Design Evolution of EXOGEN® Enhances Patient Compliance

December 05, 2016

DURHAM, N.C.–(BUSINESS WIRE)–Bioventus, a global leader in orthobiologics, today announced that a published study reveals its latest generation EXOGEN Ultrasound Bone Healing System improves patient compliance by 10% and overall compliance never fell below 76%. EXOGEN uses safe, effective low-intensity pulsed ultrasound (LIPUS) to help stimulate the body’s natural healing process.1The findings are published in the November 30, 2016 issue of Medical Devices: Evidence and Research available here.

The next generation EXOGEN device launched in 2014 and features a compliance calendar. The study found that among 12,984 patient data files analyzed, the patient compliance was 84%, while compliance with the previous generation EXOGEN device was 74%. In addition, incorporation of the calendar feature resulted in compliance never decreasing below 76% over the 6-month analysis period.

The researchers also analyzed 12 clinical trials on LIPUS where compliance was recorded. In eight of these clinical studies, where they met their end point, compliance was 88%. If the primary end point was unmet, compliance averaged 54%.

“This study clearly shows a correlation between clinical effectiveness and compliance rates of more than 70%,” said Neill Pounder, Director – Project Management, Bioventus. “The work also revealed that use of the next generation EXOGEN device resulted in a measurable improvement in patient adherence, which may help to optimize clinical outcomes and fracture healing. LIPUS technology can make a difference if it used as directed.”

Authors of this study are N.M. Pounder, J.T Jones and K.J. Tanis of Bioventus.

About Bioventus

Bioventus is an orthobiologics company that delivers clinically proven, cost-effective products that help people heal quickly and safely. Its mission is to make a difference by helping patients resume and enjoy active lives. Bioventus has two product portfolios for orthobiologics, Bioventus Active Healing Therapies and Bioventus Surgical that make it a global leader in active orthopaedic healing. Built on a commitment to high quality standards, evidence-based medicine and strong ethical behavior, Bioventus is a trusted partner for physicians worldwide.

For more information, visit www.BioventusGlobal.com and follow the company on Twitter @Bioventusglobal

Bioventus, the Bioventus logo and EXOGEN are registered trademarks of Bioventus LLC.

1. Azuma Y, Ito M, Harada Y, Takagi H, Ohta T, Jingushi S. Low-intensity pulsed ultrasound accelerates rat femoral fracture healing by acting on the various cellular reactions in the fracture callus. J Bone Miner Res. 2001; 16(4):671-680.

Contacts

Media:
Bioventus
Thomas Hill, 919-474-6715
thomas.hill@bioventusglobal.com

Cerapedics Announces Breakthrough Technology Agreement with Premier Inc.

WESTMINSTER, Colo., Nov. 30, 2016 /PRNewswire/ — Cerapedics, a privately-held orthobiologics company, today announced the company has been awarded a group purchasing agreement with Premier Inc., a leading healthcare improvement company, for Breakthrough Technology: Bone Tissue Synthetic Implantable Products. The new agreement allows Premier members, at their discretion, to take advantage of special pricing and terms pre-negotiated by Premier for i-FACTOR™ Peptide Enhanced Bone Graft. The contract is effective December 1, 2016.

“We are pleased to announce our new agreement with Premier because it will help us provide a growing number of surgeons with the advanced biologic they need to stimulate a natural bone healing process in patients with degenerative cervical disc disease,” said Glen Kashuba, CEO of Cerapedics. “We look forward to the continued expansion of i-FACTOR Bone Graft commercialization into the new year.”

i-FACTOR Bone Graft is based on synthetic small peptide (P-15) technology developed by Cerapedics to support bone growth through cell attachment and activation. Supported by Level I human clinical data, i-FACTOR Bone Graft received Premarket Approval (PMA) from the U.S. Food and Drug Administration (FDA) in November 2015.

Premier unites an alliance of approximately 3,750 U.S. hospitals and 130,000 other provider organizations to transform healthcare. With integrated data and analytics, collaboratives, supply chain solutions, and advisory and other services, Premier enables better care and outcomes at a lower cost.

About Cerapedics

Cerapedics is an orthobiologics company focused on developing and commercializing its proprietary synthetic small peptide (P-15) technology platform. i-FACTOR Peptide Enhanced Bone Graft is the only biologic bone graft in orthopedics that incorporates a small peptide as an attachment factor to stimulate the natural bone healing process. This novel mechanism of action is designed to support safer and more predictable bone formation compared to commercially available bone growth factors. More information can be found at www.cerapedics.com.

Media contact:
Adam Daley
Berry & Company Public Relations
212-253-8881
adaley@berrypr.com

SOURCE Cerapedics

Related Links

http://www.cerapedics.com

How Artificial Muscles Could Transform the Lives of Some Military Veterans

By Nathan Hurst, November 22, 2016

Injury is a sad fact of military service, especially in wartime. According to a study performed by scientists at the Uniformed Services University of the Health Sciences, by far the most frequent is soft tissue injuries to skin, fat and muscle.

Of these, muscle damage is particularly difficult to heal. Beyond a certain size—about one cubic centimeter—the body simply cannot do it. As a result, people experiencing this kind of trauma, called volumetric muscle loss, lose function of the muscle, and experience deformation, scar tissue or contracted muscles.

According to a study from 2015 in the Journal of Rehabilitation Research and Development (a peer-reviewed publication put out by the Department of Veterans Affairs), volumetric muscle loss is typically permanent.

“The current primary standard of care for [volumetric muscle loss] injuries is physical rehabilitation,” says Benjamin Corona, lead author of the study. “The documented cases available do not indicate significant functional recovery unless energy returning orthoses [braces or other devices] are used. Physical rehabilitation alone will not promote regeneration of the lost tissue.”

Corona and his team of researchers looked at the records of more than 500 service members who were discharged from the military due to injuries between 2001 and 2007. They found that most broken bones sustained in combat result in open wounds, and that while the bone can often be repaired, the muscle is left damaged. Service members who sustained broken bones are often disqualified from service not because of the break, but because of disability due to the soft-tissue wound.

“Despite a tremendous amount of attention given to bone healing after type III open tibia fracture, based on the current findings it is appropriate to conclude that soft-tissue complications make the majority contribution to disability of salvaged limbs,” the authors wrote. “The development of therapies addressing [volumetric muscle loss] has the potential to fill a significant void in orthopedic care.”

Historically, the best course of treatment was to use a flap of muscle, either from a different part of the body or rotated from a connected muscle, to cover the wound. This helps to heal, but cannot provide the normal use of an uninjured muscle, and so the limb where the injury occurred is often permanently disabled.

 

READ THE REST HERE

 

Cerapedics Receives Best New Technology Award for Spine Care at NASS Annual Meeting

WESTMINSTER, Colo., Nov. 18, 2016 /PRNewswire/ — Cerapedics, a privately-held orthobiologics company, today announced it has received a Best New Technology Award for spine care as part of the 2016 Orthopedics This Week Spine Technology Awards. The award recognizes the company’s i-FACTOR™ Peptide Enhanced Bone Graft, the first bone graft to be approved for use in the cervical spine by the U.S. Food and Drug Administration (FDA WESTMINSTER). Award winners were announced in conjunction with the 2016 North American Spine Society (NASS) Annual Meeting, held October 26-29 in Boston, MA.

“Over the past year we have been focused on accelerating our commercialization efforts in the U.S. following the FDA Premarket Approval (PMA) of i-FACTOR Bone Graft,” said Glen Kashuba, CEO of Cerapedics. “We continue to receive outstanding feedback from surgeons across the country who are excited to have a safe, clinically effective and cost effective bone graft that is supported by Level I human data. We are grateful to be recognized by Orthopedics This Week and the surgeon panel who chose i-FACTOR Bone Graft for the Best New Technology Award.”

i‐FACTOR Bone Graft is based on synthetic small peptide (P-15) technology developed by Cerapedics to support bone growth through cell attachment and activation. In November 2015, i-FACTOR Bone Graft was approved by the FDA for use in anterior cervical discectomy and fusion (ACDF) procedures in patients with degenerative cervical disc disease.

The annual Orthopedics This Week Spine Technology Awards honor inventors, engineering teams, surgeons and their companies who have created the most innovative, enduring and practical products to treat back pain. For more information, visit https://ryortho.com/2016/11/the-ten-best-new-spine-technologies-for-2016/.

About Cerapedics

Cerapedics is an orthobiologics company focused on developing and commercializing its proprietary synthetic small peptide (P-15) technology platform. i-FACTOR Peptide Enhanced Bone Graft is the only biologic bone graft in orthopedics that incorporates a small peptide as an attachment factor to stimulate the natural bone healing process. This novel mechanism of action is designed to support safer and more predictable bone formation compared to commercially available bone growth factors. More information can be found at www.cerapedics.com.

Media contact:
Adam Daley
Berry & Company Public Relations
212-253-8881
adaley@berrypr.com

 

SOURCE Cerapedics

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Anika to Present at the Piper Jaffray 28th Annual Healthcare Conference on November 29, 2016

November 15, 2016

BEDFORD, Mass.–(BUSINESS WIRE)–Anika Therapeutics, Inc. (NASDAQ: ANIK), a global, integrated orthopedic medicines company specializing in therapeutics based on its proprietary hyaluronic acid (“HA”) technology, today announced that its Chief Financial Officer, Sylvia Cheung, will make a presentation at the Piper Jaffray 28th Annual Healthcare Conference on Tuesday, November 29, 2016 at 8:50 am ET. The conference is being held at the Lotte New York Palace hotel in New York City.

A live audio webcast of the presentation may be accessed via the “Investor Relations” section of Anika’s website at www.anikatherapeutics.com. An audio archive of the presentation also will be available on the website.

About Anika Therapeutics, Inc.
Anika Therapeutics, Inc. (NASDAQ: ANIK) is a global, integrated orthopedic medicines company based in Bedford, Massachusetts. Anika is committed to improving the lives of patients with degenerative orthopedic diseases and traumatic conditions with clinically meaningful therapies along the continuum of care, from palliative pain management to regenerative cartilage repair. The Company has over two decades of global expertise developing, manufacturing, and commercializing more than 20 products based on its proprietary hyaluronic acid (HA) technology. Anika’s orthopedic medicine portfolio includes ORTHOVISC®, MONOVISC®, and CINGAL®, which alleviate pain and restore joint function by replenishing depleted HA, and HYALOFAST®, a solid HA-based scaffold to aid cartilage repair and regeneration. For more information about Anika, please visit www.anikatherapeutics.com.

Contacts

For Investor Inquiries:
Anika Therapeutics, Inc.
Sylvia Cheung, 781-457-9000
Chief Financial Officer
or
For Media Inquiries:
Pure Communications, Inc.
Susan Heins, 864.286.9597

Bioventus Expands to Mexico with DUROLANE® for Knee Osteoarthritis Patients

November 14, 2016

HOOFDDORP, The Netherlands–(BUSINESS WIRE)–Bioventus, a leader in orthobiologic solutions, has entered the patient care market in Mexico. This announcement reflects the company’s continued growth in international markets and its mission to partner with the health care community to help people resume and enjoy active lives. The initial Bioventus product available in Mexico is DUROLANE a single-injection joint-fluid therapy based on a natural, safe and proven technology called NASHA® which yields stabilized hyaluronic acid (HA). Hyaluronic acid is a naturally occurring molecule that provides the lubrication and cushioning in a normal joint. In Mexico, DUROLANE is indicated for the symptomatic treatment of mild to moderate knee osteoarthritis (OA).

“International expansion is a key part of our growth strategy at Bioventus and launching in Mexico gives us greater access in Latin America which has tremendous potential for us,” said Tony Bihl, CEO, Bioventus. “We now have orthobiologic solutions in more than 29 countries and expect to expand our global sales and marketing footprint even more in the months to come.”

DUROLANE gives patients suffering from knee osteoarthritis another option for pain management,” said Isabelle Levy-Unger, Managing Director International, for Canada, Latin America and Asia Pacific, Bioventus. “It will be sold through Artimedica SA, a Mexican-based company that specializes in the sale and distribution of diagnostic, surgical and other healthcare products for hospitals and clinics across Mexico. We look forward to working with them to introduce this innovative single-injection solution to OA patients throughout the region.”

“We are very excited to market DUROLANE in Mexico,” said Arnulfo Salazar Guerra, Legal Representative for Artimedica. “Its technology offers clear benefits for the estimated 6.7 million Mexican patients that suffer from knee osteoarthritis.”

DUROLANE is available in Mexico now and is part of the Bioventus Active Healing Therapies portfolio which consists of products that allow patients to resume active lives using their bodies own processes to heal faster or reduce pain. More information is available at www.durolane.com.

About Bioventus

Bioventus is an orthobiologics company that delivers clinically proven, cost-effective products that help people heal quickly and safely. Its mission is to make a difference by helping patients resume and enjoy active lives. Bioventus has two product portfolios for orthobiologics, Bioventus Active Healing Therapies and Bioventus Surgical, that make it a global leader in active orthopaedic healing. Built on a commitment to high quality standards, evidence-based medicine and strong ethical behavior, Bioventus is a trusted partner for physicians worldwide.

For more information, visit www.BioventusGlobal.com and follow the company on Twitter @Bioventusglobal.

DUROLANE – Indications

For the symptomatic treatment of mild to moderate knee osteoarthritis.

There are no known contraindications. You should not use DUROLANE if you have infections or skin disease at the injection site. DUROLANE has not been tested in pregnant or lactating women, or children. Risks can include transient pain, swelling and/or stiffness at the injection site. Clinical effectiveness has been demonstrated out to six months but results may vary depending on various patient factors.

NASHA is a registered trademark of Galderma S.A.

Bioventus, the Bioventus logo and DUROLANE are registered trademarks of Bioventus LLC.

Contacts

Media Contacts:
Bioventus
Thomas Hill
+1 919-474-6715
thomas.hill@bioventusglobal.com

Asterias Biotherapeutics Announces Treatment of First Spinal Cord Injury Patient with Maximum Dose of AST-OPC1 in SCiStar Clinical Trial

FREMONT, Calif., Nov. 8, 2016 /PRNewswire/ — Asterias Biotherapeutics, Inc. (NYSE MKT: AST), a biotechnology company pioneering the field of regenerative medicine, today announced that the first patient with complete (AIS-A) cervical spinal cord injury was successfully administered the highest dose of 20 million cells of AST-OPC1 (oligodendrocyte progenitor cells) in the SCiStar clinical trial at Santa Clara Valley Medical Center (SCVMC) in San Jose, CA. In addition, enrollment continues in the AIS-B 10 million cell cohort with a second patient now dosed.

Dose escalation to 20 million cells followed the Data Monitoring Committee (DMC) review of safety data from the prior 2 million cell and 10 million cell dose cohorts, and was based on AST-OPC1’s continued favorable safety profile observed in the ongoing clinical study. The company recently presented positive early efficacy data from the 10 million cell cohort.  These data reached the 6 month efficacy target within 3 months and suggested the emergence of a possible early dose response for AST-OPC1.

“We have been very encouraged by the early clinical efficacy and safety data for AST-OPC1, and we now look forward to evaluating the 20 million cell dose in complete cervical spinal cord injury patients,” said Dr. Edward Wirth, Chief Medical Officer of Asterias. “Based on extensive pre-clinical research, this is in the dosing range where we would expect to see optimal clinical improvement in these patients.”

Stephen McKenna, MD, Chief of the Rehabilitation Trauma Center at SCVMC, said, “The early efficacy results presented in September from the 10 million cell AIS-A cohort were quite encouraging, and we’re looking forward to seeing if those meaningful functional improvements are maintained through six months and beyond. We are also looking forward to seeing the results in patients from the higher 20 million cell AST-OPC1 dose, as well as results in the first AIS-B patients.”

The trial results to date continue to support a positive safety profile for AST-OPC1. There have been no serious or unexpected adverse events related to AST-OPC1, the administration procedure or the accompanying short course of low-dose immunosuppression in any of the patients treated with AST-OPC1, including five patients in an earlier Phase 1 trial with neurologically complete thoracic SCI.

In September, Asterias reported positive early efficacy data for AST-OPC1 from five AIS-A patients that had been dosed with 10 million AST-OPC1 cells in the SCiStar study. While early in the study, by Day 90 of follow-up, all patients have shown at least one motor level of improvement and the efficacy target of 2 of 5 patients in the cohort achieving two motor levels of improvement on at least one side of their body was achieved. Patient improvements are being measured by the ISNCSCI neurological classification scale widely used to quantify functional status of patients with spinal cord injuries. As suggested by existing research in patients with complete cervical spinal cord injuries, a two motor level improvement is correlated with a significant increase in functional ability, as well as the ability for patients to care for themselves, since so many activities of daily living are dependent on arm and hand function [Steeves, et al, 2012].

About the SCiStar Trial

The SCiStar trial is an open-label, single-arm trial testing three sequential escalating doses of AST-OPC1 administered at up to 20 million AST-OPC1 cells in as many as 35 patients with sub-acute, C-5 to C-7, motor complete (AIS-A or AIS-B) cervical SCI. These individuals have essentially lost all movement below their injury site and experience severe paralysis of the upper and lower limbs. AIS-A patients have lost all motor and sensory function below their injury site, while AIS-B patients have lost all motor function but may retain some minimal sensory function below their injury site. AST-OPC1 is being administered 14 to 30 days post-injury. Patients will be followed by neurological exams and imaging procedures to assess the safety and activity of the product.

The study is being conducted at six centers in the U.S. and the company plans to increase this to up to 12 sites to accommodate the expanded patient enrollment.  Clinical sites that have enrolled and dosed patients in the study include the Medical College of Wisconsin in Milwaukee, Shepherd Medical Center in Atlanta, University of Southern California (USC) in Los Angeles and Santa Clara Valley Medical Center in San Jose.

Asterias has received a Strategic Partnerships Award grant from the California Institute for Regenerative Medicine, which provides $14.3 million of non-dilutive funding for the Phase 1/2a clinical trial and other product development activities for AST-OPC1.

Additional information on the Phase 1/2a trial, including trial sites, can be found at www.clinicaltrials.gov, using Identifier NCT02302157, and at the SCiStar Study Website (www.SCiStar-study.com).

About AST-OPC1

AST-OPC1, an oligodendrocyte progenitor population derived from human embryonic stem cells, has been shown in animals and in vitro to have three potentially reparative functions that address the complex pathologies observed at the injury site of a spinal cord injury. These activities of AST-OPC1 include production of neurotrophic factors, stimulation of vascularization, and induction of remyelination of denuded axons, all of which are critical for survival, regrowth and conduction of nerve impulses through axons at the injury site. In preclinical animal testing, AST-OPC1 administration led to remyelination of axons, improved hindlimb and forelimb locomotor function, dramatic reductions in injury-related cavitation and significant preservation of myelinated axons traversing the injury site.

In a previous Phase 1 clinical trial, five patients with neurologically complete, thoracic spinal cord injury were administered two million AST-OPC1 cells at the spinal cord injury site 7-14 days post-injury. They also received low levels of immunosuppression for the next 60 days. Delivery of AST-OPC1 was successful in all five subjects with no serious adverse events associated with the administration of the cells, with AST-OPC1 itself, or the immunosuppressive regimen. No evidence of rejection of AST-OPC1 was observed in detailed immune response monitoring of all patients. In four of the five patients, serial MRI scans indicated that reduced spinal cord cavitation may have occurred. Based on the results of this study, Asterias received clearance from FDA to progress testing of AST-OPC1 to patients with complete cervical spine injuries, which represents the first targeted population for registration trials.

About Asterias Biotherapeutics

Asterias Biotherapeutics, Inc. is a biotechnology company pioneering the field of regenerative medicine. The company’s proprietary cell therapy programs are based on its immunotherapy and pluripotent stem cell platform technologies. Asterias is presently focused on advancing three clinical-stage programs which have the potential to address areas of very high unmet medical need in the fields of neurology and oncology. AST-OPC1 (oligodendrocyte progenitor cells) is currently in a Phase 1/2a dose escalation clinical trial in spinal cord injury.

AST-VAC1 (antigen-presenting autologous dendritic cells) is undergoing continuing development by Asterias after demonstrating promise in a Phase 2 study in Acute Myeloid Leukemia (AML) and completing a successful end-of-Phase 2 meeting with the FDA. The company is currently focused on streamlining and modernizing the manufacturing process for AST-VAC1 in advance of a planned initiation of a confirmatory phase 2b study in 2018.  AST-VAC2 (antigen-presenting allogeneic dendritic cells) represents a second generation, allogeneic immunotherapy. The company’s research partner, Cancer Research UK, plans to begin a Phase 1/2a clinical trial of AST-VAC2 in non-small cell lung cancer in 2017. Additional information about Asterias can be found at www.asteriasbiotherapeutics.com.

Forward Looking Statements

Statements pertaining to future financial and/or operating and/or clinical research results, future growth in research, technology, clinical development, and potential opportunities for Asterias, along with other statements about the future expectations, beliefs, goals, plans, or prospects expressed by management constitute forward-looking statements. Any statements that are not historical fact (including, but not limited to statements that contain words such as “will,” “believes,” “plans,” “anticipates,” “expects,” “estimates”) should also be considered to be forward-looking statements. Forward-looking statements involve risks and uncertainties, including, without limitation, risks inherent in the development and/or commercialization of potential products, uncertainty in the results of clinical trials or regulatory approvals, need and ability to obtain future capital, and maintenance of intellectual property rights. Actual results may differ materially from the results anticipated in these forward-looking statements and as such should be evaluated together with the many uncertainties that affect the businesses of Asterias, particularly those mentioned in the cautionary statements found in Asterias’ filings with the Securities and Exchange Commission. Asterias disclaims any intent or obligation to update these forward-looking statements.

 

SOURCE Asterias Biotherapeutics, Inc.

Related Links

http://www.asteriasbiotherapeutics.com

Bioventus Appoints Andrew McCartney Managing Director, International for EMEA

DURHAM, N.C.–(BUSINESS WIRE)–

Bioventus, a global leader in orthobiologic solutions, today announced the appointment of Andrew McCartney as Managing Director, International for Europe, Middle East and Africa (EMEA). McCartney, who will be responsible for leading the company’s EMEA business and growing the Bioventus Active Healing Therapies portfolio within the region, will also have responsibility for the international headquarters office in Hoofddorp, The Netherlands.

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“We are very pleased Andrew is joining us to lead our growing business in EMEA,” said Tony Bihl, CEO of Bioventus. “His broad and deep experience of the European healthcare market, business management and marketing will help us accelerate our growth in key international markets.”

McCartney joins Bioventus from Stryker, where for the past 10 years he progressively grew through leadership roles in Sales, Marketing and Business Unit Management positions. He most recently served as Vice President and General Manager of the Surgical Division of Stryker Europe and previously was General Manager, MedSurg, Stryker UK & Ireland. He began his nearly 20-year career in the medical device industry with UK based distributors gaining experience in multiple segments including wound care, patient monitoring and diagnostic cardiology in both primary and acute healthcare settings.

McCartney has a Bachelor of Accountancy from the University of Glasgow.

About Bioventus

Bioventus is an orthobiologics company that delivers clinically proven, cost-effective products that help people heal quickly and safely. Its mission is to make a difference by helping patients resume and enjoy active lives. Bioventus has two product portfolios for orthobiologics, Bioventus Active Healing Therapies and Bioventus Surgical that make it a global leader in active orthopaedic healing. Built on a commitment to high quality standards, evidence-based medicine and strong ethical behavior, Bioventus is a trusted partner for physicians worldwide.

For more information, visit www.BioventusGlobal.com and follow the company on Twitter @Bioventusglobal.

Bioventus and the Bioventus logo are registered trademarks of Bioventus LLC.

View source version on businesswire.com: http://www.businesswire.com/news/home/20161107005127/en/

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BONESUPPORT™ Announces Key Corporate Appointment To Drive Growth in North America

Lund, Sweden, 7 November, 2016 – BONESUPPORT AB, an emerging leader in innovative injectable bioceramic bone graft substitutes to treat bone voids caused by trauma, infection, disease or related surgery, is pleased to announce the appointment of Patrick O’Donnell as General Manager and Executive Vice President, North American Commercialization to its leadership team.  Mr O’Donnell will lead the relationship with the company’s partner, Zimmer Biomet, to drive revenue growth of BONESUPPORT’s CERAMENT™ BONE VOID FILLER (BVF). He will also set the strategy for the introduction of CERAMENT™ G, a novel gentamicin eluting bone graft substitute, to the U.S. market pending a positive outcome of the planned FORTIFY PMA trial and subject to FDA approval.

Mr O’Donnell joins BONESUPPORT after serving as CEO of three companies focused on innovative orthopaedic regenerative technologies.  Following his role as CEO of Histogenics Corporation, he was most recently the Co-Founder and CEO of ProteoThera Inc., based in Cambridge, MA.  His experience includes being head of Global Marketing of Confluent Surgical, where he launched and built the DuraSeal™ brand of surgical dural sealant products, currently owned by Integra LifeSciences In addition, he spent 13 years in sales, sales management and marketing in orthobiologics and medical devices at Johnson & Johnson’s DePuy Spine Division.

Mr O’Donnell said: “I am very pleased about the opportunity and quite fortunate to be joining BONESUPPORT at a very important and exciting tipping point stage for the Company. I look forward to working with the BONESUPPORT team to optimize the significant potential of CERAMENT BVF and in time CERAMENT G in North America.”

Richard Davies, CEO of BONESUPPORT, said: “We are excited to welcome Patrick to the BONESUPPORT team, particularly after completing the recent financing, which will be crucial to executing our strategy.  Patrick brings with him a great breadth of experience ranging from start-ups to small and large companies.  He has an in-depth of knowledge of the orthobiologics space and appreciation of the significant potential of our unique CERAMENT drug eluting osteoconductive bioceramic platform to develop a pipeline of novel products for a broad range of bone diseases.   The clinical value proposition of our products is expected to become increasingly relevant to the U.S. healthcare market which is undergoing a sea change to value based care.”

 

Silver Bullet Therapeutics Reports Results of OrthoFuzIon® Antimicrobial Bone Screw Testing Against the Top Six CDC Antibiotic Resistant “Superbugs”1

November 03, 2016

SAN JOSE, Calif.–(BUSINESS WIRE)–Silver Bullet Therapeutics, Inc., a privately held medical device company that has developed an antimicrobial technology for implantable medical devices such as orthopedic bone screws, reported today the results of a study testing the “Time Kill” and “Adherence” effectiveness of its CE-marked OrthoFuzIon® Antimicrobial Bone Screw against the Top Six CDC Antibiotic-Resistant “Superbugs.”1 The study was performed by Emery Pharma, which is a certified, third party testing laboratory. The study consisted of testing a number of the OrthoFuzIon antimicrobial screws against traditional uncoated titanium screws as a control. The organisms tested in-house and by Emery Pharma form the Top Six antibiotic resistant “superbugs” that include: Carbapenem-resistant Enterobacteriaceae (CRE); Klebsiella pneumoniae; Methicillin-resistant Staphylococcus aureus (MRSA); ESBL-producing Enterobacteriaceae (extended-spectrum β-lactamases); Escherichia coli (E. coli); Vancomycin-resistant Enterococcus (VRE); Enterococcus faecium; Multidrug-resistant Pseudomonas aeruginosa; and Multidrug-resistant Acinetobacter baumannii.

“Our OrthoFuzIon coating creates a galvanic zone of bacterial inhibition surrounding the implanted screw within the body,” said founder, President and CEO Paul Chirico. “This is particularly important as the concern, costs and responsibility related to device-contaminations rise.”

“Medical device infections can be costly, cause increased morbidity and lead to device failure,” said Prity S. Vaidya, M.D., an infectious disease specialist. “These microbiology test results using the OrthoFuzIon device are very encouraging considering the type of organisms tested against.”

“Adherence” testing indicated the ability of an OrthoFuzIon device to penetrate bacterial biofilm. Biofilms are formed by many species of bacteria for cell adherence and protection. By creating biofilms, bacteria can form colonies almost anywhere, including in the human body and on implanted medical devices. Biofilms produced by bacteria render most currently available antibiotics ineffective by creating a “shield” through which antibiotics cannot penetrate. This test demonstrated that the OrthoFuzIon Antimicrobial Bone Screw was able to significantly disrupt the development of biofilm.

“We conduct antimicrobial testing on different devices and technologies,” said Ron Najafi, Ph.D., President and CEO of Emery Pharma Services. “We were most impressed by the ‘adherence’ results for the OrthoFuzIon device against the top six antibiotic resistant pathogens that are commonly implicated in hospital-acquired infections. The results of OrthoFuzlon preventing these pathogens from adhering to them were simply impressive.”

OrthoFuzIon is one of the first antimicrobial implantable medical devices designed specifically for orthopedics. The proprietary Silver Bullet coating applied to OrthoFuzIon causes a “galvanic” reaction wherein the silver component ionizes, creating a localized “cloud” of silver ions that surrounds the implanted device and that acts as a deterrent to bacterial colonization.

About Silver Bullet Therapeutics

Silver Bullet Therapeutics, Inc., a privately held company located in San Jose, Calif., has developed and patented antimicrobial coating processes as well as implants and medical devices to address surgical-site infections (SSIs) and hospital-acquired infections (HAIs). The company’s first commercial product, the OrthoFuzIon Bone Screw System, utilizes an advanced silver ion technology that allows for rapid and sustained ionization of the silver and creation of an antimicrobial zone around the screw to prevent microbial colonization of the implanted devices. OrthoFuzIon is a Trademark of Silver Bullet Therapeutics, Inc., and is currently approved for sale only in the European Union.

About Emery Pharma

Emery Pharma (http://emerypharma.com) is a full-service contract research laboratory, specializing in analytical, bioanalytical, microbiology, cell biology testing and medicinal chemistry support. Emery Pharma supports a wide range of companies from startups consisting of a single scientist, to large multinational and national laboratories. Emery Pharma operates as an extension of its clients’ R&D department. Emery Pharma engages top-level Ph.D. and M.S. scientists to streamline and optimize clients’ projects in Pharma, Biotech, Cleantech, Agrochem and many other industries.

1http://www.cdc.gov/media/releases/2016/p0303-superbugs.html

Contacts

Silver Bullet Therapeutics, Inc.
Ronald Trahan, 508-359-4005, x108
rtrahan@ronaldtrahan.com