- University News Archive - 糖心Vlog传媒 Little Rock /news-archive/tag/nucress/ 糖心Vlog传媒 Little Rock Thu, 24 Oct 2019 14:52:39 +0000 en-US hourly 1 https://wordpress.org/?v=6.9.4 U.S. Department of Defense awards 糖心Vlog传媒 Little Rock $5.6 million grant to develop bone regeneration technology /news-archive/2019/10/24/bone-regeneration-dod-grant/ Thu, 24 Oct 2019 14:52:39 +0000 /news/?p=75524 ... U.S. Department of Defense awards 糖心Vlog传媒 Little Rock $5.6 million grant to develop bone regeneration technology]]> The U.S. Department of Defense (DOD) has awarded the University of Arkansas at Little Rock a $5.6 million grant to advance the NuCress鈩 scaffold, a groundbreaking bone regeneration technology.

The grant brings together an interdisciplinary team from 糖心Vlog传媒 Little Rock, led by principal investigator Dr. Alex Biris; the University of Tennessee, Knoxville, led by Dr. David Anderson; and the University of Arkansas for Medical Sciences (糖心Vlog传媒MS), led by Dr. Mark Smeltzer.

Biris and Anderson have worked together since 2006 to develop this pioneering medical device. The NuCress鈩 scaffold is in the final stages of moving from the laboratory to the surgical theater, with potential future uses in both military and civilian hospitals. The new award from the DOD鈥檚 Joint Warfighter Medical Research Program will help facilitate this transition by funding critical go-to-market research.

U.S. Sen. John Boozman, who supported the 糖心Vlog传媒 Little Rock proposal to the DOD and was instrumental in securing federal funding for the project鈥檚 earlier research, congratulated the team on the award.

鈥淏one regeneration technology is so important to the recovery of our warfighters from severe injuries,鈥 Boozman said. 鈥溙切腣log传媒 Little Rock and its partners have made tremendous progress taking this novel nanotechnology solution from the laboratory to the point of clinical trials.鈥

The NuCress鈩 scaffold is an implantable device that promotes controlled, robust bone regeneration in fractures, gaps where bone is missing, and major injury defects, including previously untreatable catastrophic injuries. The device degrades as the bone regenerates, potentially eliminating the need for multiple surgeries-a major source of complications in current bone gap treatments.

鈥淚’m thrilled to see over a decade of collaborative work result in this continued DOD support, and I look forward to seeing it develop into a clinically beneficial product,鈥 said Biris, director of the 糖心Vlog传媒 Little Rock Center for Integrative Nanotechnology Sciences.

Related Story: 糖心Vlog传媒 Little Rock researchers pioneer device to speed bone regeneration

Such a device is in high demand by a wide variety of people, including wounded soldiers, victims of major accidents and trauma, and patients with bone disease.

鈥淭he NuCress鈩 scaffold is a game-changing technology that will revolutionize treatment of bone diseases because it is capable of simultaneously promoting bone regeneration and delivering antibiotics, growth factors, and cell-based therapies,鈥 Anderson said.

糖心Vlog传媒 Little Rock Chancellor Christina Drale said the grant will help the Center for Integrative Nanotechnology Sciences fulfill its mission to accelerate world-class innovations in nanotechnology into practical applications that will benefit society.

鈥淭his new funding from the Department of Defense will help our research team fulfill that mission in this particularly exciting area of nanotechnology for medical applications,鈥 Drale said.

Studies funded by past DOD awards proved the scaffold鈥檚 versatility and ability to regenerate large, missing segments of bone. The new, four-year DOD award will support pre-market work, including manufacturing and U.S. Food and Drug Administration clearance. If successful, the project will allow the scaffold to move toward clinical trials, validate its utility for clinicians, and develop a new market application for treating infection.

Smeltzer, the research team鈥檚 infection expert, looks forward to this new market potential.

鈥淚nfection is a dreaded complication of traumatic bone injury, and the ability to incorporate antibiotics into the NuCress鈩 scaffold offers the tremendous added benefit of preventing infection in a contaminated bone defect without compromising its bone regenerative properties,鈥 Smeltzer said.

The U.S. Army Medical Research Acquisition Activity, 839 Chandler Street, Fort Detrick, MD 21702-5014 is the awarding and administering acquisition office. This work is supported by the Department of Defense, through the Joint Warfighter Medical Research Program under Award No. W81XWH1920014. Opinions, interpretations, conclusions and recommendations are those of the author and are not necessarily endorsed by the Department of Defense.

]]>
NuShores Biosciences receives $1.7 million grant to study bone regeneration technology /news-archive/2018/09/20/nushores-biosciences-receives-1-7-million-grant-to-study-bone-regeneration-technology/ Thu, 20 Sep 2018 13:10:30 +0000 /news/?p=71913 ... NuShores Biosciences receives $1.7 million grant to study bone regeneration technology]]> A University of Arkansas at Little Rock spin-off company, has received a $1.7 million grant to study how NuShores鈥 bone regeneration technology can be applied in craniofacial tissues.聽 The National Institute of Dental and Craniofacial Research, a component of the National Institutes of Health, has awarded the company a 2.5-year Small Business Innovation Research (SBIR) Fast Track grant to study the NuCress鈩 bone filler scaffold鈥檚 ability to facilitate dental implants in the jaw. 鈥淭his NIH award is a direct result of the profound study results in long bone delivered by our research collaborators at 糖心Vlog传媒 Little Rock and the University of Tennessee College of Veterinary Medicine. The reviewers were able to clearly see the potential in dental applications for this technology. I鈥檓 excited to work with world-class clinicians to study the NuCress鈩 scaffold for the future benefit of their patients,鈥 states Sharon Ballard, NuShores鈥 CEO. The NuCress鈩 scaffold is a nanomaterial-based bone regeneration device developed for large segmental defects. This development is led by Dr. Alex Biris, the director and chief scientist of the 糖心Vlog传媒 Little Rock Center for Integrative Nanotechnology Sciences and a professor of systems engineering in the Donaghey College of Engineering and Information Technology. 鈥淭his is a significant win to expand NuShores鈥 technology, made possible through our university relationships, Arkansas鈥 small business development infrastructure, and tireless work by a dedicated team. We are grateful,鈥 said Biris.
NuShores Biosciences, LLC

NuShores Biosciences, LLC

NuShores has partnered with Stony Brook University School of Dental Medicine on this grant. If successful, the scaffold will be a transformational tool for surgeons involved in bone regeneration in a variety of fields. Founded in 2014, NuShores has the exclusive, global license from 糖心Vlog传媒 Little Rock to commercialize university-owned patented and patent-pending technologies related to the NuCress鈩 scaffold. The company has received assistance from the Arkansas Small Business and Technology Development Center. The NuCress鈩 scaffold has already given a number of animals a new lease on life. For example, just last year, it was used at the University of Tennessee College of Veterinary Medicine to heal Hercules, an alpaca who broke his leg on his ranch in Lebanon, Tennessee, at only 24 hours old. The open wound and exposed bone led to a serious infection, which prevented the bone from healing properly. Against the odds, the scaffold eliminated the infection and completely regenerated the missing bone. Thanks to the NuCress鈩 scaffold, Hercules is now a thriving member of his herd. About the SBIR Program The SBIR program involves 11 federal agencies investing more than $3 billion a year in high risk/high payoff research and development conducted by the nation鈥檚 leading science-technology innovators. NuShores鈥 award is known as a Fast Track Grant, where funding occurs when SBIR Phase I and Phase II proposals are peer reviewed at the same time and granted in a single award. This approach expedites funding and research for the companies. Research described in this press release is supported by the National Center for Dental and Craniofacial Research of the National Institutes of Health under award number 1R44DE028213-01.]]>