How KeraVet Gel Works
Backed by decades of research, KeraVet Gel harnesses the power of keratin to support healing through every stage of wound and incision repair.

The Science That Powers KeraVet Gel
KeraVet Gel uses clinically backed keratin science to create a healthier, more controlled wound healing environment. As the primary active ingredient, keratin helps regulate inflammation by promoting the transition of macrophages from pro-inflammatory M1 to reparative M2 states, reducing chronic inflammation and supporting faster tissue repair. Keratin also suppresses key pro-inflammatory cytokines like IL-1, IL-6, and TNF-alpha, while increasing anti-inflammatory cytokines such as IL-10, helping balance the immune response and protect against excessive tissue damage.


In addition, keratin mimics the natural extracellular matrix to create a scaffold for enhanced cell attachment, proliferation, and migration—accelerating wound closure.
KeraVet Gel also includes a safe, effective, clinically proven bitterant that significantly reduces licking behavior, minimizing trauma, contamination, and licking-induced inflammation. Together, these mechanisms allow KeraVet Gel to reduce inflammation, support immune regulation, and support healing by creating a stable, optimized environment for wound and incision resolution.
Why Keratin?
KeraVet Gel is built on proprietary keratin technology designed to work with the body’s natural healing process. Learn what keratin is, how it works, and why it matters.
Hear KeraVet CEO Dr. Luke Burnett
explain how KeraVet Gel works.
KeraVet Gel is backed by clinical research
Less wound edema
Less chronic inflammation
Up to 87% reduction in wound licking
Objective
To show the novel wound treatment KeraVet Gel is superior to standard of care for preventing licking behavior and improving wound outcomes in a randomized controlled clinical trial.
Animals
Thirty-four (34) healthy dogs and 12 healthy cats underwent ovariohysterectomy or orchiectomy procedures, and 6 healthy dogs received a repeat tape-strip insult to both forelimbs. All procedures were non-terminal.
Methods
This was a prospective, randomized controlled study that consisted of three cohorts of animals. In the first cohort (dog healing efficacy study), 16 male and 18 female mongrel beagles (34 total) received an ovariohysterectomy or orchiectomy where the incision was 5 cm ± 1 cm and was closed with 6 ± 1 interrupted skin sutures. Animals were randomized to receive either KeraVet Gel or Triple Antibiotic Ointment, which was applied twice a day for 7 days. Animals were then followed without treatment until day 14 post-surgery, at which point a 6 mm biopsy punch was collected across the incision site for histological assessment. In the second cohort (dog behavioral study), 6 mongrel beagle dogs had both forelimbs shaved, then received tape-strip abrasions on both limbs. Limb abrasion sites were randomized to receive either KeraVet Gel or Triple Antibiotic Ointment once a day. After treatment, each dog was observed for 5 min, and the time / location of licking was collected. Licking behavior was assessed on day 0, 1, and 2; the forelimbs were re-shaved and licking was assessed again on day 14, 15, and 16. In the third cohort (cat behavior and efficacy study), 12 female cats received ovariohysterectomy where the incision was 2 cm ± 1 cm and was closed with 3 ± 1 interrupted skin sutures. The methods for the cat study were the same as in the dog efficacy study, with the major exception being that licking behavior was assessed after each treatment for the first 7 days. Healing efficacy in both dogs and cats was assessed using clinical observations and histology using H&E, Masson’s trichrome, Picro Sirius Red, and IHC stains for CD3e (T-cell) and CD68 (M1 macrophage).
Results
The results of this study show that in dogs, wounds treated with KeraVet Gel exhibited significantly less edema and chronic inflammation than wounds treated with Triple Antibiotic Ointment, and in cats KeraVet Gel exhibited significantly less edema than wounds treated with Triple Antibiotic Ointment (chronic inflammation reduction was close to significant at p=0.07). In Figure 1, representative images show the typical wound healing progression in both treatment groups from the cat ovariohysterectomy study, and in Figure 2 images from the dog ovariohysterectomy (2A) and orchiectomy (2B) studies are shown. Note the improved wound healing outcomes in the KeraVet Gel treated animals compared to control. Licking behavior was assessed in both dogs and cats for 5 min post-treatment and is shown in Figure 3. Data shows that dogs licked Triple Antibiotic Ointment an average of 5.7 s, versus KeraVet Gel at 0.8 s (a decrease of 85%) and cats licked Triple Antibiotic Ointment an average of 17.5 s, versus KeraVet Gel at 2.3 s (a decrease of 87%). Additionally, both treatments showed equivalent post-surgery infections (0% in both).
Conclusion
This study shows the significant clinical benefit KeraVet Gel provides to reduce licking behavior and to positively support improved healing outcomes.
KERAVET GEL TOP LINE CLINICAL FINDINGS
- Significantly less wound edema
- Significantly less chronic inflammation
- Up to 87% reduction in wound licking
Objective
To show the novel wound treatment KeraVet Gel is superior to standard of care for preventing licking behavior and improving wound outcomes in a randomized controlled clinical trial.
Animals
Thirty-four (34) healthy dogs and 12 healthy cats underwent ovariohysterectomy or orchiectomy procedures, and 6 healthy dogs received a repeat tape-strip insult to both forelimbs. All procedures were non-terminal.
Methods
This was a prospective, randomized controlled study that consisted of three cohorts of animals. In the first cohort (dog healing efficacy study), 16 male and 18 female mongrel beagles (34 total) received an ovariohysterectomy or orchiectomy where the incision was 5 cm ± 1 cm and was closed with 6 ± 1 interrupted skin sutures. Animals were randomized to receive either KeraVet Gel or Triple Antibiotic Ointment, which was applied twice a day for 7 days. Animals were then followed without treatment until day 14 post-surgery, at which point a 6 mm biopsy punch was collected across the incision site for histological assessment. In the second cohort (dog behavioral study), 6 mongrel beagle dogs had both forelimbs shaved, then received tape-strip abrasions on both limbs. Limb abrasion sites were randomized to receive either KeraVet Gel or Triple Antibiotic Ointment once a day. After treatment, each dog was observed for 5 min, and the time / location of licking was collected. Licking behavior was assessed on day 0, 1, and 2; the forelimbs were re-shaved and licking was assessed again on day 14, 15, and 16. In the third cohort (cat behavior and efficacy study), 12 female cats received ovariohysterectomy where the incision was 2 cm ± 1 cm and was closed with 3 ± 1 interrupted skin sutures. The methods for the cat study were the same as in the dog efficacy study, with the major exception being that licking behavior was assessed after each treatment for the first 7 days. Healing efficacy in both dogs and cats was assessed using clinical observations and histology using H&E, Masson’s trichrome, Picro Sirius Red, and IHC stains for CD3e (T-cell) and CD68 (M1 macrophage).
Results
The results of this study show that in dogs, wounds treated with KeraVet Gel exhibited significantly less edema and chronic inflammation than wounds treated with Triple Antibiotic Ointment, and in cats KeraVet Gel exhibited significantly less edema than wounds treated with Triple Antibiotic Ointment (chronic inflammation reduction was close to significant at p=0.07). In Figure 1, representative images show the typical wound healing progression in both treatment groups from the cat ovariohysterectomy study, and in Figure 2 images from the dog ovariohysterectomy (2A) and orchiectomy (2B) studies are shown. Note the improved wound healing outcomes in the KeraVet Gel treated animals compared to control. Licking behavior was assessed in both dogs and cats for 5 min post-treatment and is shown in Figure 3. Data shows that dogs licked Triple Antibiotic Ointment an average of 5.7 s, versus KeraVet Gel at 0.8 s (a decrease of 85%) and cats licked Triple Antibiotic Ointment an average of 17.5 s, versus KeraVet Gel at 2.3 s (a decrease of 87%). Additionally, both treatments showed equivalent post-surgery infections (0% in both).
Conclusion
This study shows the significant clinical benefit KeraVet Gel provides to reduce licking behavior and to positively support improved healing outcomes.
Cat ovariohysterectomy incisions
Shown are representative images of ovariohysterectomy incisions in cats at day 0, 7, and 14. Wounds were treated with Triple Antibiotic Ointment (top) and KeraVet Gel (bottom). Images show improved wound healing progression in the KeraVet Gel group versus standard of care at day 14.

Dog ovariohysterectomy incisions
Shown are representative images of ovariohysterectomy incisions in dogs at day 0, 7, and 14. Wounds were treated with Triple Antibiotic Ointment (top) and KeraVet Gel (bottom) for 7 days with sutures removed at day 14. Images show improved wound healing progression in the KeraVet Gel group versus standard of care at day 14 in ovariohysterectomy.

Dog orchiectomy incisions
Shown are representative images of orchiectomy incisions in dogs at day 0, 7, and 14. Wounds were treated with Triple Antibiotic Ointment (top) and KeraVet Gel (bottom) for 7 days with sutures removed at day 14. Images show improved wound healing progression in the KeraVet Gel group versus standard of care at day 14 in orchiectomy.

Lick duration in dogs and cats
Shown is the mean lick time (in seconds) for each wound treated with Triple Antibiotic Ointment (gray) or KeraVet Gel (green). Both dogs and cats were observed for 5 minutes post-treatment. Data shows a significant reduction in lick behavior of 85% in dogs and 87% in cats.

Clinical Case Spotlight

- Chronic Allergy with Delayed Healing Risk
- Read More

- Distal Tail Amputation in a Shelter Cat
- Read More

- 4-year Chronic Acral Lick Granuloma
- Read More

- Management of Tail Self-Trauma in Canine Patient
- Read More

- Dehisced Incision From Mass Removal
- Read More
- Stalled Wound
- Read More

- Deep Bite Wound From Feral Animal in Redbone Coonhound Patient
- Read More

- Severe Traumatic Bite Wound from Coyote in Canine Patient
- Read More

- Dehisced TPLO Incision
- Read More

- Bite Wounds in a Dog with Ehlers-Danlos Syndrome
- Read More

- Severe Erythema and Pruritus
- Read More

- Lick Granuloma Following IV Catheter Placement
- Read More

- Post-Prep Dermatitis in Canine Neuter
- Read More

- Post-Surgical Lick Management Without E-collar
- Read More

- Non-healing Pressure Wound in a Partially Paralyzed Cat
- Read More