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Peer-reviewed veterinary case report

New treatment BB-Cl-Amidine activates stress to fight dog and cat

By Ledet, Melissa M et al.·Published in BMC cancer·2018·Baker Institute for Animal Health, United States·View original on PubMed

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Original publication title: BB-Cl-Amidine as a novel therapeutic for canine and feline mammary cancer via activation of the endoplasmic reticulum stress pathway.

Plain-English summary

A study found that a new treatment called BB-Cl-Amidine (BB-CLA) may help dogs and cats with mammary cancer, which is a serious condition with few effective treatments. Researchers tested this treatment on cancer cells from dogs and cats and found that it reduced the growth of these cells. They also created mouse models to further study how BB-CLA works in living animals. While this research is still in early stages, it suggests that BB-CLA could be a promising option for treating mammary cancer in pets in the future.

People also search for: dog mammary cancer treatment · cat breast cancer options · BB-Cl-Amidine for pets

Abstract

BACKGROUND: Mammary cancer is highly prevalent in dogs and cats and results in a poor prognosis due to critically lacking viable treatment options. Recent human and mouse studies have suggested that inhibiting peptidyl arginine deiminase enzymes (PAD) may be a novel breast cancer therapy. Based on the similarities between human breast cancer and mammary cancer in dogs and cats, we hypothesized that PAD inhibitors would also be an effective treatment for mammary cancer in these animals. METHODS: Canine and feline mammary cancer cell lines were treated with BB-Cl-Amidine (BB-CLA) and evaluated for viability and tumorigenicity. Endoplasmic reticulum stress was tested by western blot, immunofluorescence, and quantitative reverse transcriptase polymerase chain reaction (qRT-PCR). Canine and feline mammary cancer xenograft models were created using NOD scid gamma (NSG) mice, and were treated with BB-CLA for two weeks. RESULTS: We found that BB-CLA reduced viability and tumorigenicity of canine and feline mammary cancer cell lines in vitro. Additionally, we demonstrated that BB-CLA activates the endoplasmic reticulum stress pathway in these cells by downregulating 78 kDa Glucose-regulated Protein (GRP78), a potential target in breast cancer for molecular therapy, and upregulating the downstream target gene DNA Damage Inducible Transcript 3 (DDIT3). Finally, we established a mouse xenograft model of both canine and feline mammary cancer in which we preliminarily tested the effects of BB-CLA in vivo. CONCLUSION: We propose that our established mouse xenograft models will be useful for the study of mammary cancer in dogs and cats, and furthermore, that BB-CLA has potential as a novel therapeutic for mammary cancer in these species.

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Original publication on PubMed: https://pubmed.ncbi.nlm.nih.gov/29649984/