A cancer pill already approved for human melanoma patients has delivered striking results in dogs with one of the most aggressive oral tumors in veterinary medicine. In a two-year clinical trial at Cornell University, twenty dogs with naturally occurring oral squamous cell carcinoma were treated with the MEK inhibitor trametinib, an oral drug given daily at home by their owners. The results, published in Veterinary Oncology, show that the drug shrank tumors in roughly a third of the cohort and halted their growth in another quarter, with almost no serious side effects. For dogs whose tumors carried a specific mutation in the BRAF gene, the response rate climbed to 71 percent, a figure that rivals outcomes seen in human trials of the same drug.
Oral squamous cell carcinoma, or OSCC, is a formidable enemy in canine medicine. Oral tumors affect an estimated half a percent of dogs over their lifetimes and account for about six percent of the canine cancer burden, with OSCC making up roughly nineteen percent of all oral tumors. The disease is locally invasive, growing through multiple anatomical planes of the jaw and surrounding tissue, causing severe pain, difficulty eating, and in some cases pathological fractures of the bone. Up to twenty percent of affected dogs show signs of metastasis by the time they are diagnosed. Left untreated, it is deadly.
The current standard of care is blunt: wide-margin surgical excision. While surgery is highly effective when non-metastatic tumors are completely removed, with very low recurrence rates, it is also highly invasive and invariably disfiguring. Roughly thirty percent of dogs have difficulty eating after surgery, and larger operations bring longer healing times, greater postoperative pain, and higher risks of complications. Radiation is occasionally used for tumors that cannot be surgically removed or as an adjunct to surgery, but the fundamental treatment paradigm has not changed in decades, even as researchers have made major strides in understanding the molecular machinery driving the disease.
That machinery centers on the RAS signaling pathway. Recent studies have shown that canine OSCC displays highly activated RAS signaling compared with healthy gingival tissue, a finding confirmed by gene set enrichment analysis comparing tumor samples with normal tissue. RAS is a small GTPase that, when activated by extracellular signals binding to receptors on the cell surface, launches a cascade of molecular events that ultimately drive cell growth and survival. The most important arm of this cascade for tumor growth is the RAS-RAF-MEK-ERK pathway, which ends with ERK initiating the gene transcription programs that keep a tumor expanding. The question facing the Cornell team was whether this pathway could be pharmacologically attacked in a way that would benefit dogs whose tumors are driven by a variety of different upstream mutations.
The answer they settled on was trametinib, a small molecule that inhibits MEK1 and MEK2, the kinases sitting in the middle of the pathway. Trametinib binds to the non-phosphorylated form of MEK in an allosteric pocket near the ATP binding site, blocking its catalytic activity and its ability to activate ERK. Crystal structures show the drug does more than simply plug the pocket: it also prevents BRAF from binding to MEK and appears to stabilize MEK’s association with KSR, the kinase suppressor of RAS, further reducing MEK’s affinity for BRAF. Crucially, the team chose trametinib precisely because it works on wildtype, unmutated proteins. Since RAS itself is rarely mutated in canine OSCC and BRAF mutations appear in only about a third of tumors, drugs like sotorasib, which bind only mutant RAS, would have left most patients out in the cold. Trametinib, by contrast, targets the pathway regardless of what triggered its activation.
The drug also came with a reassuring safety pedigree. It is FDA-approved in humans for BRAF-mutant melanoma and non-small cell lung cancer, typically alongside the BRAF inhibitor dabrafenib. A phase I trial in eighteen dogs had already demonstrated an acceptable safety profile over nine weeks of treatment, and the European Medicines Agency reported the drug was well tolerated in beagles over thirteen weeks and fully eliminated within about seven days. Its high oral bioavailability in both species meant it could be given at home, avoiding the stress and expense of repeated hospital visits.
The trial itself was designed with a do-no-harm philosophy. Twenty dogs with histologically confirmed OSCC were enrolled between October 2023 and February 2025, after approval by Cornell’s Institutional Animal Care and Use Committee and with informed consent from owners. Dogs received daily oral trametinib at doses escalating from 0.015 to 0.035 milligrams per kilogram, with examinations every two weeks including caliper tumor measurements, complete blood counts, and serum chemistry panels. Full tumor staging with contrast-enhanced computed tomography was performed at the start, around day 28, and around day 56, and tumor volumes were measured from CT slices by a board-certified veterinary radiologist. Response was categorized using veterinary RECIST criteria, and any dog showing progressive disease was removed immediately and returned to standard care. Because the typical two-week wait before surgery would not be compromised, owners could try the drug without sacrificing the earliest opportunity for curative excision.
The results were remarkable in some patients. One dog achieved a complete response, with no tumor detectable by CT, and five achieved partial responses, giving an overall response rate of thirty percent. Five more dogs had stable disease, meaning fifty-five percent of the cohort derived clinical benefit. Some tumors responded with startling speed: two dogs’ tumors had shrunk to less than one cubic centimeter after just two weeks of treatment, and in five dogs the mean volume reduction at the first post-treatment evaluation was forty-five percent. In two responsive patients, bone window CT scans showed actual bone regrowth at the tumor site, visible at 28 and 56 days after treatment began, a sign of genuine tissue healing rather than mere tumor shrinkage. In some cases the visible portions of tumors became difficult or impossible to identify by external inspection.
Safety data were equally encouraging. No high-grade adverse events were detected in any dog, though about thirty percent of owners reported transient flatulence that resolved on its own. Bloodwork showed mostly grade 1 and grade 2 abnormalities that were typically no worse than pre-treatment values. The only two grade 3 events, elevated alkaline phosphatase in two dogs, were preceded by grade 2 liver enzyme elevations present before treatment began, suggesting preexisting liver pathology unrelated to the drug. No dog was removed from the study or had its dose modified because of side effects, and no neutropenia was observed. Notably, a prior phase I study had flagged hypertension and proteinuria in some dogs at similar doses, but the Cornell team did not observe owner-reported behaviors consistent with those conditions, though blood pressure and urinalysis were not directly monitored.
The most scientifically compelling finding emerged when tumors were stratified by BRAF mutational status. Seven dogs carried tumors harboring the BRAF p.V595E mutation, the canine equivalent of the human V600E mutation, and these responded dramatically better than BRAF wildtype tumors. Among BRAF-mutant cases, one dog had a complete response and four had partial responses, for a seventy-one percent objective response rate and a mean volume reduction of seventy-one percent in responding tumors. Wildtype tumors, by contrast, showed a mean reduction of only seven percent among responders, and total clinical benefit in that group was just eight percent. The difference was statistically significant at p equals 0.01. Because BRAF genotyping requires only simple PCR amplification and Sanger sequencing, the authors suggest it could readily be implemented by diagnostic laboratories to identify dogs most likely to benefit. The team recommends a starting dose of 0.030 milligrams per kilogram daily while cautioning that dose-response analyses were underpowered. Limitations remain, including the absence of an untreated control group, the lack of long-term recurrence and survival data, and the small cohort size, but the study establishes trametinib as a safe, orally available neoadjuvant option that can shrink tumors in about a third of dogs before surgery, and in the majority of those whose tumors are BRAF-mutant, with results visible in as little as two weeks.
Subject of Research: Clinical trial of the MEK inhibitor trametinib for treating oral squamous cell carcinoma in dogs
Article Title: Clinical application of the MEK inhibitor trametinib in dogs with oral squamous cell carcinoma
Article References: Katt, W. P., Balkman, C. E., Byron, M., Carney, P. C., Chrostek, E., Drozd, M. E., Duhamel, G. E., Fiani, N., Hume, K. R., King, A. L., Sylvester, S. R., Todd-Donato, A. B., Winokur, C. E., Wright, A. L., & Peralta, S. (2025). Clinical application of the MEK inhibitor trametinib in dogs with oral squamous cell carcinoma. Veterinary Oncology, 2(1), Article 31. https://doi.org/10.1186/s44356-025-00042-3
Image Credits: AI Generated
DOI: 10.1186/s44356-025-00042-3
Keywords: trametinib, MEK inhibitor, oral squamous cell carcinoma, canine cancer, BRAF mutation, RAS signaling, veterinary oncology, targeted therapy, clinical trial, neoadjuvant treatment, Cornell University, dog health
Cite Scienmag News
Nathaniel Bowman. (September 30, 2026). Cancer Drug Trametinib Shrinks Oral Tumors in Dogs, Trial Shows. Scienmag. https://scienmag.com/cancer-drug-trametinib-shrinks-oral-tumors-in-dogs-trial-shows/
Nathaniel Bowman. "Cancer Drug Trametinib Shrinks Oral Tumors in Dogs, Trial Shows." Scienmag, 30 September 2026, https://scienmag.com/cancer-drug-trametinib-shrinks-oral-tumors-in-dogs-trial-shows/. Accessed 30 September 2026.
Nathaniel Bowman. "Cancer Drug Trametinib Shrinks Oral Tumors in Dogs, Trial Shows." Scienmag. September 30, 2026. https://scienmag.com/cancer-drug-trametinib-shrinks-oral-tumors-in-dogs-trial-shows/

