatic efficacy in highly aggressive tumor models," said Stephen Doberstein, Ph.D., Senior Vice President and Chief Scientific Officer of Nektar Therapeutics.  "The tumor growth inhibition we observed with NKTR-214 and anti-PD-1 dosing in a highly aggressive breast tumor model was superior to the combination of the two antibodies in this same model and was also very well-tolerated.  This ability to exploit complementary pathways in the immune system by combining NKTR-214, a new immune activator, with an effective checkpoint inhibitor, such as anti-CTLA-4 or anti-PD-1, holds promise for durable responses in patients."

Preclinical Studies Presented at ASCO
Nektar scientists conducted a series of studies using preclinical models of breast tumors (EMT6) and colon tumors (CT26) to assess both single agent and combination dosing of NKTR-214 with checkpoint inhibitors, either an anti-PD-1 therapy or an anti-CTLA-4 therapy. The studies also compared NKTR-214 single agent and combination dosing regimens with single agent and combination dosing regimens of anti-PD-1 and anti-CTLA-4 therapies. In both the breast and colon tumor models, the combination dosing regimens of NKTR-214 therapy with anti-PD-1 therapy or anti-CTLA-4 therapy resulted in significant tumor growth inhibition. In the aggressive EMT6 breast tumor model where activity with single-agent anti-PD-1 therapy or single-agent anti-CTLA-4 therapy was not observed, pre-dosing of NKTR-214 followed by anti-PD-1 demonstrated better efficacy (tumor growth inhibition of 74%) as compared to a concomitant dosing regimen of anti-CTLA-4 and anti-PD-1 therapies (tumor growth inhibition of 23%).  NKTR-214 was also very well-tolerated when co-dosed with either antibody. 

NKTR-214 Preclinical Data Presentation
The ASCO data presentation can be accessed at:
http://www.nektar.com/pdf/pipeline/NKTR-214/NKTR-214_ASCO_Poster_2014.pdf

About NKTR-214
NKTR-214 is a selective immune stimulator, which is designed to stimulate the patient's own immune system to kill tumor cells.  The molecule uses Nektar's targeted polymer conjugate technology to enable selective activation of immunostimulatory IL-2 receptors, which is a novel mechanism of action in immunotherapy.  Existing IL-2 therapy activates both immunosuppressive as well as immunostimulatory receptors, which has limited its utility in clinical settings. The design of NKTR-214 enhances CD8+ memory effector T cells (tumor-killing cells) in the tumor without increasing regulatory T cells (immune suppressor cells). In addition, the polymer conjugate structure of NKTR-214 increases the exposure of NKTR-214 to the tumor by 500-fold compared to existing IL-2 therapy, allowing, for the first time, antibody-like dosing frequency of a cytokine with a favorable tolerability profile.  NKTR-214 is currently undergoing further IND-enabling studies.

About Nektar
Nektar Therapeutics (NASDAQ: NKTR) is a biopharmaceutical company developing novel therapeutics based on its PEGylation and advanced polymer conjugation technology platforms. Nektar has a robust R&D pipeline of potentially high-value therapeutics in oncology, pain and other therapeutic areas. In the area of pain, Nektar has an exclusive worldwide license agreement with AstraZeneca for naloxegol (NKTR-118), an investigational drug candidate, which has been filed for regulatory approvals in the U.S., Europe and Canada as a once- daily, oral tablet for the treatment of opioid-induced constipation. This agreement also includes NKTR-119, an earlier stage development program that is a co-formulation of naloxegol and an opioid. NKTR-181, a novel mu-opioid analgesic molecule for chronic pain conditions, has completed Phase 2 development in osteoarthritis patients with chronic knee pain. NKTR-171, a new sodium channel blocker being developed as an oral therapy for the treatment of peripheral neuropathic pain, is in Phase 1 clinical development. In oncology, etirinotecan pegol (NKTR-102) is being evaluated in a Phase 3 clinical study (the BEACON study) for the treatment of metastatic breast cancer and is also in Phase 2 studies for the treatment of ovarian, colorectal, lung and brain cancers. In anti-infectives, Amikacin Inhale is in Phase 3 studies conducted by Bayer Healthcare as an adjunctive treatment for intubated and mechanically ventilated patients with Gram-negative pneumonia. Additional development-stage products that leverage Nektar's proprietary technology platform include Baxter's BAX 855, a long-acting PEGylated rFVIII program, which is in Phase 3 clinical development for patients with hemophilia A.

Nektar's technology has enabled eight approved products in the U.S. or Europe through partnerships with leading biopharmaceutical companies, including UCB's Cimzia® for Crohn's disease and rheumatoid arthritis, Roche's PEGASYS® for hepatitis C and Amgen's Neulasta® for neutropenia.

Nektar is headquartered in San Francisco, California, with additional operations in Huntsville, Alabama and Hyderabad, India. Further information about the company and its drug development programs and capabilities may be found online at http://www.nektar.com.

Cautionary Note Regarding Forward-Looking Statements

This press release contains "forward-looking statements" within the meaning of the Private Securities Litigation Reform Act of 1995. Forward-looking statements can be identified by words such as: "anticipate," "intend," "plan," "expect," "believe," "should," "may," "will" and similar references to future periods. Examples of forward-looking statements include, among others, statements we make regarding the therapeutic potential of NKTR-214 and the potential of our technology and drug candidates in our research and development pipeline.  Forward-looking statements are neither historical facts nor assurances of future performance. Instead, they are based only on our current beliefs, expectations and assumptions regarding the future of our business, future plans and strategies, anticipated events and trends, the economy and other future conditions. Because forward-looking statements relate to the future, they are subject to inherent uncertainties, risks and changes in circumstances that are difficult to predict and many of which are outside of our control. Our actual results may differ materially from those indicated in the forward-looking statements. Therefore, you should not rely on any of these forward-looking statements. Important factors that could cause our actual results to differ materially from those indicated in the forward-looking statements include, among others: (i) positive preclinical efficacy findings, such as those for NKTR-214 reported in this press release, are subject to inherent scientific and medical uncertainties typical for this early stage of drug development and may not be confirmed in subsequent preclinical studies or in clinical trials, if any; (ii) NKTR-214 is in early stage research and there are a number of hurdles, including the successful completion of preclinical toxicology studies, prior to the potential commencement of clinical studies for NKTR-214; (iii) our drug candidates and those of our collaboration partners are in various stages of clinical development and the risk of failure is high and can unexpectedly occur at any stage prior to regulatory approval for numerous reasons including safety and efficacy findings even after positive findings in previous preclinical and clinical studies; (iv) the timing of the commencement or end of clinical trials and the commercial launch of our drug candidates may be delayed or unsuccessful due to regulatory delays, slower than anticipated patient enrollment, manufacturing challenges, changing standards of care, evolving regulatory requirements, clinical trial design, clinical outcomes, competitive factors, or delay or failure in ultimately obtaining regulatory approval in one or more important markets; (v) scientific discovery of new medical breakthroughs is an inherently uncertain process and the future success of applying our technology platform to potential new drug candidates (such as NKTR-214) is therefore highly uncertain and unpredictable and one or more research and development programs could fail; and (vi) certain other important risks and uncertainties set forth in our Quarterly Report on Form 10-Q filed with the Securities and Exchange Commission on May 8, 2014. Any forward-looking statement made by us in this press release is based only on information currently available to us and speaks only as of the date on which it is made. We undertake no obligation to update any forward-looking statement, whether written or oral, that may be made from time to time, whether as a result of new information, future developments or otherwise.

Jennifer Ruddock/Nektar Therapeutics

Susan Noonan/SA Noonan Communications, LLC

SOURCE Nektar Therapeutics

RELATED LINKS
http://www.nektar.com

reade more... Résuméabuiyad

Peer Review Studies Find Decipher® Genomic Test Significantly Changes Postoperative Treatment Recommendations for Prostate Cancer Patients and Increases Confidence in Treatment Decisions

SAN DIEGO, May 14, 2014 /PRNewswire/ -- GenomeDx Biosciences today announced data from two new clinical utility studies demonstrating that Decipher® Prostate Cancer Classifier significantly changed treatment decisions and increased confidence in treatment decision-making for men considering adjuvant therapy following prostate surgery. The studies are being published in upcoming issues of the journals Current Medical Research and Opinion (CMRO) and the British Journal of Urology International (BJUI), respectively.

"The American Urological Association has issued clinical guidelines recommending adjuvant radiation therapy to all prostate cancer patients with adverse pathology after surgery, despite that most men in this group did not develop metastasis or die of prostate cancer," noted John Hornberger, M.D., Principal of Cedar Associates, LLC, adjunct faculty at Stanford and senior author on the study published in CMRO. "By providing a more objective, individualized estimate of metastasis risk based on a quantitative laboratory assay, adoption of the Decipher prostate cancer test may reduce inappropriate or inconsistent use of adjuvant treatment in this population."

In the PRO-ACT study published in CMRO, 15 board-certified, community-based urologists who had ordered the Decipher test to inform management of their current patients were asked to provide treatment recommendations before and after receiving their patients' Decipher test results and then complete a decision conflict scale, a measure designed to assess confidence in treatment recommendations. Prior to receiving the Decipher test results, physicians were asked to make treatment decisions based on clinical risk factors such as Gleason score and tumor stage. Following the receipt of Decipher results, physicians changed their treatment recommendations for 30.8 percent of patients (95% CI, 23-39%). Among the 102 patients for whom observation was initially recommended, physicians changed recommendations to adjuvant radiation for 18 of those patients. Conversely, 17 of the 40 patients who were initially slated for adjuvant radiation saw recommendations change to observation. The genomic information provided by Decipher test results significantly influenced which patients were recommended adjuvant treatment (p<0.001). In addition, decisional conflict with regard to physicians' decision to treat with adjuvant radiation therapy was significantly less with the use of Decipher results than without (p<0.0001).

"Making secondary treatment decisions after our patients have had surgery is not cut and dry.  Most men who do not need additional treatment would prefer to avoid the side effects," said Ketan Badani, M.D., urologic oncologist at Columbia University in New York. "The ASSESS-D study clearly demonstrates that adding a test like Decipher, that gives physicians a readout of the genomic fingerprint of a patient's prostate cancer and provides a more precise measure of the biologic risk of developing metastasis, can help physicians make more appropriate treatment decisions, and be more confident in those decisions."

In the ASSESS-D study, a multi-center, prospective decision impact study published in BJUI, 51 community urologists reviewed and provided adjuvant treatment recommendations for randomly selected patient cases considered by clinical practice guidelines to be high risk for metastasis following prostate surgery.  Overall, 31 percent (95% CI: 27-35%) of treatment recommendations were changed after reviewing the Decipher results. Among adjuvant radiation therapy recommendations without Decipher results, 40% (n=77) changed to observation (95% CI: 33-47%) following knowledge of Decipher results. For patient cases recommended for observation, 13% (n=38) (95% CI: 9%-17%) were changed to adjuvant radiation therapy with Decipher. Case histories with low Decipher results were recommended observation 81% of the time (n=276), while for those with high Decipher results, 65% were recommended for treatment (n=118, p<0.0001). Treatment intensity was strongly correlated with the Decipher-predicted probability of metastasis (p<0.001) and the Decipher test was the dominant risk factor driving decisions in multivariable analysis (OR=8.6, 95% CI: 5.3-14.3%, p<0.0001).

About Decipher

The Decipher® Prostate Cancer Classifier directly measures a patient's biological risk of developing metastatic prostate cancer. By assessing the activity of multiple genomic markers associated with metastatic disease, Decipher provides information about the aggressiveness of a patient's tumor - information distinct from that provided by PSA and other clinical risk factors. Decipher continues to demonstrate that it can accurately predict aggressive disease and help physicians make more informed treatment decisions for men with prostate cancer.

Decipher is covered by multiple private insurance plans and is available to eligible US patients through their physicians.  To learn more about ordering the Decipher test please visit www.deciphertest.com.

About GenomeDx Biosciences

GenomeDx Biosciences is focused on transforming patient management by putting usable genomic information in the hands of patients and their physicians. GenomeDx has developed the Decipher® Prostate Cancer Classifier, the first and only commercially available genomic test that predicts the risk of developing metastatic prostate cancer independently of PSA and other conventional risk assessment tools. GenomeDx is based in San Diego, California and Vancouver, British Columbia. To learn more visit www.genomedx.com

SOURCE GenomeDx Biosciences

RELATED LINKS
http://www.genomedx.com

reade more... Résuméabuiyad

AbbVie Announces Initiation of Pivotal Phase III Study of Veliparib (ABT-888) for Patients with Non-Small Cell Lung Cancer

NORTH CHICAGO, Ill., April 15, 2014 /PRNewswire/ -- AbbVie (NYSE: ABBV) announced the initiation of a global Phase III clinical trial evaluating the safety and efficacy of its investigational compound, veliparib (ABT-888), in patients with previously untreated locally advanced or metastatic squamous non-small cell lung cancer (NSCLC). The trial will compare patients randomized to receive either the standard chemotherapies of carboplatin and paclitaxel with the addition of veliparib, versus patients receiving carboplatin and paclitaxel with the addition of placebo.  

"Lung cancer is one of most common cancers worldwide and can be difficult to treat, particularly when it is diagnosed in the more advanced stages of the disease," said Scott Brun M.D., vice president, Pharmaceutical Development, AbbVie. "This Phase III trial is an important step in the development of veliparib and in potentially providing patients with squamous non-small cell lung cancer with a new treatment option."

This randomized, placebo-controlled, double-blind, multicenter, Phase III trial will recruit approximately 900 patients. The primary efficacy outcome of the trial is overall survival (OS). Other pre-specified outcome measures include progression-free survival (PFS), and objective response rate (ORR). The safety of veliparib will also be evaluated in the trial.

More information on the trial is available at www.clinicaltrials.gov (NCT02106546).

About Veliparib (ABT-888)
Veliparib (ABT-888) is an investigational oral poly (adenosine diphosphate [ADP]–ribose) polymerase (PARP) inhibitor being evaluated in multiple tumor types. PARP is a naturally occurring enzyme in the body that repairs damage to DNA, and contributes to chemotherapy resistance in cancer cells. Discovered and developed by AbbVie researchers, veliparib is being developed to increase the effectiveness of common DNA-damaging therapies like chemotherapy or radiation. Veliparib is currently being studied in more than a dozen cancers and tumor types, including breast, ovarian, and non-small cell lung cancers.

About Non-Small Cell Lung Cancer (NSCLC)
Non-small cell lung cancer (NSCLC) is the most common type of lung cancer, accounting for approximately 85-to-90 percent of diagnosed cases.i There are three common subtypes of NSCLC: adenocarcinoma, squamous cell (epidermoid) carcinoma, and large cell (undifferentiated) carcinoma. Adenocarcinoma accounts for approximately 40 percent of lung cancers and is the most common form of NSCLC in patients who smoke, have smoked or have never smoked. Adenocarcinoma typically originates in the outer parts of the lung. Squamous cell carcinoma accounts for about 25-to-30 percent of NSCLC cases, and is usually found in the middle airways of the lungs. Squamous cell is often linked to patients with a history of smoking. About 10-to-15 percent of NSCLC cases are considered large cell carcinomas, which tend to grow and spread quickly, making it a more difficult-to-treat form of NSCLC. Other subtypes exist, but are less common.ii

Lung cancer (both small cell and non-small cell) is the second most common cancer in both men and women. It accounts for about 13 percent of all new cancers in the U.S. and is the leading cause of cancer-related death among both men and women, causing more deaths than colon, breast, and prostate cancers combined.iii Worldwide, it is the most common form of cancer.iv Once NSCLC is diagnosed, treatment options can include surgery, radiation therapy, chemotherapy or targeted therapies, depending on the stage of the disease.v

About AbbVie Oncology
The fight against cancer is one of the greatest battles in medicine and the varied nature of the disease requires a diverse approach that looks at multiple disease targets in a variety of tumor types. AbbVie's oncology research is focused on the discovery and development of targeted therapies that work against the processes cancers need to survive. By investing in new technologies and approaches, we are breaking ground in some of the most widespread and difficult-to-treat cancers, including multiple myeloma and chronic lymphocytic leukemia. Our oncology pipeline includes multiple new molecules in clinical trials being studied in more than 15 different cancers and tumor types.

About AbbVie
AbbVie is a global, research-based biopharmaceutical company formed in 2013 following separation from Abbott Laboratories.  The company's mission is to use its expertise, dedicated people and unique approach to innovation to develop and market advanced therapies that address some of the world's most complex and serious diseases.  AbbVie employs approximately 25,000 people worldwide and markets medicines in more than 170 countries.  For further information on the company and its people, portfolio and commitments, please visit www.abbvie.com.  Follow @abbvie on Twitter or view careers on our Facebook or LinkedIn page.

i "Non-Small Cell Lung Cancer." The American Cancer Society, Accessed March 12, 2014: http://www.cancer.org/cancer/lungcancer-non-smallcell/index?sitearea

ii "Non-Small Cell Lung Cancer: Detailed Guide." The American Cancer Society, Accessed March 12, 2014: http://www.cancer.org/cancer/lungcancer-non-smallcell/detailedguide/index

iii "What Are the Key Statistics About Lung Cancer?" The American Cancer Society, Accessed March 12, 2014: http://www.cancer.org/cancer/lungcancer-non-smallcell/detailedguide/non-small-cell-lung-cancer-key-statistics

iv "Lung Cancer Incidence Statistics." Cancer Research U.K., Accessed March 12, 2014: http://www.cancerresearchuk.org/cancer-info/cancerstats/types/lung/incidence/uk-lung-cancer-incidence-statistics#geog

v "What Are the Key Statistics About Lung Cancer?" The American Cancer Society, Accessed March 12, 2014: http://www.cancer.org/cancer/lungcancer-non-smallcell/detailedguide/non-small-cell-lung-cancer-treating-general-info

SOURCE AbbVie

RELATED LINKS
http://www.abbvie.com

reade more... Résuméabuiyad

GenomeDx Biosciences Announces data on genomic tests for prostate and bladder cancer to be presented at the annual meeting of UAE

SAN DIEGO, 11 April 2014/PRNewswire /-GenomeDx Biosciences announced today two study abstracts for Genomic analysis of the company for the prostate and bladder cancers have been chosen as "Best posters in a Poster Session" by the organizers of the Conference in the annual European Congress 29 Association of Urology.

The first presentation of poster shows the clinical validation of decipher sorter ® for prostate cancer for the prediction of failure of treatment in men treated with radiation therapy after surgery.  The second poster presentation, reports on the discovery and validation of a genomic signature 15-marker to predict recurrence of high-risk bladder cancer.

Follow the timetable for the presentation of posters in UAE:

Session title: "Improvement in the measurement of biomarkers in prostate cancer"
Overview of title: "Validation of a classifier of genomic for prediction of biochemical failure after postoperative radiotherapy in high-risk prostate cancer"
Date and time: Saturday, April 12, 2014, 16:00 to 17:30 UTC
Room: A2
Abstract #: 205

Session title: "Modern staging in bladder and upper tract urothelial carcinomas: a new era has begun"
Overview of title: "Discovery and validation of a signature of novel expression for prediction of recurrence in subsequent cystectomy of high-risk bladder cancer"
Date and time: Monday, April 14, 2014, 12:15 to 13:45 UTC
Room: K1
Abstract #: 898

About GenomeDx Biosciences
GenomeDx Biosciences develops and markets Genomic analysis for prostate and other Urologic Cancers that impact treatment decisions, improve patient outcomes and ultimately reduce health care costs. GenomeDx has developed the decoding of prostate cancer classifier, the first and only commercially available genomic test that predicts the risk of developing metastatic prostate cancer regardless of PSA and other conventional risk assessment tools. GenomeDx is based in San Diego, California and Vancouver, British Columbia. www.genomedx.com

Press contact:
Cammy Duong
Canale communications
619-849-5382
Cammy@canalecomm.com

SOURCE GenomeDx Biosciences

RELATED LINKS
http://www.genomedx.com

reade more... Résuméabuiyad

Research by Structural Genomics Consortium and DiscoveRx Points to New Multi-Targeting Approaches to Cancer Therapy

DiscoveRx Corporation, Fremont, CA, Contact: Sailaja Kuchibhatla, skuchibhatla@discoverx.com. (PRNewsFoto/DiscoveRx Corporation)jwplayer.key="2kY/GKwZ2uQZmDlQ9VYArfZt2b4+KhHX3+DM4zisgtE=";OXFORD, United Kingdom and FREMONT, Calif., March 5, 2014 /PRNewswire/ -- The Structural Genomics Consortium (SGC) and DiscoveRx Corporation today announced the publication of findings that suggest compelling new multi-targeting approaches for cancer therapy. In a study entitled "Dual kinase-bromodomain inhibitors for rationally designed polypharmacology," which appeared on-line in Nature Chemical Biology (http://www.nature.com/nchembio/index.html), the researchers demonstrate that several clinical kinase inhibitors also potently inhibit diverse bromodomain epigenetic reader proteins.

Kinase inhibitor-based targeted therapies have had clinical successes. However, a substantial proportion of patients fail to respond initially, and acquired resistance to these drugs remains problematic. Inhibition of multiple oncogenic proteins in the same tumor is an established strategy to address these challenges, but the discovery of inhibitors targeting multiple rationally chosen kinases is difficult, and combination therapy approaches require complex clinical investigations.

The finding that several oncology-focused clinical kinase inhibitors also potently inhibit bromodomains, including the established cancer target BRD4, demonstrates the feasibility of a "single agent, inter-family" multi-targeting approach. The structural biology data presented indeed suggest actionable dual inhibitor design strategies. Co-senior author Stefan Knapp, Principal Investigator at the SGC (based at the University of Oxford) commented, "The diversity of the kinase catalytic site and the acetyllysine binding pockets in bromodomains will allow optimization of inhibitor potency for both target classes, which will facilitate the development of therapeutic dual inhibitors."

Among the kinase inhibitors shown to have potent BRD4 activity are the JAK2-FLT3 inhibitor TG-101348 and the PLK1 inhibitors BI-2536 and volasertib. "Since FLT3 and BRD4 can be independent drivers in acute myelogenous leukemia, the TG-101348 data raise hope for the development of an optimized dual FLT3-BRD4 inhibitor, which would be anticipated to improve patient outcomes," said co-senior author Daniel Treiber, Sr. Director of Research at DiscoveRx.

Co-author Neil Shah, Leader of the Hematopoietic Malignancies Program at the UCSF Helen Diller Family Comprehensive Cancer Center, agrees that multi-targeting single agent therapies could offer significant advantages. "Attempts to clinically test therapeutic combination strategies that exploit synergistic interactions are often hampered by significant obstacles such as the potentially unacceptable cost and toxicity of combining two drugs, as well as practical difficulties inherent in working simultaneously with two pharmaceutical companies," he said. "This work excitingly demonstrates that in some cases, rational medicinal chemistry efforts can circumvent many of these issues and potentially rapidly advance medical science."

Importantly, the dual BRD4-kinase inhibitors were also shown to exhibit complex, unique polypharmacologies across a panel of human primary cell disease models (BioMAP® systems). "Our strategy of using both target-based and phenotypic screening approaches represents a paradigm shift in developing single agents that can act as ready-made combination therapies that may be more efficacious and overcome clinical obstacles," said co-first author Alison O'Mahony, Sr., Director of Research at BioSeek, a division of DiscoveRx.

About the Structural Genomics Consortium
The Structural Genomics Consortium (SGC) (http://www.thesgc.org/) is a not-for-profit, public-private partnership that conducts pre-competitive research to facilitate the discovery of new medicines.  Based at the University of Oxford and University of Toronto the SGC's work contributes to new hypotheses in understanding and treating human disease, and the subsequent identification of new targets for drug discovery. The SGC's primary objectives are to produce and characterize the 3-dimensional structures of soluble proteins and of integral membrane proteins, to generate selective chemical probes for epigenetic proteins and kinases, and to release these into the public domain. As part of its mission the SGC generates medically relevant reagents and knowledge related to human proteins and proteins from human parasites, which it shares through over 250 collaborations with researchers worldwide. Since 2004 the SGC has solved over 1400 protein structures and has generated 19 chemical probes for epigenetic proteins (http://www.thesgc.org/chemical-probes/epigenetics).

About DiscoveRx Corporation
Founded in 2000, DiscoveRx is a leading provider of next generation drug discovery screening and profiling platforms. Utilizing its three proprietary technology platforms beta-galactosidase-based enzyme fragment complementation (EFC), KINOMEscan® and BioMAP® (http://www.biomapsystems.com), DiscoveRx offers an industry leading portfolio of over 1000 target-based and human primary cell-based systems for oncology, metabolic disease, inflammation, autoimmunity, CNS and cardiovascular research at global pharmaceutical, biotechnology and academic institutes.  For more information, visit http://www.discoverx.com.

University of California Disclaimer
The information stated above was prepared by the Structural Genomics Consortium (SGC) and DiscoveRx Corp. and reflects solely that opinion. Nothing in this statement shall be construed to imply any support or endorsement of the SGC or DiscoveRx, or any of its products, by The Regents of the University of California, its officers, agents and employees.

Logo - http://photos.prnewswire.com/prnh/20130912/SF78575LOGO

SOURCE DiscoveRx Corporation

RELATED LINKS
http://www.discoverx.com

reade more... Résuméabuiyad

Global Cancer Biomarkers Market 2012-2016 with Agilent Technologies Inc., Gen-Probe Inc. and Astellas Pharma US Inc. Dominating

DUBLIN, Ireland, December 13, 2013 /PRNewswire/ --

Research and Markets (http://www.researchandmarkets.com/research/mrb9sm/global_cancer) has announced the addition of the "Global Cancer Biomarkers Market 2012-2016" report to their offering.
(Logo: http://photos.prnewswire.com/prnh/20130307/600769 )


TechNavio's analysts forecast the Global Cancer Biomarkers market to grow at a CAGR of 18.22 percent over the period 2012-2016. One of the key factors contributing to this market growth is the increasing prevalence of cancer. The Global Cancer Biomarkers market has also been witnessing the trend of the emergence of personalized medicines. However, the poor regulatory and reimbursement systems could pose a challenge to the growth of this market.

The key vendors dominating this market space are Abbott Laboratories, Affymetrix, Inc., Agilent Technologies Inc., Gen-Probe Inc., Hologic, Inc., and Roche Diagnostics Corp.

The other vendors mentioned in the report are Agendia BV, Ambrilia Biopharma, Astellas Pharma US Inc., Morphotek, Inc., Gen-Probe, Inc., Veridex LLC, Morphotek, Inc., Immunomedics, Inc., Clarient, Inc.

Commenting on the report, an analyst from TechNavio's Healthcare team said: ''Over the years, personalized medicines have gained significant popularity because they enable the medical profession to provide customized treatment to patients. Personalized medicines are increasingly being used in targeted cancer therapies. As personalized medicines gain more importance and popularity, the demand for biomarkers is expected to increase. In the coming years, as personalized medicines become more popular, conventional approaches will automatically become obsolete.''

Further, the report reveals that one of the key challenges is the existence of poor regulatory and reimbursement systems.

For more information visit http://www.researchandmarkets.com/research/mrb9sm/global_cancer

Research and Markets
Laura Wood, Senior Manager.
press@researchandmarkets.com
U.S. Fax: 646-607-1907
Fax (outside U.S.): +353-1-481-1716
Sector: Oncology

SOURCE Research and Markets

reade more... Résuméabuiyad