Showing posts with label Sunflower oil. Show all posts
Showing posts with label Sunflower oil. Show all posts

Monday, November 9, 2015

Vegetable oils toxic? Some new findings are spawning a debate

Frying, using edible oils, is one of the most practiced food preparation methods as it gives characteristic aroma, texture and taste that is unmatched compared to other processes. Baking, also requiring specialty fats, is another process that can give hundreds of products, universally liked, though it needs high temperature heating equipment and industrially, bakery industry many be one of the biggest in food processing sector creating a variety of products like bread, biscuits, pastries etc. While baking is based more or less on wheat and its unique protein Gluten, frying has the advantage of using any raw material including cereals, pulses, vegetables, fruits, meat, fish and their combinations. Frying needs an oil which requires to be heated to temperatures varying from 160 C to 200 C for a few minutes to attain the desirable color and texture depending on the input material. Organoleptically fried food can be quite appealing and often addictive and health and nutrition experts always caution against its regular consumption that too in larger quantities because of its contribution to the obesity epidemic that is becoming a scourge in most countries causing diseases like diabetes, cardiac malfunctioning, hypertension and a host of others. Experts agree that calories derived from fat, both direct and indirect, should not exceed 30% of the total calories consumed in a typically normal diet working out to about an upper limit of 50 gm daily per capita.

While in the organized fried food manufacturing sector big capacity continuous fryers are used containing high volume of the frying oil, small and unorganized players use batch fryers with or without any temperature control. But invariably the oil is subjected to continuous heating for getting large quantities of products for supplying to the market. In house holds however the fryers, mostly shallow stainless steel pans, are used once or twice a week though the oil is repeatedly reused after each frying operation with occasional topping up. Usually frying oils are rarely thrown away unless it becomes too dark or sticky. There is no unanimity among scientists whether continuous heating does more damage than intermittent heating but all tend to agree that there will be heat damage to the oil to varying extent, depending on the chemical nature of the one used. More the degree of unsaturation in the fatty acid molecules higher will be the extent of damage. Higher temperatures and longer duration of frying can cause extensive damage, decomposition and interaction among the artifacts generated.

What will be the implications of damage to the oil, besides developing flavor problems to the products fried repeatedly in such oils? A matter of much concern is the effects of such oil damage to the human health. Till recently, frying industry was more concerned about oil damage because of loss of quality in the product besides economic losses incurred due to discarding of precious oil once it fails to meet the mandatory standards after repeated and long duration heating. As edible oils are made of organic chemical substances, mainly fatty triglycerides, they have their typical smoke point and flash point in terms of characteristic temperatures beyond which they decompose rapidly into hundreds of artifacts some of which are considered injurious to health. Among them aldehydic lipid oxidation products are considered highly hazardous to humans whether they are inhaled or consumed orally through foods. If so, those using oils vulnerable to generate toxic aldehydes during frying can be dangerous to both consumers as well as to the workers involved in the factories as the latter is exposed to volatile aldehydes continuously during the manufacturing operations.  .          

Toxic aldehydes like 4-hydroxy-(E)2 nonenal, 4-oxo-(E)-2 decenal and 4-oxo-(E)-undecenal, derived from alpha, beta unsaturated fats have been linked to many types of cancer and neurodegenerative diseases like Alzheimer's and Parkinson;s. These aldehydes, being highly reactive can combines with tissue proteins, enzymes and hormones affecting the functioning of many organs in the human body. It is because of this reason that fried foods made from oils with high amounts of alpha, beta poly unsaturated fatty acids are fraught with high risks for human consumption. According to available data which are rather limited in this area of concern, some of the frying oils found to be relatively safe are coconut oil, virgin olive oil, butter, lard and palm oil all of which contain predominantly saturated fatty acid triglycerides. It is interesting that oil derived from sunflower seeds happened to the worst performer, mostly attributed to the presence of more than 82% of unsaturated fatty acid triglycerides yielding toxic aldehydes at levels much higher than that recommended by the WHO to be safe.   

According to some findings by scientists, a typical meal of fish and chips fried in vegetable oils contained 100 to 200 times more toxic aldehydes than the safe limit set by the WHO and the consumption such products regularly can lead to serious consequences to the brain functions in the long term. Some even compare such disastrous changes in human brains to the adverse climate changes the world is facing to day. How far such comparisons are realistic is a matter of debate though it definitely raises alarm among health experts who feel that more intense studies are required to be undertaken to unravel the mysteries of toxic aldehydes. One is troubled by the report that Sunflower oil is the oil targeted in these studies and the rationale is that it contains high levels of unsaturated fatty acids (UFAs), to the extent of 91%. If so what about oils like olive oil which is found to be a safe cooking oil though it contains 84% unsaturated fatty acids. How about other oils like mustardc oil (81% UFA), or peanut oil (82% UFA) ? Here again does the nature of UFA make any difference in generating toxic aldehydes during heating? No one knows for sure whether extent of MUFA or PUFA  or their ratio in these oils determine the dynamics of toxic aldehyde formation. Also not clear is whether unprocessed vegetable oils containing many natural antioxidants and bioactive phytochemicals can generate toxic substances on being used as frying oils. A note worthy fact in the Olive oil experiment is that the scientists used virgin olive oil which is valued very much for its unique flavor profile to say it is a good frying oil which again raises the question regarding the role of natural antioxidants present in virgin oil compared to its processed counterpart.

While earlier studies used simulating experiments and model systems to find out the formation of toxic chemicals in frying oil at high temperatures for duration as long as 20-40 hours, some recent studies confirmed that even a few minutes exposure to frying temperatures would be sufficient to create sufficient levels of toxic chemicals when oils like Sunflower oil is used. A logical question that arises out of these studies is the influence of antioxidants and other oil protectants like scavengers of polar compounds added to frying oils by the processing industry on generation of toxic substances. Unfortunately no data seem to be existing to verify this crucial issue. On the face of it the recommendation that coconut oil is the best frying oil may be note worthy, especially when frying is done in households or restaurants using non stabilized frying oils. Also to be borne in mind is that unless more emphatic studies by divergent group of lipid scientists confirm these stray findings, all vegetable oils should not be condemned as unsafe for frying.

V.H.POTTY
http://vhpotty.blogspot.com
http://foodtechupdates.blogspot.com

Sunday, July 24, 2011

OMEGA-9 PLANT OILS FOR INDUSTRY-IS IT A DESIRABLE DEVELOPMENT?

Oils and fats evoke different response in different people. Policy makers world over feel fats in foods consumed by citizens make them obese and sick. Food industry and the caterers love them because oils provide flavor, texture and taste that drive customers in droves to buy their products. Nutritionists advice a balanced approach where good fats are consumed in moderation while bad fats totally avoided. On the subject of bad and good fats, most consumers are now aware that saturated long chain fatty acids and trans fats are not good for health while unsaturated fats are essential for survival. Industry has problems in using unsaturated fats because of their intrinsic property of going rancid with time.
Hydrogenation was conceived as a convenient way of stabilizing fats with double bonds so that they are not vulnerable to oxidative rancidity. Industry further discovered that hydrogenated fats assume harder texture with positive functional properties. The baking industry was once dependent on hydrogenated fats to such an extent that no baked products could be made with acceptable quality characteristics without deploying them in liberal quantities. Products like margarine and mayonnaise need hydrogenated fats and the arrival of trans fats problem had caused some set back to this industry. It is another matter that this industry was able to overcome this constraint through innovative developments in fat processing technology.
As for use of various fats for frying operation, animal fat was considered most suitable with least cost as it is a by-product of meat industry. To the bad luck of the frying industry, animal fats became the "untouchable" villain because of its cholesterol content, implicated in heart disease in humans. As almost all plant oils are unstable to heat and vulnerable to peroxidation due to their unsaturated fat content, search for better frying oils and frying technologies assumed critical importance in the past millennium. Coconut oil and Palm oil are two of the most important vegetable oils with high resistance to oxidation and rancidity as they contain relatively low levels of unsaturated fats. Use of antioxidants and minerals with high adsorption capacity for polar compounds in the frying medium, has become industry standard as far as frying oil is concerned and millions of tons of fried foods are being made using almost all oils of plant origin like soybean oil, canola, peanut oil, mustard oil, corn oil, sun flower seed oil, etc.with reasonable product stability.
Sunflower oil normally has high linoleic acid content and as such its thermal and oxidation stability is rather poor because of which it is not an ideal frying oil. Through development of better seeds by the agricultural scientists, high oleic acid containing sun flower oil is possible and same is true with Canola also. The omega-9 sunflower and canola oils are better frying oils because the tendency to form trans fats at high temperatures, encountered during frying, is arrested. Of course these versions developed by giant trans national companies are patent protected creating a virtual monopoly. It is claimed that Omega-9 sunflower oil is healthier than natural oil but such claims cannot be sustained because linoleic acid is one of the essential fatty acids required for many body functions and producing an oil with less linoleic acid from the natural oil with high levels of linoleic acid, cannot be called an improvement.
Probably availability of Omega-9 Sunflower Oil may make many food companies reduce or eliminate saturated fat from new front-of-pack labels and within a couple of years such products can be expected to be on retail shelves in countries like the US. Market savvy consumer food business players have realized that the consumers invariably prefer a saturated fat free label claim on a retail bottle of oil five to one over the same product labeled without the claim. The development of Omega-9 oil is precisely targeted at this segment of the industry. However the claim that this version of oil is natural may be some what far-fetched considering that truly natural Sunflower oil contains almost 65% polyunsaturated fatty acids including linoleic acid and is far more nutritious than the industry developed Omega-9 oil in which the same is reduced to less than 4%!. It may be possible that use of Omega-9 oil can reduce the quantity of TBHQ or other antioxidants to some extent but to say that it does not require any antioxidant to extend the life of fry oil or that of the fried products also may not bear strict scientific scrutiny.
V.H.POTTY
http://vhpotty.blogspot.com/
http://foodtechupdates.blogspot.com