Showing posts with label HFCS. Show all posts
Showing posts with label HFCS. Show all posts

The Truth About High Fructose Corn Syrup

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One of the best and most immediate things we can do for our health is to eliminate high fructose corn syrup (HFCS) from our diet. This is easier said than done, as it is ubiquitous to the Standard American Diet (SAD). Next to air, water, and salt, HFCS is the cheapest ingredient in our current food chain. HFCS is found in breads, cereals, breakfast bars, lunch meats, condiments, and much more.

How exactly is HFCS made? Anyone battling a toxic mold exposure should be aware. According to CNN's Eatocracy website:

The corn syrup is made by first steeping kernels of corn in a solution of 122°F-140°F water and a small percentage of sulfur dioxide - to prevent excessive bacterial growth - for 30-40 hours. This hydrates the kernels, more than doubling their size, and breaks gluten bonds down to release starch.

The steeping water, which then contains nutrients as a result of the process, is condensed for use in animal feed and fermentation processes. The kernels are coarsely ground to break the germ down, then spun in cyclone germ separators. First, the germ is pumped onto screens and has the starch washed off it, then it's sent through chemical and mechanical processes to extract corn oil, which is then refined. The germ residue is used in animal feed.

The corn and starch are then sent through a second, more intensive milling process that releases the starch and gluten from the fiber in the kernel. The fiber is screened out, milled again, then piped off to - you guessed it - become animal feed. The starch and gluten that remains is piped off to a starch separator.

In this next centrifuge, gluten and starch separate easily. The gluten is sent off to become, yes, animal feed. The starch is diluted, washed 8-14 times to remove any residual gluten protein, and then rediluted and washed again to produce high quality starch. Some of this starch is dried and sold as unmodified corn starch, and the rest converted into corn syrups and dextrose - also known as D-glucose.

From this humble kernel comes:

Hulls: used for animal feed and scientists are working on new applications for corn fiber oil, patented as "AmaizingOil" and a corn fiber gum, "Zeagen," which could be used as a thickener in culinary and industrial applications

Oil: used for cooking, biodiesel fuel, paint, ink, pharmaceuticals and other products

Protein: used as animal feed or as an herbicide

Starch: used for fabric sizing, surface coating, adhesives, anticaking agents, mold-release agents, dusting powder, thickening agents, "drilling mud" employed to cool down superheated oil drilling bits, dextrose and corn syrups

It's that last one we're after. The starch, in a water suspension, is treated with enzymes - namely alpha-amylase, which is derived from a bacteria - to break down long chemical chains of pure glucose into shorter chains called polysaccharides. Then these shorter chains are treated with an enzyme, glucoamylase - which is derived from a fungus called Aspergillus. This fermentation converts the mixture, or "slurry" into almost pure glucose. If other sugars like maltose are desired, different combinations of enzymes and acids are used, for varying times.

This glucose mixture is then poured over columns containing an enzyme called glucose-isomerase, which converts the pure glucose into a glucose-fructose mixture. This is then distilled to a 90% fructose solution using a process called liquid chromatography.

This higher fructose liquid is then blended back into the original mixture to net out at a solution of 55% fructose and 45% glucose: known in the industry as high fructose corn syrup or HFCS.

Despite the complicated process and high cost of at least one key ingredient - the glucose-isomerase - HFCS is often a cheaper ingredient than sugar for manufacturers, for several reasons. Because it can be produced domestically, it is not subject to the USDA tariffs and quotas that drive up the price of cane sugar. It can also easily be packed into tankers and driven across country. Additionally, corn subsidies to US farmers - $3,975,606,299 in 2009 alone - make corn a cheap and plentiful commodity.

And because of its relative inexpensiveness, high fructose corn syrup is a common sweetening agent in countless packaged foods, from soft drinks and baked goods, to tomato sauce, salad dressings, jellies and ketchup.

That makes for some pretty sweet business for the makers of "corn sugar" – as the Corn Refiners Association is now lobbying the Food and Drug Administration to call the stuff.

To read the article in its entirety as well as participate in a survey regarding your previous knowledge about HFCS, click here.
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Sweetener Summary

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Those with fungal illness must pay particular attention to the sugar issue. Sugar propogates yeast in the body. It's interesting to note that sugar cane is grown in tropical climates. The same conditions where fungus thrives.

What are the best options for sweeteners? What's the difference between cane juice and molasses? How about stevia and NutraSweet? Read on.

The Bad Guys

Refined Sugar

Comes from sugar cane and sugar beets. The sucrose (50/50 mixture of fructose and glucose) is extracted from the plant, leaving virtually no minerals, vitamins, proteins, or fibers. This means there are no alkaline minerals, which further increases acidity in the body. Refined sugar is best avoided at all costs.

High Fructose Corn Syrup

HFCS starts as corn syrup, a liquid sweetener extracted from corn, which is then altered by enzymatic processes to yield a product high in fructose (sometimes as high as 90%). Fructose is more readily metabolized into fat by the liver than glucose.

The use of this syrup has increased by more than 10,000% since 1970, largely because it's more economical. Corn has added GMO and aflatoxin burdens, making HFCS potentially even more toxic to the system.

The Weston A. Price Foundation for Wise Traditions has an excellent article on the dangers of high fructose corn syrup.

Artificial Sweeteners
Aspartame: The phenylalanine in aspartame has been proven to increase dopamine levels in the brain. This can lead to depression, migraines, brain tumors, and more. This proved to be true for our son in the early stages of his migrainous vertigo. I remember an immediate attack from one stick of artificially sweetened chewing gum.

The aspartic acid in aspartame is an excitotoxin. These toxins cause specified brain cells to become excessively excited to the point that they die. In addition, the ester bond in aspartame is broken down to formaldehyde and methanol, both of which have their own toxicities. Because of the clouded perception surrounding this sweetener, it is soon to be marketed as Amino Sweet. For more on this latest initiative, see this article.

Splenda: Splenda is the trade name for sucralose, a synthetic compound discovered in 1976 by scientists in Britain seeking a new pesticide formulation. The Splenda molecule is comprised of sucrose (sugar)--however, three of the hydroxyl groups in the molecule have been replaced by three chlorine atoms. See this article for more information.

The Better Guys

Unrefined Sugar

Is made by evaporating the water from whole sugar cane juice. Not to be confused with brown sugar, which is white sugar with some molasses added, unrefined sugar has nutritional content such as phosphorus, chromium, and calcium. Several food producers are aware of the public's concern with sugar and now use "dried cane juice" or "cane juice," which can be just as refined. Be sure to choose unrefined dried cane juice.

Just Like Sugar

This is derived from chicory root. The texture is much like table sugar and therefore can be good in recipes.

Lo Han

Lo Han Kuo is the fruit of Momordica grosvenorii, a plant cultivated in the mountains of southern China. The fruit contains a series of terpene glycosides called "mogrosides." These are up to 300 times as sweet as sucrose. Mogrosides have a licorice-like off-taste. As with stevia, it's important to check ingredients added. It's hard to find in its pure form.

Agave

This is a sweetener derived from the Mexican plant aguamiel. It goes through a heavy refining process yielding as much as 90% fructose. For an in-depth look at agave, see this article.

Rice Syrup

Is made by culturing cooked rice with enzymes (usually from dried barley sprouts) to break down the starches, then straining off the liquid and reducing it by cooking until the desired consistency is reached. The final product is 45% maltose, 3% glucose, and 52% maltotriose. This can be a good option when making granola.

Blackstrap Molasses

There are several types of molasses: unsulphured, sulphured, and blackstrap. The distinctions are based, in part, on how many times it has been boiled during the manufacturing process.

Unsulphured molasses is the least refined. Sulphured molasses is made from green sugar cane that has not matured long enough and treated with sulphur fumes during the sugar extracting process. Blackstrap is made from the third boil. One tablespoon of blackstrap is approximately 46% sucrose. The mineral content includes manganese, copper, iron, potassium, calcium, magnesium, selenium, and vitamin B6. The healthiest version is unsulphered organic blackstrap molasses.

Yacon Syrup

Is derived from the yacon plant in South America. The sugar in this syrup is known as FOS (fructooligosaccharide), a special type of fructose, which according to some researchers has unique benefits in the digestive tract. (Yacon syrup is pictured above in the unmarked jar.)

Maple Syrup

Is 65% sucrose and is produced by tapping maple trees to release their sap. A tree’s sap is the fluid that, much like blood in animals, carries water and food to different parts of the tree to keep it nourished. As with all concentrated sweeteners, the less refined, the better.

Honey

Honey bees convert nectar into honey by a process of regurgitation and store it as a food source in wax honeycombs inside the beehive. Honey is extremely sweet (86% glucose/fructose combination), but offers some health benefits in its raw form.

Stevia

Is perhaps the best option for those with fungal issues. It is a whole herbal food known for its sweet leaves and flower buds. The powdered leaf can be made into an extract by mixing one teaspoon in one cup of water and allowing it to soak overnight. It is a "free" sweetener for diabetics without the risks associated with artificial sweeteners. The clear extracts and white powders are highly refined and less optimal. As with Lo Han, read the label carefully to see that nothing is added. Truvia, for instance, contains erythritol, which is made by fermenting the natural sugar found in corn.

The Good Guys

Fruit in its raw form


This is perhaps the best way to incorporate a sweetener into the diet. The fiber in the fruit slows down the absorption of sugar into the bloodstream, allowing the full benefit of the enzymes and minerals. There are a variety of dried fruits that offer nutrition and sweetness.

Gogi berries, for instance, contain 18 amino acids, 21 trace minerals, linoleic acid, more beta carotene than carrots, vitamins B1, B2, B6, and E, selenium and germanium. Mulberries are an excellent source of vitamin B, vitamin C, vitamin K and iron. They are also a good source of dietary fiber, riboflavin, phosphorus, magnesium and potassium.

Dates and figs have health benefits as well. Higher in fructose (more than 10%), these can be soaked and made into a paste to add to recipes. Like other concentrated sweeteners, these are best if used sparingly.

The Best Guys

Are not sweet guys.

The foods rich in chlorophyll are the fungus fighter's best friends. Reducing the intake of sugars will help these foods taste better and richer.
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