Coated tissue scaffolds help the body grow new bone to repair injuries or congenital defects.
MIT chemical engineers have devised a new implantable tissue scaffold coated with bone growth factors that are released slowly over a few weeks. When applied to bone injuries or defects, this coated scaffold induces the body to rapidly form new bone that looks and behaves just like the original tissue.
This type of coated scaffold could offer a dramatic improvement over the current standard for treating bone injuries, which involves transplanting bone from another part of the patient’s body — a painful process that does not always supply enough bone. Patients with severe bone injuries, such as soldiers wounded in battle; people who suffer from congenital bone defects, such as craniomaxillofacial disorders; and patients in need of bone augmentation prior to insertion of dental implants could benefit from the new tissue scaffold, the researchers say.
“It’s been a truly challenging medical problem, and we have tried to provide one way to address that problem,” says Nisarg Shah, a recent PhD recipient and lead author of the paper, which appears in the Proceedings of the National Academy of Sciences this week.
Paula Hammond, the David H. Koch Professor in Engineering and a member of MIT’s Koch Institute for Integrative Cancer Research and Department of Chemical Engineering, is the paper’s senior author. Other authors are postdocs M. Nasim Hyder and Mohiuddin Quadir, graduate student Noémie-Manuelle Dorval Courchesne, Howard Seeherman of Restituo, Myron Nevins of the Harvard School of Dental Medicine, and Myron Spector of Brigham and Women’s Hospital.
Stimulating bone growth
Two of the most important bone growth factors are platelet-derived growth factor (PDGF) and bone morphogenetic protein 2 (BMP-2). As part of the natural wound-healing cascade, PDGF is one of the first factors released immediately following a bone injury, such as a fracture. After PDGF appears, other factors, including BMP-2, help to create the right environment for bone regeneration by recruiting cells that can produce bone and forming a supportive structure, including blood vessels.
Efforts to treat bone injury with these growth factors have been hindered by the inability to effectively deliver them in a controlled manner. When very large quantities of growth factors are delivered too quickly, they are rapidly cleared from the treatment site — so they have reduced impact on tissue repair, and can also induce unwanted side effects.
“You want the growth factor to be released very slowly and with nanogram or microgram quantities, not milligram quantities,” Hammond says. “You want to recruit these native adult stem cells we have in our bone marrow to go to the site of injury and then generate bone around the scaffold, and you want to generate a vascular system to go with it.”
This process takes time, so ideally the growth factors would be released slowly over several days or weeks. To achieve this, the MIT team created a very thin, porous scaffold sheet coated with layers of PDGF and BMP. Using a technique called layer-by-layer assembly, they first coated the sheet with about 40 layers of BMP-2; on top of that are another 40 layers of PDGF. This allowed PDGF to be released more quickly, along with a more sustained BMP-2 release, mimicking aspects of natural healing.
“This is a major advantage for tissue engineering for bones because the release of the signaling proteins has to be slow and it has to be scheduled,” says Nicholas Kotov, a professor of chemical engineering at the University of Michigan who was not part of the research team.
The scaffold sheet is about 0.1 millimeter thick; once the growth-factor coatings are applied, scaffolds can be cut from the sheet on demand, and in the appropriate size for implantation into a bone injury or defect.
The Latest on: Bone repair
[google_news title=”” keyword=”Bone repair” num_posts=”10″ blurb_length=”0″ show_thumb=”left”]
via Google News
The Latest on: Bone repair
- Explained: How extreme diets affect your bone healthon May 12, 2024 at 3:50 am
Bone density is important for many reasons, primarily because it acts as a reservoir for many of the important minerals our bones need to function well. Diet is one component that has a significant ef ...
- Bioengineering breakthrough could improve bone regeneration treatmentson May 9, 2024 at 10:40 pm
A bioengineering breakthrough which helps repair damaged bones without causing the negative side effects of other treatments could lead to better results for patients.
- Two Injured in T-Bone Crash on Bissonnet Street [Houston, TX]on May 9, 2024 at 12:38 am
Police Officer Transported in Houston Vehicle Crash Houston, TX (May 8, 2024) – Two people have been injured following a t-bone crash on Bissonnet Street Tuesday night. It was about 10 p.m. when an ...
- First cases with EnFix TAC demineralized bone fiber implants completedon May 8, 2024 at 9:21 am
Tetrous' EnFix TAC demineralized bone fiber implants were used in their first cases, the company said May 8. The new implants are the latest in the EnFix implant line for rotator cuff repair, ...
- TETROUS ANNOUNCES FIRST SURGICAL PROCEDURES USING ENFIX TAC™ DEMINERALIZED BONE FIBER IMPLANTS TO ENHANCE ENTHESIS HEALING IN ROTATOR CUFF REPAIRon May 8, 2024 at 12:00 am
The EnFix technology utilizes proprietary demineralized cortical bone fibers to yield an osteoinductive and ... to address the unmet need for technology that can improve on the weak repair at the ...
- Voom™ Medical Devices’ Bunionplasty® 360 Bunion Repair™ Solution Offers Modern Alternative to Traditional 3D Approacheson May 7, 2024 at 1:10 am
Voom™ Medical Devices, Inc. ("Voom"), a human-forward medical device company leading the transformation of surgical bunion correction, has pioneered a significant advancement in the standard of care ...
- Bone and Spine Newson May 5, 2024 at 5:00 pm
Vitamin D Supplements Do Not Prevent Bone Fractures in Children Dec. 1 ... wherein the protein Mitf orchestrates nerve repair after both trauma-induced and chronic nerve ...
- Extreme diet can take a toll on your bone density. Hollywood actors are admitting iton May 3, 2024 at 7:06 pm
In a recent Instagram post, the actor Jameela Jamil revealed she has poor bone density, despite only being in her 30s ...
- Saltz Mongeluzzi Files Product Liability Suit Alleging Tuberculosis Contracted From FiberCel Bone Graft Implant, Expects Dozens Moreon May 1, 2024 at 1:36 pm
This suit was surfaced by Law.com Radar, ALM's source for immediate alerting on just-filed cases in federal and state courts. Law.com Radar now offers state court coverage nationwide. Sign up today ...
- How extreme dieting can affect bone healthon May 1, 2024 at 5:01 am
This is a key mineral for us, as it keeps our bones and teeth strong and helps repair and rebuild any injured bones. Dexa scans – the type of scan Jamil referred to in her post – can measure ...
via Bing News