Marijuana Compounds Could Beat Back Brain Cancer – ABCNews

“Preliminary research suggests that a combination of compounds in marijuana could help fight off a particularly deadly form of brain cancer.

But the findings shouldn’t send patients rushing to buy pot: the levels used in the research appear to be too high to obtain through smoking. And there’s no sign yet that the approach works in laboratory animals, let alone people.

Still, the finding does suggest that more than one compound in marijuana might boost cancer treatment, said study author Sean McAllister, an associate scientist at California Pacific Medical Center Research Institute in San Francisco. “Combination therapies might be more appropriate,” McAllister said.

Researchers have long studied the compounds in marijuana known as cannabinoids, which are thought to hold possible health benefits. One, known as THC, is well known for its role in making people high when they smoke or eat pot. Researchers have been testing it as a treatment for the brain tumors known as glioblastomas.

In the new study, researchers tested THC and cannabidiol, another compound from marijuana, on brain cancer cells. The findings appear in the January issue of Molecular Cancer Therapeutics.

The study authors found that the combination treatment seemed to work better at killing the cancerous cells and preventing them from growing back.

About 9,000 people in the United States develop glioblastomas each year, said Dr. Paul Graham Fisher, chief of the Division of Child Neurology at Stanford University and Lucile Packard Children’s Hospital. The most famous patient was the late U.S. Senator Ted Kennedy.

The prognosis for people with the condition is grim because tumors spread throughout the brain. It can be impossible for treatments to remove the entire tumor, Fisher said.

“No matter what you do, this tumor has a larger border than you ever think,” he said. “We know there are microscopic satellites all throughout one side of the brain and pretty soon in the other side of the brain. The only thing that will fix this disease is something that provides a more blanket approach.”

Instead of targeting the tumors itself, he explained, treatments need to do something like disrupt the pathways that cancer cells use to communicate.

In the big picture, “you’re seeing a lot more thinking outside the box about trying to treat glioblastoma,” he said. “I think in the next 10 to 15 years we’re going to start seeing progress forward.”

For now, he said, there’s no evidence that marijuana is good or bad for glioblastoma tumors.

Back in the laboratory, McAllister said the next step is to test the combination treatment on laboratory animals and then on people. The treatment may be given to people directly through the brain, which could be expensive. But the compounds themselves may not be expensive, McAllister said.

As for the idea of getting the same effect through a couple of marijuana joints, he had this to say: “It’s unlikely that you could reach effective concentrations by smoking the plant.””

http://abcnews.go.com/Health/Healthday/marijuana-compounds-beat-back-brain-cancer/story?id=9534388

“Cannabinoids selectively inhibit proliferation and induce death of cultured human glioblastoma multiforme cells.”
http://www.ncbi.nlm.nih.gov/pubmed/16078104

Marijuana Compound Fights Cancer; Human Trials Next

(NBC) “Research shows component in medical cannabis fights cancer.”

“The “medical” bit of medical marijuana may be legitimate after all: Turns out a component of cannabis fights cancer, according to research.

Scientists at California Pacific Medical Center found that cannabidiol, or CBD, has the ability to “turn off” the DNA that causes “breast and other types of cancers” to metastasize, according to the San Francisco Chronicle.

“If this plant were discovered in the Amazon today, scientists would be falling all over each other to be the first to bring it to market,” said Dr. Donald Abrams, chief of oncology at the University of California San Francisco, which has also found science behind marijuana’s efficacy.

The drug “has been shown to reduce pain and nausea” in cancer patients, the newspaper reported. AIDS patients also swear by cannabis for its ability to allow them to eat, sleep and otherwise function.

Turns out that cannabidiol has none of the psychotropic effects of marijuana as a whole, according to the newspaper. The researchers hope to move to clinical trials on humans soon.

Cancer cells exposed to cannabidiol lost their abilities to metastasize, according to the newspaper.”

http://www.nbcbayarea.com/news/local/Marijuana-Compound-Fights-Cancer-Human-Trials-Next-170406116.html

NBC News Reports that Cannabidiol (CBD) “Turns Off” the Cancer Gene Involved in Metastasis Findings by Scientists at California Pacific Medical Center gives Scientific Support for Cannabis Science

“Cannabis Science (CBIS), a pioneering U.S. Biotech Company developing pharmaceutical products for global public health challenges, reports on a recent press release by the San Francisco NBC news, with new studies by Scientists at California Pacific Medical Center, which have shown that cannabidiol, (CBD -1.18%, news), has the ability to “turn off” a gene that causes breast and other types of cancers to metastasize, according to the San Francisco Chronicle newspaper.

NBC News reports, “The drug “has been shown to reduce pain and nausea” in cancer patients. AIDS patients also use cannabis to eat, sleep and otherwise be more functional. Turns out that cannabidiol has none of the psychotropic effects of marijuana as a whole. The researchers hope to move to clinical trials on humans soon to test the cannabidiol inhibition of metastasis, reported in the San Francisco Chronicle. “What they found is that the cannabinoid turns off the overexpression of ID-1, which makes the cells lose their ability to travel to distant tissues. In other words, it keeps the cells more local and blocks their ability to metastasize. (spread to a new location) The researchers stressed cannabidiol works only on cancer cells that have these high levels of ID-1 and these do not include all cancerous tumors but, rather, aggressive, metastatic cells. But they’ve found such high levels in leukemia, colorectal, pancreatic, lung, ovarian, brain and other cancers.””

http://money.msn.com/business-news/article.aspx?feed=BW&date=20120920&id=15582334

SF Scientists: Marijuana Fights Cancer

(NBC Bay Area) “The “medical” bit of medical marijuana may be legitimate after all: Turns out a component of cannabis fights cancer, according to research.

Scientists at California Pacific Medical Center found that cannabidiol, or CBD, has the ability to “turn off” the DNA that causes “breast and other types of cancers” to metastasize, according to the San Francisco Chronicle.

“If this plant were discovered in the Amazon today, scientists would be falling all over each other to be the first to bring it to market,” said Dr. Donald Abrams, chief of oncology at the University of California San Francisco, which has also found science behind marijuana’s efficacy.

The drug “has been shown to reduce pain and nausea” in cancer patients, the newspaper reported. AIDS patients also swear by cannabis for its ability to allow them to eat, sleep and otherwise function.

Turns out that cannabidiol has none of the psychotropic effects of marijuana as a whole, according to the newspaper.”

http://m.nbcbayarea.com/nbcbayarea/pm_108022/contentdetail.htm?contentguid=DXQ0PNfC

Cannabinoids, Endocannabinoids, and Related Analogs in Inflammation.

“This review covers reports published in the last 5 years on the anti-inflammatory activities of all classes of cannabinoids, including phytocannabinoids such as tetrahydrocannabinol and cannabidiol, synthetic analogs such as ajulemic acid and nabilone, the endogenous cannabinoids anandamide and related compounds, namely, the elmiric acids, and finally, noncannabinoid components of Cannabis that show anti-inflammatory action. It is intended to be an update on the topic of the involvement of cannabinoids in the process of inflammation. A possible mechanism for these actions is suggested involving increased production of eicosanoids that promote the resolution of inflammation. This differentiates these cannabinoids from cyclooxygenase-2 inhibitors that suppress the synthesis of eicosanoids that promote the induction of the inflammatory process.”

 

“INTRODUCTION

This review is intended to be an update on the topic of the involvement of cannabinoids in the process of inflammation. Other reviews cover certain aspects of this subject and the reader is referred to them for a discussion of earlier reports. In this review are reports published in the last 5 years on the activities of all classes of cannabinoids, including the endogenous cannabinoids such as anandamide, related compounds such as the elmiric acids (EMAs), and noncannabinoid components of Cannabis that show anti-inflammatory action. An interesting recently published example of the latter one is caryophyllene, an abundant component of Cannabis oil that shows anti-inflammatory activity and has high affinity for cannabinoid receptor 2 (CB2; 5).”

 

“Phytocannabinoids: Tetrahydrocannabinol and Cannabidiol”

 

“PLANT PREPARATIONS AND NONCANNABINOID CONSTITUENTS OF CANNABIS”

“Cannabis sativa is a complex botanical, and it is not unlikely that the therapeutic benefits of marijuana are due to some of the more than 60 cannabinoids and 200–250 noncannabinoid constituents of the plant. One noncannabinoid, the geranylated flavone cannflavin A (Fig. 5), is 30 times more potent than aspirin as an inhibitor of prostaglandin E2 . These potentially important findings have been overlooked, as most attention in marijuana research has been directed to the analgesic effects of the plant and to mechanisms of psychoactivity. A further example that this line of inquiry has remained dormant is a series of overlooked observations, which demonstrate potent anti-inflammatory actions of a crude marijuana extract and of the nonpsychoactive Cannabis constituents, CBD, cannabinol, and cannabichromene in the carrageenan paw edema model of acute inflammation in rats. Volatile oil products of the plant also have biological activity. Thus, pyrolysis products may add to the therapeutic properties of smoked marijuana. Several of the most abundant cannabinoid and noncannabinoid constituents of C. sativa are nonpsychoactive.”

“Flavonoids are ubiquitous plant phenolic compounds that consist of two aromatic rings linked by a three carbon bridge. They are attracting interest because of their antioxidant, antitumor, anti-inflammatory, and antimicrobial activities. The flavone luteolin, a constituent of C. sativa, is also found in spices and in vegetables such as celery and green pepper. When added to peripheral blood mononuclear cells in vitro, luteolin suppresses production of the inflammatory cytokines TNFα, IL-1b, and IL-6, actions that relate to a selective reduction in numbers of monocytes. Perhaps more importantly, luteolin inhibits growth of Plasmodium falciparum in vitro and protects against induction of colon cancer in mice.”

“CONCLUSIONS

Possibly the very earliest literature reference on Cannabis describes its use as an anti-inflammatory agent. The Chinese emperor Shen-nung (ca. 2000 B.C.), in a work called Pen-ts’ao Ching, noted many of the effects of Cannabis in humans. Among other properties, it was claimed that cannabis “undoes rheumatism”, suggesting possible anti-inflammatory effects. The reports described in this review of the current literature provide support for the claims made by the ancient Chinese healers. These more recent publications include relief from chronic neuropathic pain, fibromyalgia, rheumatoid arthritis, and postoperative pain. In addition, a large body of preclinical data on all classes of cannabinoids, including the endogenous examples, point to a variety of therapeutic targets for cannabinoids and important roles for the endocannabinoids in the physiology of inflammation.”

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2664885/

Endocannabinoid overactivity and intestinal inflammation

Abstract

“Cannabinoid receptors of type 1 and 2 (CB1 and CB2), endogenous ligands that activate them (endocannabinoids), and mechanisms for endocannabinoid biosynthesis and inactivation have been identified in the gastrointestinal system. Activation of CB1 receptors by endocannabinoids produces relaxation of the lower oesophageal sphincter and inhibition of gastric acid secretion, intestinal motility, and fluid stimulated secretion. However, stimulation of cannabinoid receptors impacts on gastrointestinal functions in several other ways. Recent data indicate that the endocannabinoid system in the small intestine and colon becomes over stimulated during inflammation in both animal models and human inflammatory disorders. The pathological significance of this “endocannabinoid overactivity” and its possible exploitation for therapeutic purposes are discussed here.”

 

“The endocannabinoid system of the gastrointestinal tract includes not only cannabinoid receptors but also endogenous agonists of these receptors, as well as mechanisms for their biosynthesis and inactivation”

 

“The main psychotropic constituent of the plant Cannabis sativa and marijuana, Δ9‐tetrahydrocannabinol, exerts its pharmacological effects by activating two G protein coupled cannabinoid receptors.1These are the CB1 receptor, present in central and peripheral nerves (including the human enteric nervous system), and the CB2 receptor, expressed abundantly in immune cells. In rodents, CB1 receptor immunoreactivity has been detected in discrete nuclei of the dorsovagal complex (involved in emesis), and in efferents from the vagal ganglia and in enteric (myenteric and submucosal) nerve terminals where they inhibit excitatory (mainly cholinergic) neurotransmission. In vivo pharmacological studies have shown that activation of CB1 receptors reduces emesis, produces inhibition of gastric acid secretion8 and relaxation of the lower oesophageal sphincter (two effects that might be beneficial in the treatment of gastro‐oesophageal reflux disease), and inhibits intestinal motility and secretion. Consistent with immunohistochemical data showing that CB2 receptors are particularly evident in colonic tissues from patients with inflammatory bowel diseases (IBD), evidence suggests that CB2 inhibits intestinal motility during certain pathological states.1″

 

“…endocannabinoids convey protection from enteric hypersecretory states (for example, cholera toxin induced diarrhoea), which is in agreement with anecdotal reports from folk medicine on the use of Cannabis sativa in the treatment of diarrhoea.

 

“Overactivity of the endocannabinoid system is becoming a well established concept in human intestinal conditions with an inflammatory component”

   

“The inhibitory effects of cannabinoids on intestinal inflammation, as well as on intestinal motility and secretory diarrhoea, observed in preclinical studies, increase the potential for their use in the treatment of IBD”

  

“There is great potential for the development of new therapeutic agents against intestinal inflammation from the endocannabinoid system”

 

“Conclusions: new therapies for the treatment of IBD from the endocannabinoid system”

 

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1856409/

Pot Chemical May Curb Inflammation – WebMD

“Marijuana’s active ingredient may curb inflammation and help treat skin allergies.

That news comes from researchers including Meliha Karsak, PhD, and Thomas Tuting, MD, of Germany’s University of Bonn.

Marijuana’s key compound, THC, is a type of chemical called a cannabinoid. The brain contains two types of cannabinoid receptors.

Karsak and colleagues studied mice born with or without cannabinoid receptors. The mice wore ear tags to identify them; those ear tags contained nickel.

The mice without cannabinoid receptors were particularly likely to have allergic skin reactions to the nickel in the ear tags.

The scientists reasoned that the mice’s allergies may have been linked to their lack of cannabinoid receptors.

Karsak’s team tested that theory in several experiments.

First, they turned off cannabinoid receptors in healthy mice. Those mice then became more likely to develop skin inflammation near their nickel ear tags.

Next, the researchers exposed other mice with cannabinoid receptors to a skin irritant. Some of the mice got THC shots after being exposed to the irritant. Others got a THC skin lotion before and after exposure to the irritant.

The THC shot and lotion both helped soothe the mice’s inflamed skin.

“If we dabbed THC solution onto the animals’ skin shortly before and after applying the allergen, a lot less swelling occurred than normal,” Tuting says in a University of Bonn news release.

In the journal Science, the researchers write that their study “strongly suggests” that the body’s cannabinoid system can help tame inflammation and that THC skin lotions have “promising potential” for treating skin allergies caused by contact with irritating chemicals.

However, the researchers didn’t test the THC lotion on skin allergies in people.”

http://www.webmd.com/allergies/news/20070607/pot-chemical-may-curb-inflammation

“Attenuation of allergic contact dermatitis through the endocannabinoid system…These results demonstrate a protective role of the endocannabinoid system in contact allergy in the skin and suggest a target for therapeutic intervention.”  http://www.ncbi.nlm.nih.gov/pubmed/17556587

Why Cannabis Stems Inflammation

“Cannabis has long been accredited with anti-inflammatory properties. ETH Zurich researchers, however, have now discovered that it is not only the familiar psychoactive substances that are responsible for this; a compound we take in every day in vegetable nutriment also plays a significant role.

People not only rate cannabis sativa L. highly because of its intoxicating effects; it has also long been used as a medicinal plant. Although the plant has been scrutinized for years, surprising new aspects keep cropping up. For example, researchers from ETH Zurich and Bonn University examined a component in the plant’s essential oil that until then had largely been ignored and found it to have remarkable phar- macological effects. The findings open up interesting perspectives, especially for the prevention and treatment of inflammations.

The hemp plant contains over 450 different substances, only three of which are responsible for its intoxicating effect. They activate the two receptors in the body CB1 and CB2. Whilst the CB1 receptor in the central nervous system influences perception, the CB2 receptor in the tissue plays a crucial role in inhibiting inflammation. If the receptor is activated, the cell releases fewer pro-inflammatory signal substances, or cytokines. The scientists have now discovered that the substance beta-carophyllene, which composes between 12 and 35 percent of the cannabis plant’s essential oil, activates the CB2 receptor selectively.”

http://www.sciencedaily.com/releases/2008/07/080720222549.htm

Marijuana Has Anti-Inflammatory That Won’t Get You High

“Marijuana supporters have long argued that the plant’s active ingredients, known as cannabinoids, are safe and effective treatments for pain, nausea, and other ailments.

The most active cannabinoid—delta-9-tetrahydrocannabinol, or THC—is known to have anti-inflammatory properties. But it is also responsible for the plant’s psychotropic effects.

Now researchers say that another cannabinoid, called beta-caryophyllene, or (E)-BCP, helps combat inflammation without affecting the brain.

(E)-BCP is already part of many people’s daily diets, the researchers note. Foods that are particularly high in the compound include black pepper, oregano, basil, lime, cinnamon, carrots, and celery.

Essential oils from cannabis plants—whose leaves and flowers are used to make the marijuana drug—contain up to 35 percent (E)-BCP.”

http://news.nationalgeographic.com/news/2008/06/080624-marijuana.html

The cannabinoid system and immune modulation

Figure 1.

“Studies on the effects of marijuana smoking have evolved into the discovery and description of the endocannabinoid system. To date, this system is composed of two receptors, CB1 and CB2, and endogenous ligands including anandamide, 2-arachidonoyl glycerol, and others. CB1 receptors and ligands are found in the brain as well as immune and other peripheral tissues. Conversely, CB2 receptors and ligands are found primarily in the periphery, especially in immune cells. Cannabinoid receptors are G protein-coupled receptors, and they have been linked to signaling pathways and gene activities in common with this receptor family. In addition, cannabinoids have been shown to modulate a variety of immune cell functions in humans and animals and more recently, have been shown to modulate T helper cell development, chemotaxis, and tumor development. Many of these drug effects occur through cannabinoid receptor signaling mechanisms and the modulation of cytokines and other gene products.

It appears the immunocannabinoid system is involved in regulating the brain-immune axis and might be exploited in future therapies for chronic diseases and immune deficiency.”

“The medicinal uses of marijuana were described centuries ago for diseases such as asthma, migraine, pain, convulsions, and anxiety (reviewed in ref.). More recently, emphasis has been placed on marijuana’s putative, beneficial effects on appetite, glaucoma, spasticity in multiple sclerosis, pain, and inflammation.

Recent experimental evidence supports marijuana’s therapeutic potential in some of these maladies.

The active plant ingredients in marijuana belong to the C21-cannabinoid compounds including the primary psychoactive compound, Δ9-tetrahydrocannabinol (THC). This cannabinoid along with others such as Δ8-THC, cannabidiol, and cannabinol, as well as chemical analogs, have been extensively studied over the years for their biological and therapeutic properties. Some of the properties of these agents have included effects on immunity ranging from suppression of resistance to infection to enhancement of IL-1 production by macrophages. These early studies about the immunomodulating effects of these drugs have been the subject of previous overviews and will not be reviewed here. Instead, we will briefly summarize the general features of the cannabinoid system and review recent findings on the structure and function of the cannabinoid system components in the immune system. For convenience, we will refer to this as the “immunocannabinoid” system.

CANNABINOID SYSTEM

Marijuana cannabinoids, analogs, and endocannabinoids”

https://jlb.onlinelibrary.wiley.com/doi/full/10.1189/jlb.0303101?sid=nlm%3Apubmed