Our Tests
What is K9-TMB/MSI™?
K9-TMB/MSI™ is an advanced genomic test designed to provide detailed molecular profiling of canine tumours. By analysing 499 cancer-related genes, the test identifies important genetic changes within a tumour that can helps to make more informed treatment decisions and support a personalised approach to cancer care.
What does the test analyse?
K9-TMB/MSI™ detects clinically relevant genetic alterations across 499 cancer-related genes, providing valuable information about tumour biology, prognosis and potential therapeutic targets.
The test also evaluates two key immunotherapy biomarkers alongside genomic profiling:
– Tumour Mutational Burden (TMB) measures the number of genetic mutations within a tumour. Certain tumours with a high mutational burden may be more likely to respond to immunotherapy.
– Microsatellite Instability (MSI) assesses defects in the tumour’s DNA repair system. Identifying MSI can provide additional information about tumour behaviour and may influence treatment options in selected cases.
K9-TMB/MSI™ is the only panel available on the market allowing for both TMB and MSI characterization.
Sample requirements
K9-TMB/MSI™ can be performed using:
We require 5x5um shavings from tumour blocks with at least 30% of tumour tissue.
Please note that the process used to remove minerals from bone tissue (decalcification) can damage tumour DNA, which may make genetic testing unsuccessful. If you are planning genetic testing in the future, please ask your pathologist to save a sample of soft tumour tissue before decalcification is performed. This is especially important for cancers such as osteosarcoma, oral melanoma, and oral squamous cell carcinoma.
We require at least 3 cellular slides, with at least 30% of tumour cell content.
Your veterinarian will determine which sample type is most appropriate based on your dog’s diagnosis and the available tissue.
We provide all necessary packaging, shipping documentation and instructions to ensure samples are securely transported to the laboratory. Results are typically available within 3 weeks of the veterinary collecting the sample.
Why is genomic profiling important?
Every cancer is genetically unique. Genomic profiling helps to understand the individual characteristics of a tumour rather than relying solely on its location or type. This information can support more personalised treatment planning, identify potential targeted therapies or immunotherapy options, and provide additional insight into prognosis.
Supporting personalised cancer care
Precision medicine is becoming an increasingly important part of veterinary oncology. K9-TMB/MSI™ provides comprehensive genetic information that helps to better understand each patient’s cancer and tailor treatment decisions to the tumour’s unique molecular profile.
By combining extensive genomic analysis with assessment of TMB and MSI, K9-TMB/MSI™ represents an important step towards more personalised cancer management for dogs.
Genes included in the K9-TMB/MSI™ genomic profiling assay.
| ABCB1 | BTK | CUX1 | ETV4 | GATA4 | JAK1 | MEF2B | PAX5 | PTPRJ | SLC45A3 |
| ABCC2 | BUB1B | CXCR4 | ETV5 | GATA6 | JAK1 | MEN1 | PBRM1 | PTPRO | SLCO1B1 |
| ABL1 | CACNA1D | CYLD | EWSR1 | GLI1 | JAK2 | MET | PC | QKI | SLIT2 |
| ACTB | CALR | CYP19A1 | EXOC2 | GLUD2 | JAK3 | MET | PCGF2 | RAB3GAP2 | SOCS1 |
| ACVR1B | CARD11 | CYP2A6 | EXT2 | GNA11 | JARID2 | MGMT | PDGFB | RAC1 | SOS1 |
| ADGRA2 | CBFB | CYP2B6 | EZH2 | GNA13 | JUN | MITF | PDGFRA | RACQL4 | SOX10 |
| AIP | CBL | CYP2C19 | FAM133B | GNAQ | KAT6A | MITF | PDGFRB | RAD21 | SOX2 |
| AKT1 | CCN6 | CYP2C9 | FAM90A1 | GNAS | KDM2B | MLH1 | PDK1 | RAD50 | SOX9 |
| AKT2 | CCND1 | CYP2D6 | FANCA | GNB1 | KDM5A | MLLT10 | PDKF6 | RAD51 | SRC |
| AKT3 | CCND2 | CYP3A4 | FANCB | GRIN2A | KDM5C | MPL | PHOX2B | RAF1 | STAT3 |
| ALDH2 | CCND3 | CYP3A5 | FANCC | GRM3 | KDM6A | MRE11 | PIK3C2B | RANBP2 | STAT4 |
| ALK | CCNE1 | DAXX | FANCD2 | GSK3B | KDR | MSH2 | PIK3C2G | RARA | STAT5A |
| AMER1 | CCT6E | DDR1 | FANCE | GSTM1 | KDR | MSH3 | PIK3C3 | RARB | STK11 |
| ANKRD52 | CDA | DDR2 | FANCF | GSTP1 | KEAP1 | MSH6 | PIK3CA | RARG | STK11 |
| AP3B1 | CDC73 | DDX3X | FANCG | GSTT1 | KEL | MST1R | PIK3CA | RASA1 | STX11 |
| APC | CDH1 | DHFR | FANCL | H3-3A | KIT | MTHFR | PIK3CB | RASGEF1A | SYK |
| AR | CDK10 | DICER1 | FAS | HBA1 | KIT | MTOR | PIK3CD | RB1 | TAF1 |
| ARAF | CDK12 | DLG2 | FAT1 | HBA2 | KLHL6 | MUC16 | PIK3CG | RBM10 | TANGO2 |
| ARFRP1 | CDK4 | DMD | FAT4 | HBB | KMT2A | MUTYH | PIK3R1 | RELN | TANK |
| ARID1A | CDK6 | DNM2 | FBXO11 | HDAC1 | KMT2B | MYC | PIK3R1 | RET | TBC1D26 |
| ARID2 | CDK8 | DNMT3A | FBXO32 | HDAC2 | KMT2C | MYCL | PIK3R2 | RHOA | TEK |
| ARID58 | CDKN1A | DOT1L | FBXW7 | HDAC4 | KMT2D | MYCN | PLCG1 | RICTOR | TERT2 |
| ARPC1A | CDKN1B | DPYD | FBXW7 | HDAC7 | KMT2D | MYD88 | PLCG2 | RNF43 | TET2 |
| ATM | CDKN1C | DSP | FCGR2B | HGF | KRAS | NBN | PLK1 | ROS1 | TGFBR2 |
| ATR | CDKN2B | DUSP2 | FGF10 | HNF1A | KRAS | NCOR1 | PMS1 | RPS6KB1 | TMPRSS2 |
| ATRX | CDKN2C | EBF1 | FGF14 | HNF1B | LAMA2 | NCSTN | POLD1 | RPTOR | TP53 |
| AURKA | CDKNA2A | ECT2L | FGF19 | HRAS | LCK | NEK2 | POLE | RRM1 | TRAF3 |
| AURKB | CEBPA | EED | FGF23 | HSD3B1 | LEF1 | NELL2 | POT1 | RUNX1 | TRAF5 |
| AXIN1 | CEP57 | EGFR | FGF3 | HSP90AA1 | LMO1 | NF1 | PP2R1A | RUNX1T1 | TSC1 |
| AXL | CHD2 | EGR1 | FGF6 | ID3 | LRP1B | NF1 | PPM1L | RUNX2 | TSC2 |
| B2M | CHD4 | EP300 | FGFR1 | IDH1 | LRP1B | NF2 | PRDM1 | RXRA | TSHR |
| BAP1 | CHD7 | EPCAM | FGFR2 | IDH2 | LRP2 | NFE2L2 | PREX2 | RXRB | TTF1 |
| BARD1 | CHEK1 | EPHA3 | FGFR3 | IGF1R | LTK | NFKBIA | PRF1 | RXRG | TTN |
| BCL2 | CHEK2 | EPHA5 | FGFR4 | IGF2 | LYN | NKX2-1 | PRKAR1A | SATB1 | TUBB3 |
| BCL2L1 | CHIC2 | EPHA7 | FH | IKBKE | LYST | NOTCH1 | PRKC1 | SBDS | TYK2 |
| BCL2L2 | CIC | EPHB1 | FIP1L1 | IKZF1 | LZTR1 | NOTCH2 | PRKDC | SCRN1 | USH2A |
| BCL6 | CKS1B | ERBB1 | FLCN | IKZF2 | MAGI2 | NPM1 | PRKN | SDHA | VEFGA |
| BCOR | CLHC1 | ERBB2 | FLT1 | IKZF3 | MAP2K1 | NQO1 | PRMT3 | SDHB | VHL |
| BCORL1 | cOR8S14 | ERBB3 | FLT3 | IL2RA | MAP2K2 | NRAS | PSMA1 | SDHC | WEE1 |
| BHLHA9 | CREBBP | ERBB4 | FLT4 | IL2RB | MAP2K4 | NRG1 | PSMB1 | SDHD | WRN |
| BLM | CRKL | ERCC1 | FOXL2 | IL2RG | MAP3K1 | NSD1 | PSMB2 | SEPTIN9 | WT1 |
| BMPR1A | CRLF2 | ERCC2 | FOXP1 | INHBA | MAP3K14 | NT5C2 | PSMB5 | SERP2 | XPO1 |
| BRAF | CSF1R | ERCC3 | FRS2 | INPP4B | MAPK1 | NTRK1 | PSMD1 | SETBP1 | XRCC1 |
| BRCA1 | CSF3R | ERCC4 | FSTL5 | INPP5D | MCL1 | NTRK2 | PTCH1 | SETD2 | YAP1 |
| BRCA2 | CSMD3 | ERCC5 | FUBP1 | IRAK4 | MDM2 | NTRK3 | PTEN | SGK1 | YES1 |
| BRD4 | CTCF | ERG | GABRA6 | IRF1 | MDM4 | NUP93 | PTGFR | SHH | ZAP70 |
| BRIC3 | CTNNA1 | ERRFI1 | GADD45B | IRF4 | MECOM | ORC1 | PTPN11 | SLC22A1 | ZBED4 |
| BRIP1 | CTNNB1 | ESR1 | GATA1 | IRF8 | MECOM | PAG1 | PTPN2 | SLC22A2 | ZBTB2 |
| BTG1 | CTNNB1 | ESR2 | GATA2 | IRS2 | MED12 | PAK3 | PTPN5 | SLC31A1 | ZMYM3 |
| BTG2 | CUL3 | ETV1 | GATA3 | ITCH | MED13 | PALB2 | PTPN6 | SLC34A2 | – |