Cannabinoids reduce ErbB2-driven breast cancer progression through Akt inhibition

“BACKGROUND:

ErbB2-positive breast cancer is characterized by highly aggressive phenotypes and reduced responsiveness to standard therapies. Although specific ErbB2-targeted therapies have been designed, only a small percentage of patients respond to these treatments and most of them eventually relapse. The existence of this population of particularly aggressive and non-responding or relapsing patients urges the search for novel therapies. The purpose of this study was to determine whether cannabinoids might constitute a new therapeutic tool for the treatment of ErbB2-positive breast tumors. We analyzed their antitumor potential in a well established and clinically relevant model of ErbB2-driven metastatic breast cancer: the MMTV-neu mouse. We also analyzed the expression of cannabinoid targets in a series of 87 human breast tumors.

RESULTS:

Our results show that both Delta9-tetrahydrocannabinol, the most abundant and potent cannabinoid in marijuana, and JWH-133, a non-psychotropic CB2 receptor-selective agonist, reduce tumor growth, tumor number, and the amount/severity of lung metastases in MMTV-neu mice. Histological analyses of the tumors revealed that cannabinoids inhibit cancer cell proliferation, induce cancer cell apoptosis, and impair tumor angiogenesis. Cannabinoid antitumoral action relies, at least partially, on the inhibition of the pro-tumorigenic Akt pathway. We also found that 91% of ErbB2-positive tumors express the non-psychotropic cannabinoid receptor CB2.

CONCLUSIONS:

Taken together, these results provide a strong preclinical evidence for the use of cannabinoid-based therapies for the management of ErbB2-positive breast cancer.”

Cannabinoids inhibit breast tumor growth in vivo and the number of tumors generated per animal.

Cannabinoids inhibit cancer cell proliferation, induce cancer cell apoptosis, and impair tumor angiogenesis in vivo.

Cannabinoids decrease breast cancer metastases in the lungs

In summary, our results, which were obtained in a clinically relevant animal model of ErbB2-positive breast cancer, suggest that these highly aggressive and low responsive tumors could be efficiently treated with non-psychoactive CB2-selective agonists without affecting the surrounding healthy tissue.”

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2917429/

Cannabinoid receptor 1 is a potential drug target for treatment of translocation-positive rhabdomyosarcoma

“Because cannabinoid receptor agonists are capable of reducing proliferation and inducing apoptosis (cell death) in diverse cancer cells such as glioma, breast cancer, and melanoma, we evaluated whether CB1 is a potential drug target in rhabdomyosarcoma.

Rhabdomyosarcoma (RMS) is the most common soft-tissue sarcoma in children…

 Our study shows that treatment with the cannabinoid receptor agonists HU210 (cloned THC from Hebrew University) and Delta(9)-tetrahydrocannabinol (THC from cannabis) lowers the viability of translocation-positive rhabdomyosarcoma cells through the induction of apoptosis…

These results support the notion that cannabinoid receptor agonists could represent a novel targeted approach for treatment of translocation-positive rhabdomyosarcoma.”

Full text: http://mct.aacrjournals.org/content/8/7/1838.long

Cannabinoids: A new hope for breast cancer therapy?

“Experimental evidence accumulated during the last decade supports that cannabinoids, the active components of Cannabis sativa and their derivatives, possess anticancer activity… these compounds exert anti-proliferative, pro-apoptotic, anti-migratory and anti-invasive actions in a wide spectrum of cancer cells… Moreover, tumor growth, angiogenesis and metastasis are hampered by cannabinoids… our current knowledge on the anti-tumor potential of cannabinoids in breast cancer… suggests that cannabinoid-based medicines may be useful for the treatment of most breast tumor subtypes.”

http://www.ncbi.nlm.nih.gov/pubmed/22776349 

Cannabinoid receptor type 1 and 2 expression in the skin of healthy dogs and dogs with atopic dermatitis

“Cannabinoid receptor type 1 and 2 expression in the skin of healthy dogs and dogs with atopic dermatitis…The endocannabinoid system and cannabimimetic compounds protect against effects of allergic inflammatory disorders in various species of mammals. Results of the present study contributed to knowledge of the endocannabinoid system and indicated this system may be a target for treatment of immune-mediated and inflammatory disorders such as allergic skin diseases in dogs.”

http://www.ncbi.nlm.nih.gov/pubmed/22738050

7-Oxo-[1,4]oxazino[2,3,4-ij]quinoline-6-carboxamides as Selective CB2 Cannabinoid Receptor Ligands: Structural Investigations around a Novel Class of Full Agonists

“Cannabinoid receptor agonists have gained attention as potential therapeutic targets of inflammatory and neuropathic pain. Here, we report the identification and optimization of a series of 7-oxo-[1,4]oxazino[2,3,4-ij]quinoline-6-carboxamide derivatives as a novel chemotype of selective cannabinoid CB2 receptor agonists… 7-Oxo-[1,4]oxazino[2,3,4-ij]quinoline-6-carboxamides as Selective CB2 Cannabinoid Receptor Ligands: Structural Investigations around a Novel Class of Full Agonists.”

http://www.ncbi.nlm.nih.gov/pubmed/22738271

Cannabidiol protects oligodendrocyte progenitor cells from inflammation-induced apoptosis by attenuating endoplasmic reticulum stress

“Cannabidiol (CBD) is the most abundant cannabinoid in Cannabis sativa that has no psychoactive properties. CBD has been approved to treat inflammation, pain and spasticity associated with multiple sclerosis (MS), of which demyelination and oligodendrocyte loss are hallmarks. Thus, we investigated the protective effects of CBD against the damage to oligodendrocyte progenitor cells (OPCs) mediated by the immune system… Cannabidiol protects oligodendrocyte progenitor cells… These findings suggest that attenuation of the ER stress pathway is involved in the ‘oligoprotective’ effects of CBD during inflammation.”

http://www.ncbi.nlm.nih.gov/pubmed/22739983

Rimonabant inhibits human colon cancer cell growth and reduces the formation of precancerous lesions in the mouse colon

“Rimonabant inhibits human colon cancer cell growth and reduces the formation of precancerous lesions…” and “Cannabinoid receptor activation induces apoptosis… in colon cancer cells”

http://www.ncbi.nlm.nih.gov/pubmed/19479993

Alternative targets within the endocannabinoid system for future treatment of gastrointestinal diseases

“Alternative targets within the endocannabinoid system for future treatment of gastrointestinal diseases… Many beneficial effects of herbal cannabinoids on gut motility and inflammation have been demonstrated, suggesting a vast potential for these compounds in the treatment of gastrointestinal disorders….endocannabinoid system’ (ECS), a cooperating network of molecules that regulate themetabolism of the body’s own and of exogenously administered cannabinoids. The ECS… offering many potential targets for pharmacological intervention. Of major therapeutic interest are nonpsychoactive cannabinoids that do not directly target cannabinoid receptors but still possess cannabinoid-like properties… promising alternative therapeutic tools to manipulate the ECS.”

http://www.ncbi.nlm.nih.gov/pubmed/21876860

Unraveling the complexities of cannabinoid receptor 2 (CB2) immune regulation in health and disease

CB2 is a potent regulator of immune responses making it a prime target for the treatment of inflammatory diseases.”

http://www.ncbi.nlm.nih.gov/pubmed/21626285

Concomitant consumption of marijuana, alcohol and tobacco in oral squamous cell carcinoma development and progression: Recent advances and challenges

“Carcinogens found in tobacco are also concentrated in marijuana, but the latter also contains high levels of cannabinoids, bioactive compounds responsible for several effects such as euphoria and analgesia. However, Δ(9)-tetrahydrocannabinol (Δ(9)-THC), the major psychotropic cannabinoid found in plants, causes a reduction of cellular metabolism and induction of apoptosis (progarmmed cell death), both of which are anti-neoplastic properties…”

http://www.ncbi.nlm.nih.gov/pubmed/22727410