Level 1 — Absolute Beginner
Enamel is the hard, white outer layer of a tooth. Once enamel is damaged, the human body cannot grow it back by itself.
Scientists at the University of Nottingham made a new gel. This gel can help rebuild damaged enamel on teeth.
The gel does not use fluoride, which is in most toothpaste. Instead, it copies how the body makes enamel when a baby's teeth first grow.
The scientists started a new company called Mintech-Bio. They hope to sell a product that uses this gel as soon as next year.
- enamel
- the hard, white outer layer that covers a tooth
- damaged
- harmed or hurt in some way
- gel
- a thick, soft, jelly-like substance
- fluoride
- a mineral often added to toothpaste and water to protect teeth
- rebuild
- to build something again after it was broken or worn away
- infancy
- the early period of a baby's life
- start-up
- a new, small company
- product
- something made to be sold to customers
Level 2 — Elementary
Researchers at the University of Nottingham have created a fluoride-free gel that can help rebuild damaged tooth enamel, something the human body has never been able to regrow naturally once it is lost.
The team, working across the School of Pharmacy and the Department of Chemical and Environmental Engineering, designed the gel to imitate the biological process that forms enamel while a baby's teeth are first developing. Inspired by proteins that guide that early growth, the gel fills tiny cracks and pulls calcium and phosphate from saliva to build a new mineral layer.
The findings, published in the journal Nature Communications, suggest the gel can repair enamel that has been weakened by mineral loss or worn away by acid over time. Unlike some earlier lab treatments, the gel can be applied quickly in an office visit, much like a standard fluoride treatment already used by dentists.
The research team has launched a start-up company called Mintech-Bio to bring the technology to market, with hopes of offering a first commercial product as early as next year.
- pharmacy
- the science and practice of preparing and dispensing medicines
- biological process
- a natural process that occurs within living things
- protein
- a molecule that performs many functions in living cells and tissues
- calcium
- a mineral important for strong bones and teeth
- phosphate
- a mineral compound that combines with calcium to strengthen teeth and bones
- saliva
- the watery liquid produced in the mouth
- mineral layer
- a layer made of hard, mineral-based material
- commercial product
- an item made to be sold to the public
Level 3 — Intermediate
A team of researchers at the University of Nottingham, spanning the School of Pharmacy and the Department of Chemical and Environmental Engineering, has developed a fluoride-free gel capable of rebuilding damaged tooth enamel, addressing a longstanding limitation of human biology: unlike bone, enamel cannot regenerate once lost to decay, erosion, or wear.
The gel's design draws directly on developmental biology, mimicking the amelogenin and related proteins that orchestrate enamel formation while a child's teeth are still developing beneath the gums. Applied to a damaged tooth, the material fills microscopic surface cracks and acts as a scaffold that draws calcium and phosphate ions already present in saliva, guiding them to crystallize into a mineral structure closely resembling natural enamel.
The research, published in Nature Communications, reported that the resulting repair layer closely matched the mechanical properties of healthy enamel in laboratory testing, a benchmark that has eluded many earlier remineralization approaches, which tended to produce a softer, less durable surface than the tissue they replaced.
Beyond the laboratory result, the team has moved quickly toward commercialization, founding a start-up, Mintech-Bio, to translate the chemistry into a chairside product that dentists could apply in a single visit, comparable in convenience to existing fluoride varnish treatments, with a first product targeted for as early as next year.
- regenerate
- to grow or form again naturally
- developmental biology
- the study of how living things grow and develop from early stages
- amelogenin
- a protein that plays a key role in forming tooth enamel
- scaffold
- a structure that provides support for growth or repair
- crystallize
- to form into a solid, structured, crystal-like material
- remineralization
- the process of restoring lost minerals to a tooth surface
- mechanical properties
- the physical characteristics of a material, such as hardness or strength
- chairside product
- a treatment that can be applied to a patient during a regular office visit
Level 4 — Advanced
For all the therapeutic progress made against dental disease over the past century, one biological constraint has remained stubbornly intact: enamel, unlike bone or skin, possesses no resident cell population capable of regenerating it once lost to caries, acid erosion, or mechanical wear, leaving restorative dentistry to substitute rather than repair. A team at the University of Nottingham, spanning pharmacy and chemical engineering, has now published in Nature Communications a fluoride-free gel that appears to close that gap by directly recapitulating the developmental chemistry enamel-forming cells once used.
The approach centers on mimicking amelogenin and related matrix proteins that template mineral growth during odontogenesis, before a tooth ever erupts through the gum. Rather than depositing pre-formed mineral onto a damaged surface, as fluoride varnishes and many remineralizing pastes effectively do, the gel establishes a molecular scaffold that recruits calcium and phosphate ions already present in saliva and directs their crystallization into a hydroxyapatite structure that mirrors native enamel's hierarchical architecture.
That architectural fidelity is what distinguishes this result from prior remineralization work: the reported repair layer matched the mechanical hardness and wear resistance of natural enamel under laboratory testing, a threshold that eluded earlier biomimetic attempts, which typically yielded a softer, more brittle surface layer prone to renewed breakdown under normal chewing forces.
The commercial path the team has chosen, a start-up called Mintech-Bio pursuing a chairside application comparable in procedure time to a standard fluoride varnish, reflects a calculated bet that clinical translation, not further laboratory refinement, is now the binding constraint, with a first product targeted for as early as next year, well ahead of the multi-year regulatory timelines that have historically delayed comparable biomaterials from reaching general dental practice.
- therapeutic
- relating to the treatment of disease or medical conditions
- caries
- tooth decay caused by acid-producing bacteria
- restorative dentistry
- the branch of dentistry focused on repairing or replacing damaged teeth
- recapitulating
- repeating or reproducing a process that happened previously
- odontogenesis
- the biological process by which teeth form and develop
- hydroxyapatite
- the main mineral component of natural tooth enamel and bone
- biomimetic
- designed to imitate a natural biological process or structure
- clinical translation
- the process of turning a laboratory discovery into an actual patient treatment