Showing posts with label alternative cancer treatement. Show all posts
Showing posts with label alternative cancer treatement. Show all posts

Saturday, September 3, 2011

Blog Reprint from the "MAD SCIENTIST" (aka) "PHARYNGULA"

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Dichloroacetate (DCA) and Cancer

Category: Science
Posted on: May 16, 2011 10:02 AM, by PZ Myers (PZ Myers is a biologist and associate professor at the University of Minnesota, Morris.)


So many people have sent me this sensationalistic article, "Scientists cure cancer, but no one takes notice", that I guess I have to respond. I sure wish it were true, but you should be able to tell from how poorly it is written and the ridiculous inaccuracies (mitochondria are cells that fight cancers?) that you should be suspicious. The radical, exaggerated claims make the truth of the story highly unlikely.

Researchers at the University of Alberta, in Edmonton, Canada have cured cancer last week, yet there is a little ripple in the news or in TV. It is a simple technique using very basic drug. The method employs dichloroacetate, which is currently used to treat metabolic disorders. So, there is no concern of side effects or about their long term effects.

The simple summary is this: that claim is a lie. There have been no clinical trials of dichloroacetate (DCA) in cancer patients, so there is no basis for claiming they have a cure; some, but not all, cancers might respond in promising ways to the drug, while others are likely to be resistant (cancer is not one disease!); and there are potential neurotoxic side effects, especially when used in conjunction with other chemotherapies.

So we have one popular account that is badly written and makes exaggerated claims. There is also a university press release, the source for the sloppy popular account, that doesn't contain the egregious stupidities but does tend to inflate basic research studies into an unwarranted clinical significance. And then, of course, there are the actual peer reviewed papers that describe the research and rationale, and also the reservations, on DCA. It's like a game of telephone: you can actually trace the account from the sober science paper to the enthusiastic press release to the web account with its extravagant claims of a simple, cheap cure for cancer, and see how the story is gradually corrupted. It would be funny if the final result wasn't going to dupe a lot of desperate people.

But there is a germ of truth to the story, in that DCA does have potential. Here's how it works.

There are two major pathways that we use to extract energy from sugar. One is glycolysis, which extracts two ATP molecules from each molecule of sugar, and doesn't require oxygen. Then there is glucose oxidation, which as you might guess from the name, does require oxygen, but which takes the byproducts of glycolysis and burns them completely to produce 36 ATP. So there's the tradeoff: if your cells are oxygen-starved, or hypoxic, they can still get energy from sugar, but it's relatively inefficient, but if they do have access to oxygen, they can extract much more. This is why you breathe, and why your heart beats, and why you have an elaborate circulatory system to deliver oxygenated blood to your tissues: without oxygen, you suffer a catastrophic hit to the efficiency of energy production.


Another feature of these two energy-producing pathways is that they are in different cellular compartments. Glycolysis takes place in the cytoplasm, while glucose oxidation occurs in the mitochondria. There is a gate-keeping enzyme, pyruvate dehydrogenase kinase (PDK), that regulates the flow of pyruvate, a product of the glycolysis pathway, into the mitochondria for oxidation. If PDK is active, it suppresses the transport of pyruvate into the mitochondria, and the cell is forced to rely on glycolysis, even if oxygen is available. If PDK is inactivated, pyruvate is shuttled into the mitochondria, even if oxygen is low.

This is where DCA comes in. DCA inhibits PDK, forcing cells to use the more efficient form of energy production. That sounds like a strange way to make a cancer cell uncomfortable, but the other factor here is that mitochondria are primary regulators of apoptosis, or cell suicide. They are loaded with sensors and enzymes that react to abnormalities in the cell (like being cancerous!) by activating a self-destruct mechanism. Shut down the mitochondra, you shut down the self-destruct mechanism that polices the cell. So the idea is a little indirect: by goosing the mitochondria, we also wake up the safety switch that, if all goes well, will cause the cell to spontaneously kill itself.

There are good reasons to think this might work. Many cancer cells arise in hypoxic environments; a poorly vascularized tumor, for instance, is going to be oxygen starved in the absence of blood flow, and the inhibition of mitochondria may be a factor in their survival. There is a well-known phenomenon called the Warburg effect, in which cancer cells will rely on glycolysis even when oxygen is available, suggesting that they have suppressed their mitochondria.

DCA also seems like a relatively safe drug. It's been used for a long time in patients with metabolic disorders, or with metabolic side effects from other problems.

A large number of children and adults have been exposed to DCA over the past 40 years, including healthy volunteers and subjects with diverse disease states. Since its first description in 1969, DCA has been studied to alleviate the symptoms or the haemodynamic consequences of the lactic acidosis complicating severe malaria, sepsis, congestive heart failure, burns, cirrhosis, liver transplantation and congenital mitochondrial diseases. Single-arm and randomised trials of DCA used doses ranging from 12.5 to 100 mg kg-1 day-1 orally or intravenously). Although DCA was universally effective in lowering lactate levels, it did not alter the course of the primary disease (for example sepsis).

This is encouraging. It means there is a body of work already published on the effects of DCA, which should simplify the process of moving it into clinical trials. The authors, however, very clearly indicate that it won't be a magic bullet affecting all cancers, but that some are likely candidates.

Dichloroacetate could be tested in a variety of cancer types. The realisation that (i) a diverse group of signalling pathways and oncogenes result in resistance to apoptosis and a glycolytic phenotype, (ii) the majority of carcinomas have hyperpolarised/ remodeled mitochondria, and (iii) most solid tumours have increased glucose uptake on PET imaging, suggest that DCA might be effective in a large number of diverse tumours. However, direct preclinical evidence of anticancer effects of DCA has been published only with non-small cell lung cancer, glioblastoma and breast, endometrial and prostate cancer. In addition, the lack of mitochondrial hyperpolarisation in certain types of cancer, including oat cell lung cancer, lymphomas, neuroblastomas and sarcomas, suggest that DCA might not be effective in such cases. Cancers with limited or no meaningful therapeutic options like recurrent glioblastoma or advanced lung cancer should be on top of the list of cancers to be studied.

Notice that the only work done so far is preclinical: that means it has been tested in mouse models, tissue culture, but hasn't really been tried in cancer patients yet. The authors come right out and say that, express some possible reservations about its effectiveness, and suggest what needs to be done next.

No patient with cancer has received DCA within a clinical trial. It is unknown whether previously studied dose ranges will achieve cytotoxic intra-tumoral concentrations of DCA. In addition, the overall nutritional and metabolic profile of patients with advanced cancer differs from those in the published DCA studies. Furthermore, pre-exposure to neurotoxic chemotherapy may predispose to DCA neurotoxicity. Carefully performed phase I dose escalation and phase II trials with serial tissue biopsies are required to define the maximally tolerated, and biologically active dose. Clinical trials with DCA will need to carefully monitor neurotoxicity and establish clear dose-reduction strategies to manage toxicities. Furthermore, the pharmacokinetics in the cancer population will need to be defined.

Do not rush out and buy DCA and gurgle it down as a cancer preventative. We don't know that it works — the safe concentrations for you may not be sufficient to kill any cancer cells, and the concentrations needed to kill cancer cells may be so high that it will do horrible, unpredicted, and dangerous things to you (some work with patients with congenital mitochondrial disorders also revealed some degree of peripheral neuropathy, for instance). This is why we have clinical trials: to work out safe and effective doses, look for dangerous interactions with other drugs — and if you have cancer, you're already on a complicated cocktail of drugs — and detect unexpected side effects.

We should be urging further investigation of this promising drug with the beginning of clinical trials, but it's far too early to be babbling about "cancer cures". There have been lots of drugs that look great in the lab and have excellent rationales for why they should work, but the reality of cancer is that it is complicated and diverse and there are many more pitfalls between a drug that poisons cancer cells in a petri dish and a drug that actually works well in the more complex environment of a human being.

One other factor that inflames the conspiracy nuts over this drug is that DCA is simple, dirt-cheap, and completely unpatentable — there is no economic incentive for a pharmaceutical company to invest a gigantic bucket of money in clinical trials, because there is no hope for a return on the investment.

This is why an independent academic community with research funded for knowledge rather than profit is so important, and really emphasizes why we cannot afford to privatize all biomedical research. The authors propose a plan for progressing without the involvement of the pharmaceutical industry.

Funding for such trials would be a challenge for the academic community as DCA is a generic drug and early industry support might be limited. Fundraising from philanthropies might be possible to support early phase I - II or small phase III trials. However, if these trials suggest a favourable efficacy and toxicity, the public will be further motivated to directly fund these efforts and national cancer organisations like the NCI, might be inspired to directly contribute to the design and structure of larger trials. It is important to note that even if DCA does not prove to be the 'dawn of a new era', initiation and completion of clinical trials with a generic compound will be a task of tremendous symbolic and practical significance. At this point the 'dogma' that trials of systemic anticancer therapy cannot happen without industry support, suppresses the potential of many promising drugs that might not be financially attractive for pharmaceutical manufacturers. In that sense, the clinical evaluation of DCA, in addition to its scientific rationale, will be by itself another paradigm shift.

I can't blame the industry for not following up on this: a clinical trial costs millions of dollars, and even if DCA pans out, there is no profit at all to be gained from it. For this research, we have to turn to public support (they have an interest in better cancer treatments!) and to scientists and doctors themselves, who of course have a great personal interest in seeing their patients get better.




Michelakis ED, Webster L, Mackey JR (2008) Dichloroacetate (DCA) as a potential metabolic-targeting therapy for cancer. Br J Cancer 99(7):989-94.


Friday, January 7, 2011

Coley's Controversial "Cancer / Fever" Connection

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As a result of my month-long battle with flu, pneumonia, bacterial infections and high fevers (102.5+), my partner reminded me of an interesting theory regarding the benefits of high fevers in combatting cancer cells. I started to dig around to find a reader-friendly summary and history of the "cancer/fever theory" and found the following two articles. They are a good introduction to the controversial hypothesis. The url for the source website is listed at the end.
Fever can save lives and heal cancer. Here is a possibly life-saving article detailing the vital importance of non-interference with the body’s self-healing in the case of fevers healing the body, especially in virus (lung) infections, together with articles on the strong connection between fever or induced hyperthermia and cancer healing (including spontaneous remissions).

Fever and Cancer Healing
Fever, Cancer Incidence and Spontaneous Remissions
Kleef R, Jonas WB, Knogler W, Stenzinger W., Office of Complementary and Alternative Medicine, NIH, Bethesda, MD, USA.

Summary: [T]he occurrence of fever in childhood or adulthood may protect against the later onset of malignant disease; spontaneous remissions are often preceded by feverish infections.

OBJECTIVE: Accumulating evidence exists for (1) an inverse correlation between the incidence of infectious diseases and cancer risk and (2) an inverse correlation between febrile infections and remissions of malignancies. This review is part of an effort of the Office of Alternative Medicine at the National Institutes of Health to examine this evidence.

METHODS: A review of the literature to a key word search was undertaken, using the following key words: fever, infectious diseases, neoplasm, cancer incidence and spontaneous remission.

RESULTS: The data reviewed in this article support earlier observations on the topic, i.e. that the occurrence of fever in childhood or adulthood may protect against the later onset of malignant disease and that spontaneous remissions are often preceded by feverish infections.

CONCLUSION: Pyrogenic substances and the more recent use of whole-body hyperthermia to mimic the physiologic response to fever have successfully been administered in palliative and curative treatment protocols for metastatic cancer. Further research in this area is warranted.

Copyright 2001 S. Karger AG, Basel Dec 22 2003

Compare Terminal Colon Cancer Patient Healed Via Complete Budwig Protocol, Healthy Today. His healing journey involved multiple fever spells, both spontaneous and self-induced by epsom salt baths, each of which left him feeling better. Also see the powerful confirming observations reported in Homeopathy, Carcinosinum and Cancer: Cancer patients are regularly recorded as stating: "I cannot remember that I ever had fever." As their bodily defenses are rekindled (such as by homeopathic [= energetic] treatment), RESTORATION OF REACTIVITY, from the tumoral stage back to the infectious stage, takes place: "A process of cleaning out at all levels takes place, poisonous relationships are broken off or corrected, ... and a marked influenza or inflammation with high fever for the first time in twenty years cleans the poison from his body. All this means that the reactivity is increasing. ... Also the suppression of fever, a defense mechanism par excellence, the use of antibiotics and corticosteroids can lower the defense mechanisms.”

Microbially Induced Fever and Spontaneous Cancer Remissions (“Coley's toxins”) -- excerpted from The Promise of William B. Coley

by Ralph W. Moss, Ph.D., September 2002

NOTE: Readers can find out more about this program by calling Gar Hildenbrand of the Issels Treatment Center at 858-759-2966.

Last week I spoke about the promise represented by the phenomenon of "spontaneous remissions." These are cures of cancer that occur without medical intervention. While rare, they are well documented. For centuries, doctors have dreamed of harnessing this phenomenon to create a natural cure for cancer.

In the 1890s, a young New York surgeon, fresh out of Yale University and Harvard Medical School, made a fascinating discovery. Desperate to find a cure for bone cancer, he searched the records of New York Hospital to see if anyone had ever been cured of the advanced form of that disease. He discovered that one man with advanced sarcoma had contracted an infectious skin disease called erysipelas in the hospital. He not only survived the infection but his cancer went into a "spontaneous" remission.

Most doctors would have shrugged their shoulders and moved on to the next case. But William B. Coley was no ordinary doctor. He was the Sherlock Holmes of cancer. He went to the address listed on the man's records, but the man had moved. And so he tracked him from tenement to tenement until finally in 1888 he found the man alive, well, and cancer-free seven years after the spontaneous cure.

This was an event that changed the course of Coley's life. In 1891, he began treating patients with the same organism that caused erysipelas, a germ called Streptococcus pyogenes. His first patient developed a raging fever, and then the "miracle" occurred: the tumors of his tonsils and neck completely disappeared, and only a scar remained. This man, who could only swallow liquids and whisper when Coley started the treatment, made a complete recovery. (Ten years later he was still free of cancer.) Coley inoculated nine more patients with live erysipelas microbes and discovered that physicians in Germany, such as Dr. Busch, were doing the same thing independently of his own discovery. In 1893, he tabulated the first results and published his first article on the method. Out of seventeen cases of advanced cancer, four were permanently cured, ten showed improvement, while three showed no improvement at all.

While some people saw their cancers regress with the use of live bacteria, others died. In addition to its risks for the patient being treated, using live bacteria was dangerous to other patients and to the staff. So Coley conceived the idea of using killed bacterial byproducts. He added a nonpathogenic organism called Serratia marcescens to the "soup" and started treating patients with this mixture.

The world quickly dubbed this combination "Coley's toxins," since they represented the toxic byproducts of the bacteria without the bacteria themselves. However, the word "toxins" was an unfortunate choice. (A more acceptable name for the treatment is "mixed bacterial vaccine.") The bacteria deliberately caused side effects, such as fever and malaise. But they were not toxic in the sense that radiation or chemotherapy is toxic. They did not destroy the immune system but put it through a rigorous drill that often resulted in the shrinkage or disappearance of the tumor.

Over the years Coley published dozens of articles in the best medical journals. These recorded his success (and sometimes his failure) in applying the mixed bacterial vaccine to people with advanced cancer. In sarcomas, he claimed 41 percent complete cures. In other kinds of cancer there were many astounding remissions.

There were drawbacks to the treatment, however. Having frequent fevers is trying on the patient. The preparations (mostly made for Coley by Parke-Davis) were variable in their potency. This led to much confusion and disappointment. Some doctors, initially enthusiastic about the treatment, became disillusioned when they used less effective preparations. Oftentimes, doctors did not use the toxins aggressively enough. It took a tremendous belief to persevere with this treatment. Nevertheless, despite the difficulties and drawbacks, there is no doubt in my mind that Coley's toxins represented one practical application of the idea of spontaneous remission to treatment.

The subsequent history of Coley's toxins is rather sad. Coley died in 1936. He never wrote a book about his amazing life experience, and his journal articles began to gather dust in medical libraries. His son, Bradley Coley, MD, continued to use the vaccine at Memorial Sloan-Kettering into the 1950s, but in an increasingly hostile environment. First radiation and then chemotherapy became directly competitive with this more natural approach. Coley's daughter, Helen Coley Nauts, founded the Cancer Research Institute of New York to save and promote his work. She was an amazing presence in the cancer field for many decades. But although she got her father removed from the American Cancer Society "quack list" in the mid-1970s, she was never able to get his treatment used widely.

I first heard of Coley from his Memorial colleague, Kanematsu Sugiura, DSc, who compared his own problems with laetrile to those experienced by Coley in the 1920s and 1930s. Through Lloyd Old, MD, then vice president of Sloan-Kettering Institute, I interviewed Mrs. Nauts at her home on Park Avenue in 1975. This was an eye-opener, to say the least. Mrs. Nauts remained a good friend for many years. She had a vast influence on cancer, befriending and supporting many young researchers. She died on January 2, 2001, at the age of 93.

At the present time, there are few clinics that use Coley's toxins as part of a comprehensive treatment protocol. One that interests me very much is an inpatient program in Tijuana, Mexico, that combines Coley's toxins with the Gerson diet [also compare Juicing & Juicers] and other forms of immunotherapy.

Copyright © Ralph W. Moss, Ph.D. CancerDecisions®


Compare Terminal Colon Cancer Patient Healed Via Complete Budwig Protocol, Healthy Today. His healing journey involved multiple fever spells, both spontaneous and self-induced by epsom salt baths, each of which left him feeling better.

Also see the powerful confirming observations reported in Homeopathy, Carcinosinum and Cancer: Cancer patients are regularly recorded as stating: "I cannot remember that I ever had fever." As their bodily defenses are rekindled (such as by homeopathic treatment), RESTORATION OF REACTIVITY, from the tumoral stage back to the infectious stage, takes place: "A process of cleaning out at all levels takes place, poisonous relationships are broken off or corrected, ... and a marked influenza or inflammation with high fever for the first time in twenty years cleans the poison from his body. All this means that the reactivity is increasing.”

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