Showing posts with label aspartame. Show all posts
Showing posts with label aspartame. Show all posts

How Sugar Substitutes Confuse Your Body






By Dr. Mercola
If you've added the artificial sweetener sucralose (brand name Splenda) to your diet because you think it's a healthy alternative to sugar, you're being dangerously misled. Research from the Ramazzini Institute has linked the popular sugar alternative to cancer, specifically leukemia. 
The findings were first presented at a London cancer conference in 2012 and prompted The Center for Science in the Public Interest (CSPI) to downgrade Splenda from its "safe" category to one of "caution."
Now that the study has been published in a peer-reviewed journal, CSPI has again downgraded Splenda, this time from "caution" to "avoid."

Splenda May Increase Risk of Cancer in Mice

The researchers fed mice Splenda beginning prenatally and continuing for their entire lifespan. The mice were fed varying concentrations of the artificial sweetener: 0 ppm (parts per million), 500 ppm, 2,000 ppm, 8,000 ppm or 16,000 ppm. 
A significant increase in cancerous tumors was seen among male mice, and the risk increased along with the dose. The risk of leukemia in male mice also significantly increased, especially at Splenda doses of 2,000 to 16,000 ppm.1According to the study:
"These findings do not support previous data that sucralose is biologically inert. More studies are necessary to show the safety of sucralose, including new and more adequate carcinogenic bioassay on rats.
Considering that millions of people are likely exposed, follow-up studies are urgent."
CSPI explained that the only other long-term feeding studies conducted on Splenda were conducted by its manufacturer. The new study, they said:2
" … [I]s more powerful than the industry-funded studies, which tested fewer animals, started exposing the animals beginning at adolescence as opposed to in utero, and ended earlier in the animals' lives."
After more than a decade, CSPI has finally gotten it right about Splenda in recommending that consumers avoid it. For the record, however, CSPI is generally an organization whose guidelines need to be taken with a grain of salt.
For instance, while recommending that people avoid artificial sweeteners like sucralose, aspartame and saccharin, they still consider drinking diet soda to be safer than drinking regular soda. 

Splenda Is Found in 4,500 Products

If you'd like to heed the warnings and cut Splenda from your diet, be aware that it's found in more than 4,500 products. Splenda has been smartly marketed, and it's most known for its tag line "made from sugar so it tastes like sugar."
It's earned a reputation for being somehow safer than other artificial sweeteners like aspartame, which is why PepsiCo ditched aspartame in its Diet Pepsi in 2015 and replaced it with none other than Splenda.
Splenda became one of the top-selling artificial sweeteners in the U.S. in a very short period of time. Between 2000 and 2004, the percentage of U.S. households using Splenda products jumped from 3 percent to 20 percent. By 2012, Splenda generated sales of nearly $288 million.3
But make no mistake; Splenda is far from natural, even though it technically does start off as a sugar molecule. In the five-step patented process of making sucralose, three chlorine molecules are added to a sucrose or sugar molecule.
A sucrose molecule is a disaccharide that contains two single sugars bound together: glucose and fructose. The chemical process to make sucralose alters the chemical composition of the sugar so much that it is somehow converted to a fructose-galactose molecule.
This type of sugar molecule does not occur in nature, and therefore your body does not possess the ability to properly metabolize it. As a result of this "unique" biochemical make-up, the manufacturers claim that Splenda is not digested or metabolized by your body, making it have zero calories.
Splenda is supposed to pass right through you. However, the research (which is primarily extrapolated from animal studies) indicates that about 15 percent of sucralose is, in fact, absorbed into your digestive system and ultimately stored in your body.

Splenda May Decimate Your Gut Bacteria

If the potential cancer finding isn't enough to sway you away from this toxic artificial sweetener, be aware that Splenda may wreak havoc on your gut bacteria, which could have an untold number of consequences on your health.
An animal study published in the Journal of Toxicology and Environmental Health, for instance, found that Splenda reduces the amount of beneficial bacteria in rat intestines by 50 percent while also increasing the pH level.
It also affected a glycoprotein that may affect the way certain drugs are metabolized by the body.4 The researchers explained:
"At the end of the 12-wk treatment period, the numbers of total anaerobes, bifidobacteria, lactobacilli, Bacteroides, clostridia, and total aerobic bacteria were significantly decreased … Splenda also increased fecal pH
These changes occurred at Splenda dosages that contained sucralose at 1.1 to 11 mg/kg (the U.S. FDA Acceptable Daily Intake for sucralose is 5 mg/kg).
Evidence indicates that a 12-wk administration of Splenda exerted numerous adverse effects, including (1) reduction in beneficial fecal microflora, (2) increased fecal pH, and (3) enhanced expression levels of P-gp, CYP3A4, and CYP2D1, which are known to limit the bioavailability of orally administered drugs."

Splenda May Have Neurotoxic Effects and Is Found in Water

Research published in 2014 detailed Splenda's oxidative effects and suggested the sweetener may have neurotoxic properties. 
The researchers, who assessed the effects of sucralose on water fleas, concluded that: "exposure to sucralose may induce neurological and oxidative mechanisms with potentially important consequences for animal behavior and physiology."5
The enzyme acetylcholinesterase is found in all animals, and for researchers looking for possible effects that artificial sweeteners like Splenda might have on animals and humans, this new information was disturbing. 
If for no other reason, that’s why it’s so important to find out the consequences of Splenda exposure sooner rather than later, as the chemicals have already been detected in municipal effluents and surface waters in both the U.S. and Europe.6

Splenda Raises Your Insulin Levels

Far from being an inert substance, research also shows that Splenda affects your body's insulin response. When study participants drank a Splenda-sweetened beverage, their insulin levels rose about 20 percent higher than when they consumed only water prior to taking a glucose-challenge test.7
Blood sugar levels also peaked at a higher level, "So the artificial sweetener was related to an enhanced blood insulin and glucose response," researchers noted, adding:8
"Although we found that sucralose affects the glucose and insulin response to glucose ingestion, we don't know the mechanism responsible. We have shown that sucralose is having an effect. In obese people without diabetes, we have shown sucralose is more than just something sweet that you put into your mouth with no other consequences.
What these all mean for daily life scenarios is still unknown, but our findings are stressing the need for more studies. Whether these acute effects of sucralose will influence how our bodies handle sugar in the long term is something we need to know."






Artificial Sweeteners Confuse Your Metabolism 

When you eat something sweet, your brain releases dopamine, which activates your brain's reward center. The appetite-regulating hormone leptin is also released, which eventually informs your brain that you are "full" once a certain amount of calories have been ingested. 
However, when you consume something that tastes sweet but doesn't contain any calories, like an artificial sweetener, your brain's pleasure pathway still gets activated by the sweet taste. However, there's nothing to deactivate it since the calories never arrive. 
Artificial sweeteners basically trick your body into thinking that it's going to receive sugar (calories), but when the sugar doesn't come your body continues to signal that it needs more, which results in carb cravings. 
Contrary to industry claims, research over the last 30 years — including several large-scale prospective cohort studies — has shown that artificial sweeteners stimulate appetite, increase cravings for carbs, and produce a variety of metabolic dysfunctions that promote fat storage and weight gain — often to the researchers' great surprise.
For instance, a 2010 review published in the Yale Journal of Biology and Medicine revealed the correlation between increased usage of artificial sweeteners in food and drinks and the corresponding rise in obesity. More than 11,650 children aged 9 to 14 were included in this study. Each daily serving of diet beverage was associated with a body mass index (BMI) increase of 0.16 kg/m2.
You can see the trends for yourself in the Yale Journal of Biology and Medicine graphic below, which clearly refutes the beverage industry's claims that artificially sweetened diet soda aids weight loss. 

Are There Safer Artificial Sweeteners?

I recommend avoiding artificial sweeteners of any kind, as each is linked with its own risks. Aspartame is perhaps the most dangerous of the bunch. At least it's one of the most widely used and has the most reports of adverse effects. There are also hundreds of scientific studies demonstrating its harmful effects.
Sugar alcohols are another option on the market. They can be identified by the commonality of "ol" at the end of their name, such as xylitol glucitol, sorbitol, maltitol, mannitol, glycerol, and lactitol. They're not as sweet as sugar, and they do contain fewer calories, but they're not calorie-free. So don't get confused by the "sugar-free" label on foods containing these sweeteners. 
One reason that sugar alcohols provide fewer calories than sugar is because they're not completely absorbed into your body. Because of this, eating too many foods containing sugar alcohols can lead to abdominal gas and diarrhea. It's also worth noting that maltitol, a commonly used sugar alcohol, spikes blood sugar almost as much as a starchy new potato.
Xylitol, in comparison, does not have a great effect on your blood sugar, so from that perspective it may be a better choice. In moderation, some sugar alcohols can be a better choice than artificial sweeteners like Splenda and aspartame. Of the various sugar alcohols, xylitol is one of the best. When it is pure, the potential side effects are minimal, and it actually comes with some benefits such as fighting tooth decay.
All in all, I would say that xylitol is reasonably safe, and potentially even a mildly beneficial sweetener. As a side note, xylitol is toxic to dogs and some other animals, so be sure to keep it out of reach of your family pets.)
That being said, two of the best natural sugar substitutes are from the plant kingdom: Stevia and Luo Han Guo (also spelled Luo Han Kuo). Stevia, a highly sweet herb derived from the leaf of the South American stevia plant, is sold as a supplement. It's completely safe in its natural form and can be used to sweeten most dishes and drinks.
Luo Han Kuo is similar to Stevia, but it's a bit more expensive and harder to find. In China, the Luo Han fruit has been used as a sweetener for centuries, and it's about 200 times sweeter than sugar.

How to Break Free From Artificial Sweeteners

The best option of all is to break free from the grip of artificial sweeteners, which starts by eliminating your sugar cravings. If you aren't craving something sweet, you probably won't have a desire to reach for an artificial sweetener.
First, I highly recommend trying an energy psychology technique called Turbo Tapping, which has helped many "soda addicts" kick their habit, and it should work for any type of sweet craving (or diet soda craving) you may have. A few other tricks to try to kick your sugar cravings:
  • Exercise: Anyone who exercises intensely on a regular basis will know that significant amounts of cardiovascular exercise is one of the best "cures" for food cravings. It always amazes me how my appetite, especially for sweets, dramatically decreases after a good workout. 
  • I believe the mechanism is related to the dramatic reduction in insulin levels that occurs after exercise. Additionally, if you do eat sugars or fruits around the time of the exercise, your sugar levels will not rise as it will metabolized for fuel
  • Organic, black coffee: Coffee is a potent opioid receptor antagonist, and contains compounds such as cafestrol — found plentifully in both caffeinated and decaffeinated coffee — which can bind to your opioid receptors, occupy them and essentially block your addiction to other opioid-releasing food.9,10 This may profoundly reduce the addictive power of other substances, such as sugar.
  • Sour taste, such as that from cultured vegetables, helps to reduce sweet cravings, too. This is doubly beneficial, as fermented vegetables also promote gut health. You can also try adding lemon or lime juice to your water.




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Aspartame Is, By Far, The Most Dangerous Substance On The Market That Is Added To Foods






Aspartame is the technical name for the brand names NutraSweet, Equal, Spoonful, and Equal-Measure. It was discovered by accident in 1965 when James Schlatter, a chemist of G.D. Searle Company, was testing an anti-ulcer drug.
What you don't know WILL hurt you. Find out the dangerous effects of artificial sweeteners to your health.Aspartame was approved for dry goods in 1981 and for carbonated beverages in 1983. It was originally approved for dry goods on July 26, 1974, but objections filed by neuroscience researcher Dr. John W. Olney and consumer attorney James Turner in August 1974, as well as investigations of G.D. Searle's research practices caused the U.S. Food and Drug Administration (FDA) to put approval of aspartame on hold (December 5, 1974). In 1985, Monsanto purchased G.D. Searle and made Searle Pharmaceuticals and The NutraSweet Company separate subsidiaries.



Aspartame accounts for over 75 percent of the adverse reactions to food additives reported to the FDA. Many of these reactions are very serious, including seizures and death. A few of the 90 different documented symptoms listed in the report as part of aspartame dangers are: 
Headaches/
migraines
DizzinessSeizuresNauseaNumbness
Muscle spasmsWeight gainRashesDepressionFatigue
IrritabilityTachycardiaInsomniaVision problemsHearing loss
Heart palpitationsBreathing difficultiesAnxiety attacksSlurred speechLoss of taste
TinnitusVertigoMemory lossJoint pain

According to researchers and physicians studying the adverse effects of aspartame, the following chronic illnesses can be triggered or worsened by ingesting of aspartame: 
Brain tumorsMultiple sclerosisEpilepsyChronic fatigue syndromeParkinson's disease
Alzheimer'sMental retardationLymphomaBirth defectsFibromyalgia
Diabetes

Aspartame is made up of three chemicals: aspartic acid, phenylalanine, and methanol. The book Prescription for Nutritional Healing, by James and Phyllis Balch lists aspartame under the category of "chemical poison." As you shall see, that is exactly what it is.

What Is Aspartame Made Of?

Aspartic Acid (40 percent of Aspartame)

Dr. Russell L. Blaylock, a professor of neurosurgery at the Medical University of Mississippi, recently published a book thoroughly detailing the damage that is caused by the ingestion of excessive aspartic acid from aspartame. Blaylock makes use of almost 500 scientific references to show how excess free excitatory amino acids such as aspartic acid and glutamic acid (about 99 percent of monosodium glutamate or MSG is glutamic acid) in our food supply are causing serious chronic neurological disorders and a myriad of other acute symptoms.

How Aspartate (and Glutamate) Cause Damage

aspartateAspartate and glutamate act as neurotransmitters in the brain by facilitating the transmission of information from neuron to neuron. Too much aspartate or glutamate in the brain kills certain neurons by allowing the influx of too much calcium into the cells. This influx triggers excessive amounts of free radicals, which kill the cells. The neural cell damage that can be caused by excessive aspartate and glutamate is why they are referred to as "excitotoxins." They "excite" or stimulate the neural cells to death.

Aspartic acid is an amino acid. Taken in its free form (unbound to proteins), it significantly raises the blood plasma level of aspartate and glutamate. The excess aspartate and glutamate in the blood plasma shortly after ingesting aspartame or products with free glutamic acid (glutamate precursor) leads to a high level of those neurotransmitters in certain areas of the brain.
The blood brain barrier (BBB), which normally protects the brain from excess glutamate and aspartate as well as toxins, 1) is not fully developed during childhood, 2) does not fully protect all areas of the brain, 3) is damaged by numerous chronic and acute conditions, and 4) allows seepage of excess glutamate and aspartate into the brain even when intact.
The excess glutamate and aspartate slowly begin to destroy neurons. The large majority (75 percent or more) of neural cells in a particular area of the brain are killed before any clinical symptoms of a chronic illness are noticed. A few of the many chronic illnesses that have been shown to be contributed to by long-term exposure to excitatory amino acid damage include:
Multiple sclerosis (MS)Parkinson's disease
ALSHypoglycemia
Memory lossAIDS
Hormonal problemsDementia
EpilepsyBrain lesions
Alzheimer's diseaseNeuroendocrine disorders
aspartame effect
The risk to infants, children, pregnant women, the elderly and persons with certain chronic health problems from excitotoxins are great. Even the Federation of American Societies for Experimental Biology (FASEB), which usually understates problems and mimics the FDA party-line, recently stated in a review that glutamic acid should be avoided by women of childbearing age.

Aspartic acid from aspartame has the same deleterious effects on the body as glutamic acid isolated from it's naturally protein-bound state, causing it to become a neurotoxin instead of a non-essential amino acid.
Aspartame in diet sodas, or aspartame in other liquid form are absorbed more quickly and have been shown to spike plasma levels of aspartic acid.
The exact mechanism of acute reactions to excess free glutamate and aspartate is currently being debated. As reported to the FDA, those reactions include:
Headaches/migrainesFatigue (blocks sufficient glucose entry into brain)Anxiety attacks
NauseaSleep problemsDepression
Abdominal painsVision problemsAsthma/chest tightness

One common complaint of persons suffering from the effect of aspartame is memory loss. Ironically, in 1987, G.D. Searle, the manufacturer of aspartame, undertook a search for a drug to combat memory loss caused by excitatory amino acid damage. Blaylock is one of many scientists and physicians who are concerned about excitatory amino acid damage caused by ingestion of aspartame and MSG.
A few of the many experts who have spoken out against the damage being caused by aspartate and glutamate include Adrienne Samuels, Ph.D., an experimental psychologist specializing in research design. Another is Olney, a professor in the department of psychiatry, School of Medicine, Washington University, a neuroscientist and researcher, and one of the world's foremost authorities on excitotoxins. (He informed Searle in 1971 that aspartic acid caused holes in the brains of mice.)

Phenylalanine (50 percent of aspartame)

Don't let artificial sweeteners fool you! Order now and find out the risks of using aspartame.Phenylalanine is an amino acid normally found in the brain. Persons with the genetic disorder phenylketonuria (PKU) cannot metabolize phenylalanine. This leads to dangerously high levels of phenylalanine in the brain (sometimes lethal). It has been shown that ingesting aspartame, especially along with carbohydrates, can lead to excess levels of phenylalanine in the brain even in persons who do not have PKU.
This is not just a theory, as many people who have eaten large amounts of aspartame over a long period of time and do not have PKU have been shown to have excessive levels of phenylalanine in the blood. Excessive levels of phenylalanine in the brain can cause the levels of serotonin in the brain to decrease, leading to emotional disorders such as depression. It was shown in human testing that phenylalanine levels of the blood were increased significantly in human subjects who chronically used aspartame.
Even a single use of aspartame raised the blood phenylalanine levels. In his testimony before the U.S. Congress, Dr. Louis J. Elsas showed that high blood phenylalanine can be concentrated in parts of the brain and is especially dangerous for infants and fetuses. He also showed that phenylalanine is metabolized much more efficiently by rodents than by humans.
One account of a case of extremely high phenylalanine levels caused by aspartame was recently published by the Wednesday Journal in an article titled "An Aspartame Nightmare." John Cook began drinking six to eight diet drinks every day. His symptoms started out as memory loss and frequent headaches. He began to crave more aspartame-sweetened drinks. His condition deteriorated so much that he experienced wide mood swings and violent rages. Even though he did not suffer from PKU, a blood test revealed a phenylalanine level of 80 mg/dl. He also showed abnormal brain function and brain damage. After he kicked his aspartame habit, his symptoms improved dramatically.
As Blaylock points out in his book, early studies measuring phenylalanine buildup in the brain were flawed. Investigators who measured specific brain regions and not the average throughout the brain notice significant rises in phenylalanine levels. Specifically the hypothalamus, medulla oblongata, and corpus striatum areas of the brain had the largest increases in phenylalanine. Blaylock goes on to point out that excessive buildup of phenylalanine in the brain can cause schizophrenia or make one more susceptible to seizures.
Therefore, long-term, excessive use of aspartame may provide a boost to sales of serotonin reuptake inhibitors such as Prozac and drugs to control schizophrenia and seizures.

Methanol a.k.a wood alcohol/poison (10 percent of aspartame)

Methanol/wood alcohol is a deadly poison. Some people may remember methanol as the poison that has caused some "skid row" alcoholics to end up blind or dead. Methanol is gradually released in the small intestine when the methyl group of aspartame encounters the enzyme chymotrypsin.
The absorption of methanol into the body is sped up considerably when free methanol is ingested. Free methanol is created from aspartame when it is heated to above 86 Fahrenheit (30 Centigrade). This would occur when aspartame-containing product is improperly stored or when it is heated (e.g. as part of a "food" product such as Jello).
methanolMethanol breaks down into formaldehyde in the body. Formaldehyde is a deadly neurotoxin. An EPA assessment of methanol states that methanol "is considered a cumulative poison due to the low rate of excretion once it is absorbed. In the body, methanol is oxidized to formaldehyde." They recommend a limit of consumption of 7.8 mg/day. A one-liter (approx. 1 quart) aspartame-sweetened beverage contains about 56 mg of methanol. Heavy users of aspartame-containing products consume as much as 250 mg of methanol daily or 32 times the EPA limit.
Symptoms from methanol poisoning include headaches, ear buzzing, dizziness, nausea, gastrointestinal disturbances, weakness, vertigo, chills, memory lapses, numbness and shooting pains in the extremities, behavioral disturbances, and neuritis. The most well known problems from methanol poisoning are vision problems including misty vision, progressive contraction of visual fields, blurring of vision, obscuration of vision, retinal damage, and blindness. Formaldehyde is a known carcinogen, causes retinal damage, interferes with DNA replication and causes birth defects.
Due to the lack of a couple of key enzymes, humans are many times more sensitive to the toxic effects of methanol than animals. Therefore, tests of aspartame or methanol on animals do not accurately reflect the danger for humans. As pointed out by Dr. Woodrow C. Monte, director of the food science and nutrition laboratory at Arizona State University: "There are no human or mammalian studies to evaluate the possible mutagenic, teratogenic or carcinogenic effects of chronic administration of methyl alcohol."
He was so concerned about the unresolved safety issues that he filed suit with the FDA requesting a hearing to address these issues. He asked the FDA to:
"...[S]low down on this soft drink issue long enough to answer some of the important questions. It's not fair that you are leaving the full burden of proof on the few of us who are concerned and have such limited resources. You must remember that you are the American public's last defense. Once you allow usage (of aspartame) there is literally nothing I or my colleagues can do to reverse the course. Aspartame will then join saccharin, the sulfiting agents, and God knows how many other questionable compounds enjoined to insult the human constitution with governmental approval."
Shortly thereafter, the Commissioner of the FDA, Arthur Hull Hayes, Jr., approved the use of aspartame in carbonated beverage. He then left for a position with G.D. Searle's public relations firm.
It has been pointed out that some fruit juices and alcoholic beverages contain small amounts of methanol. It is important to remember, however, that methanol never appears alone. In every case, ethanol is present, usually in much higher amounts. Ethanol is an antidote for methanol toxicity in humans. The troops of Desert Storm were "treated" to large amounts of aspartame-sweetened beverages, which had been heated to over 86 degrees F in the Saudi Arabian sun. Many of them returned home with numerous disorders similar to what has been seen in persons who have been chemically poisoned by formaldehyde. The free methanol in the beverages may have been a contributing factor in these illnesses. Other breakdown products of aspartame such as DKP (discussed below) may also have been a factor.
In a 1993 act that can only be described as "unconscionable," the FDA approved aspartame as an ingredient in numerous food items that would always be heated to above 86 degree F (30 degree C).

Diketopiperazine (DKP)

DKP is a byproduct of aspartame metabolism. DKP has been implicated in the occurrence of brain tumors. Olney noticed that DKP, when nitrosated in the gut, produced a compound that was similar to N-nitrosourea, a powerful brain tumor causing chemical. Some authors have said that DKP is produced after aspartame ingestion. I am not sure if that is correct. It is definitely true that DKP is formed in liquid aspartame-containing products during prolonged storage.
G.D. Searle conducted animal experiments on the safety of DKP. The FDA found numerous experimental errors occurred, including "clerical errors, mixed-up animals, animals not getting drugs they were supposed to get, pathological specimens lost because of improper handling," and many other errors. These sloppy laboratory procedures may explain why both the test and control animals had 16 times more brain tumors than would be expected in experiments of this length.
In an ironic twist, shortly after these experimental errors were discovered, the FDA used guidelines recommended by G.D. Searle to develop the industry-wide FDA standards for good laboratory practices.
DKP has also been implicated as a cause of uterine polyps and changes in blood cholesterol by FDA Toxicologist Dr. Jacqueline Verrett in her testimony before the U.S. Senate.





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