Stay updated with the most recent editions of ODT Magazine, featuring comprehensive coverage of the latest innovations and developments.
Access the full digital version of ODT Magazine, complete with interactive features and enhanced content for a seamless reading experience.
Join the ODT community! Subscribe to receive the latest industry news and insights delivered directly to your mailbox.
Discover how 3D printing and additive manufacturing are revolutionizing orthopedic device design and production processes.
Learn about contract manufacturing solutions in the orthopedic sector, emphasizing quality, compliance, and operational excellence.
Stay informed on the latest research and development trends in orthopedic device design, driving innovation and patient care improvements.
Explore the latest advancements in surgical instruments and technologies that enhance precision and outcomes in orthopedic procedures.
Discover cutting-edge machining and laser processing techniques that improve the quality and performance of orthopedic devices.
Learn about the innovative materials shaping orthopedic devices, focusing on performance, biocompatibility, and regulatory compliance.
Stay updated on advanced molding techniques for producing high-quality orthopedic components that meet industry standards.
Explore best practices for packaging and sterilization methods that ensure the safety and efficacy of orthopedic devices.
Discover the role of software solutions in enhancing orthopedic device design, functionality, patient management, and regulatory compliance.
Learn about essential testing methods and standards that ensure the safety, reliability, and effectiveness of orthopedic devices.
Stay ahead with real-time updates on significant news impacting the orthopedic device sector.
Access unique content and insights not available in the print edition of ODT Magazine, offering deeper dives into important topics.
Explore feature articles that provide in-depth analysis on specific topics within orthopedic design and technology.
Gain insights from industry experts through regular columns addressing critical challenges and innovations in orthopedics.
Read the editorial insights on current trends and highlights from the latest issue of ODT Magazine.
Discover leading companies in orthopedic design and technology, showcasing their innovations and contributions to the field.
Explore detailed profiles of companies in the orthopedic device manufacturing sector, highlighting their capabilities and offerings.
Learn about the expertise and resources of leading companies in the orthopedic device manufacturing sector.
Watch informative videos featuring industry leaders discussing trends, technologies, and innovations in orthopedic design.
Enjoy short, engaging videos that provide quick insights and updates on key topics within orthopedics.
Tune in to discussions with industry experts sharing their insights on trends, challenges, and innovations in orthopedic technology.
Participate in informative webinars led by industry experts covering various relevant topics in orthopedic design and manufacturing.
Stay informed on the latest press releases and announcements from leading companies in the orthopedic device manufacturing sector.
Access comprehensive eBooks that delve into various topics in orthopedic device manufacturing and innovation.
Highlighting the pioneers and innovators driving advancements in orthopedic technology and patient care.
Explore sponsored articles and insights from leading companies in the orthopedic industry.
Read in-depth whitepapers that examine key issues, trends, and research findings in orthopedic design and technology.
Discover major industry events, trade shows, and conferences focused on orthopedic technology and innovations.
Get real-time updates and insights from major industry shows and exhibitions happening around the world.
Participate in the ODT Forum, addressing orthopedic design and manufacturing technology trends, innovations, and industry challenges.
Attend the MPO Summit for insights and strategies from industry leaders shaping the future of medical device technology.
Join discussions and networking opportunities at the MPO Medtech Forum, focusing on the latest trends and challenges in the industry.
Explore advertising opportunities with ODT to connect with a targeted audience of orthopedic professionals.
Review our editorial guidelines for submissions and contributions to ODT.
Read about our commitment to protecting your privacy and personal information.
Familiarize yourself with the terms and conditions governing the use of odtmag.com.
What are you searching for?
The team behind the REHEAL Glove has successfully developed a manufacturing process for the technology.
April 15, 2019
By: University of Texas at Arlington
The revolutionary bioengineered healing glove created by researchers at the University of Texas at Arlington Research Institute (UTARI) and the University of Washington has completed another key step on the road toward commercialization. Empowered by a $227,000 award from the Medical Technology Enterprise Consortium (MTEC), the REHEAL Glove team at UTARI and REHEAL LLC has successfully developed a manufacturing process for the technology. The MTEC agreement, awarded in October 2017, funded the development of this low volume manufacturing process, which has created 100 flexible polymeric gloves for early stage clinical trials. The success of the project earned UTA the MTEC Prototype of the Year Acceleration Award (under $1 million) at the consortium’s fourth annual membership meeting in March. The award is given to the project that effectively advances a novel prototype technology to its next major milestone in a 12-month period. The REHEAL Glove is a flexible glove wound dressing for treatment after hand trauma that provides commonly used negative pressure wound therapy. It also allows early motion therapy during healing to reduce scarring that prevents irreversible joint stiffness. Additionally, the glove provides a means for delivering therapeutics and controlling the wound environment for better and faster healing. The REHEAL Glove can be easily applied and removed, and does not adhere to the wound, which minimizes pain during dressing removal. The material of the glove is made of transparent silicone, enabling for continuous monitoring of the wound. Muthu Wijesundara, head of the Biomedical Technologies Division at UTARI and leader of the project, said the development of the manufacturing process established consistency throughout production and poises the glove for transition into clinical trials. “The manufacturing process gives us more reliability and uniformity in the REHEAL Glove production,” Wijesundara said. “Having this process reduces the risk of variants among the gloves interfering with any future clinical trial work.” Mickey McCabe, executive director of UTARI, said the award builds UTA’s reputation among the federal research community as an effective, efficient institute for advancing research ideas to practical implementation while improving health and the human condition. “The MTEC award is a recognition that UTA and UTARI have the expertise and resources necessary to take on time-sensitive, goal-oriented projects,” McCabe said. “This award also builds on a long history of successful delivery of research results and intellectual property to companies and all branches of our nation’s military.” MTEC is a biomedical technology consortium collaborating with multiple government agencies under a 10-year renewable Other Transaction Agreement with the U.S. Army Medical Research and Materiel Command. The consortium focuses on the development of medical solutions that protect and heal those that serve. “Complex hand wounds can be debilitating, and current therapies often lead to excessive scar formation and fail to preserve range of motion,” said Lauren Palestrini, MTEC director of research programs. “I believe that the REHEAL Glove addresses many of these limitations and hope its utilization will improve treatment of these injuries. The team, led by Dr. Wijesundara, has done a great job developing a process for low volume production. “The completion of this work is critical in helping the team move forward with testing this hand wound care-dressing system in early feasibility studies and subsequent clinical trials. We are proud to support the work of the team at UTARI as they advance this game-changing technology.” The project was borne from a collaboration between Wijesundara and Christopher Allan, associate professor of orthopedics and sports medicine at the University of Washington. Allan acts as the clinical partner, while Wijesundara and UTARI provide the engineering support. “The forward momentum of the REHEAL Glove project is an outstanding demonstration of UTARI’s mission to link laboratory discoveries to commercialization that ultimately benefits society,” UTA Vice President for Research Duane Dimos said. “I am proud to know this level of cutting-edge research and development is taking place at our University. Thank you to Dr. Wijesundara and his team for their commitment to a project that will serve to improve the treatment and prognosis of serious hand injuries.”
Enter your account email.
A verification code was sent to your email, Enter the 6-digit code sent to your mail.
Didn't get the code? Check your spam folder or resend code
Set a new password for signing in and accessing your data.
Your Password has been Updated !