Showing posts with label Lose Fat. Show all posts
Showing posts with label Lose Fat. Show all posts

Wednesday, August 12, 2015

Does Protein Make You Fat? by Jerry Brainum

Self-styled experts often attribute various side effects to long-term high-protein diets—dehydration, calcium and bone loss, kidney disease and even increased bodyfat. The latter is based on the fact that protein contains calories, and taking in too many calories inevitably leads to gaining bodyfat.

A gram of protein contains four calories, the same as a gram of carbohydrate. Fat is the most concentrated source of calories at 9 1/2 per gram, but according to many nutrition pundits, that doesn’t matter. It makes no difference if you focus on a particular macronutrient—protein, fat or carb; if you consume more calories than you burn as energy, the excess will be stored as bodyfat.


Low-carb-diet proponents vigorously object to what they consider to be an oversimplification. It’s more than just a case of excess calories causing excess bodyfat, they say. There is also a hormonal interaction, namely insulin.

Insulin is indeed the most fattening hormone in the body. Whenever it is secreted, fat is either being maintained or synthesized. Among other functions, insulin blocks the activity of various enzymes that are involved in fat mobilization from fat cells as well as the actual oxidation, or burning, of fat.

Because of that, having a simple carbohydrate—a high-glycemic-index carb—prior to training will block the use of fat as fuel due to the higher insulin release that results. That effect lasts for an average of four hours after the high-carb meal is eaten. The general recommendation is that if you consume any carb prior to training, it should be from a low-glycemic-index source, which will cause less of an insulin release and promote more fat burning.

Even so, the low-carb devotees go further, claiming that calories are less important than carb intake for losing bodyfat. As evidence, they point to published studies that found more fat loss in people who ate low-carb diets than those who ate more carbs, even when the diets contained the identical number of calories. Low-carb diets not only control the harmful effects of insulin but also produce a higher thermic effect after meals. “Thermic,” or “thermogenic,” effect refers to the dissipation of consumed calories into heat. It’s also known as futile energy cycles, since no work is done to dissipate the calories.

Critics of low-carb regimens call this “metabolic magic”—meaning nonsense. A calorie is a calorie is a calorie, they say, and when it comes to ultimate fat loss, how many calories you take in compared to how many you burn is the ultimate arbiter. As evidence, they produce studies showing that while low-carb diets do tend to bring more rapid and greater rates of fat loss initially, as time goes on, it evens out. At the end of a year the fat-loss rate for low-carb diets and other diets is about the same, assuming that they contained the same number of total calories. The naysayers hold that insulin alone cannot make you fat unless you take in an overabundance of calories.

Then there is the protein issue. One of the established tenets of low-carbohydrate regimens is that you must increase your protein. It’s based on a number of established roles of protein in the body. For one thing, a higher protein intake is known to help maintain lean mass, mainly muscle.

Critics of low-carb diets like to point out that the body requires a certain amount of carbohydrate to function properly, an assertion that is not based in science. In fact, there is no established carbohydrate requirement. One reason is that other substances can be converted in the body to the main carbohydrate it uses—glucose. As such, lactate, glycerol from fat and amino acids from protein can all be converted into glucose in the liver. Consequently, carbs are not essential.

All that said, you don’t want to avoid carbs all the time. In some cases they offer definite advantages, such as for those engaged in endurance sports or training. A minimal amount of carb also plays a role in anabolic recovery processes following training, a key reason that you should never consider a zero-carb diet.

The low-carb diet features a higher protein intake because the excess protein helps to spare muscle that might otherwise be degraded for energy. The branched-chain amino acids are particularly effective in that regard. Other reasons for taking in more protein as your calories or carbs drop is to help control appetite, since protein helps you feel full when you’re dieting. Eating more protein also appears to maintain the resting metabolic rate, which ensures optimal fat loss.

What about the notion that taking in too much protein can make you fat? The pragmatic experience of generations of bodybuilders disputes it. While the suggested optimal intake of protein for bodybuilders is 1.7 grams per kilogram—2.2 pounds—of bodyweight, in actual practice most bodybuilders get far more than that. Considering the ubiquitous presence of protein in meat, chicken, turkey, eggs, milk and so on, along with the generous intake of protein supplements and meal-replacement powders, it’s not that difficult for many bodybuilders to take in two to three times more than the recommended dose of protein.

If, in fact, protein was as fattening as some people assert, bodybuilders who eat that much would look like walking versions of the Goodyear blimp. Clearly, they do not. Plus, bodybuilders are nutritionally savvy enough to boost their protein during dieting conditions—which also should be hindering their fat loss but clearly does not. Even people who don’t engage in weight training often eat more protein than they need, yet they rarely, if ever, get fat—unless they eat too many carbs and calories along with the protein.

How can that be? For one thing, the usual fate of ingested protein differs between inactive and active people. In active people excess protein undergoes metabolic changes in which the nitrogen portion is removed and excreted as urea. What about the calories? In active people the excess calories in protein are oxidized in the liver and not stored as fat.

While there is an outside chance that excess protein can wind up as fat in sedentary folks, in reality, they also have to be overeating carbs and calories in relationship to their activity levels. That was shown in a recent highly publicized study published in the prestigious Journal of the American Medical Association.1

Twenty-five healthy men and women, aged 18 to 35, all of whom were overweight to varying degrees, stayed in a metabolic unit in a research lab for 10 to 12 weeks. First, they ate a “weight-stabilizing” diet—15 percent protein, 25 percent fat and 60 percent carbs— for 13 to 25 days, and during the last eight weeks they were randomly divided into three diet groups:


• 5 percent protein (low protein)

• 15 percent protein (normal protein)

• 25 percent protein (high protein)

It wasn’t just the protein intake that the researchers were looking at, however. All three groups were purposely overfed during the last two months of the study—specifically, they got 40 percent more calories than what they ate on the baseline, or maintenance, diet. The results showed that those in the low-protein group gained less weight than the others, but they also stored 90 percent of their excess calories as fat. The 6.6 percent increase in resting metabolism in the low-protein group was attributed to the metabolic cost of converting the excess calories into bodyfat. In contrast, in the normal and higher protein groups 50 percent of the excess calories were stored as fat. The rest were burned up in a thermogenic reaction.

Another difference was that neither resting energy expenditure or lean body mass increased in the low-protein group, but they did in the normal- and high-protein groups. The excess calories eaten by all three groups were in the form of fat, which contains the greatest concentration of calories. Despite that, the high-protein group had the least amount of excess calories stored as fat, which underscores the effects of that strategy, as discussed above—that is, more calories are dissipated during a higher protein intake.

Based on the results of this study, the authors say that overall calorie intake, not how much protein you eat, is what makes you fat. In addition, it should be noted that the subjects did not exercise but rather remained sedentary in a metabolic lab. Without question, vigorous exercise changes the way nutrients are used in the body. Not only does exercise burn off excess calories, but the muscle gains accrued during weight training will prevent any possibility of excess protein being converted into bodyfat.

—Jerry Brainum

Editor’s note: Have you been ripped off by supplement makers whose products don’t work as advertised? Want to know the truth about them? Check out Natural Anabolics, available at JerryBrainum.com.

1 Bray, G., et al. (2012). Effect of dietary protein content on weight gain, energy expenditure, and body composition during overeating. JAMA. 307;47-55.


©,2015 Jerry Brainum. Any reprinting in any type of media, including electronic and foreign is expressly prohibited

Have you been ripped off  by supplement makers whose products don’t work as advertised? Want to know the truth about them? Check out Jerry Brainum's book Natural Anabolics, available at JerryBrainum.com.

 

The Applied Ergogenics blog is a collection of articles written and published by Jerry Brainum over the past 20 years. These articles have appeared in Muscle and Fitness, Ironman, and other magazines. Many of the posts on the blog are original articles, having appeared here for the first time. For Jerry’s most recent articles, which are far more in depth than anything that appears on this blog site, please subscribe to his Applied Metabolics Newsletter, at www.appliedmetabolics.com. This newsletter, which is more correctly referred to as a monthly e-book, since its average length is 35 to 40 pages, contains the latest findings about nutrition, exercise science, fat-loss, anti-aging, ergogenic aids, food supplements, and other topics. For 33 cents a day you get the benefit of Jerry’s 53 years of writing and intense study of all matters pertaining to fitness,health, bodybuilding, and disease prevention.

 

See Jerry's book at  http://www.jerrybrainum.com

 

Want more evidence-based information on exercise science, nutrition and food supplements, ergogenic aids, and anti-aging research? Check out Applied Metabolics Newsletter at www.appliedmetabolics.com

 

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Friday, May 8, 2015

Whey: Can It Prevent Obesity and Diabetes? by Jerry Brainum

Some bodybuilders never use protein supplements, preferring instead to get all their protein from food sources, such as meat, fish and eggs. Their view is backed by most mainstream dietitians, who note
that it’s not difficult to get all the protein you need to build muscle just from eating food.

In fact, most people eat more protein than they need. Since protein contains four calories per gram—the same as carbohydrate—it’s possible for those who are sedentary to gain some bodyfat by eating large amounts of protein, especially if they also eat too much fat and carbohydrate. That scenario is unlikely in those who are physically active. Their excess protein is oxidized in the liver, with the nitrogen portion converted into urea and then excreted through the kidneys.

So no one argues that it’s easy to get enough protein from various high-protein foods, but does that mean that additional supplements aren’t necessary? For one thing, most protein foods also contain appreciable amounts of either fat and/or carbohydrate. That is a concern for those seeking to lose bodyfat, since every calorie does count—contrary to what some so-called experts say. With concentrated protein supplements you get a source of high protein minus the excess calories. In addition, some people either won’t or can’t eat several high-protein meals a day. Having a source of protein that they can eat on the go is not just a convenience, it’s a necessity.

In recent years milk proteins have been shown to rate the highest in biological value over other sources, such as meat, soy and even eggs. The two primary proteins in milk are casein, which accounts for 80 percent of milk protein, and whey, which is the remaining 20 percent.

Anyone who has kept up with the research on milk protein knows that the two have different absorption properties. Whey is rapidly absorbed, since it stays in solution during the digestive process. Whey uptake peaks at about 60 minutes after ingestion and then declines to baseline after about 90 minutes. The advantage is that the rapid absorption also favors a speedy release of essential amino acids into the blood and muscle, which encourages muscle protein synthesis, the cornerstone of muscle growth.

In contrast, casein curdles in the stomach after you eat it. It looks like cottage cheese, which is mostly casein. The curdling effect favors a more sustained release of aminos over a period of up to seven hours. Initial research that compared whey and casein found that the rapid uptake and release of essential aminos from whey more reliably stimulated muscle protein synthesis, while the slow release of casein promoted a steady trickle into the blood over a longer time, which favored a blunting of muscle catabolism, or breakdown.

It’s not hard to understand how the properties of the two milk proteins significantly benefit bodybuilding trainees; however, there’s far more to milk protein than being a superior source of amino acids. Research shows that besides casein and whey, there are smaller proteins, known as bioactive peptides, in milk that may provide amazing health benefits. I say may because the research is still in its infancy, and all the data haven’t been collected yet.

The scientific method decrees that a finding must be replicated numerous times and under varied conditions before it’s officially accepted as fact. Thus far, most of the research on milk bioactive peptides has involved animals. The good news is that the same mechanisms that allow them to produce their beneficial effects in animals also exist in the human body.

Bioactive peptides are small chains of amino acids linked in a specific formation. While casein contains some, whey is a powerhouse source. Just a day before I wrote this a new study found that one of those peptides has potent protective effects against cancer. Earlier studies showed that because of whey’s high content of the amino acid cysteine, it can be a precursor of glutathione, a major antioxidant in the body. A form of whey is used to prevent the loss of lean mass in cancer patients and those afflicted with HIV.

More pertinent to bodybuilders is the effect of whey on body composition. The process of digesting and absorbing proteins is energy intensive; that is, it uses calories. In fact, it uses more calories to digest and absorb proteins than either fats or carbs. Calories not used in power movement or muscle function are diverted to heat production, a process known as thermogenesis. That term may be familiar to those who use various “fat-burning” supplements, since nearly all of them work by promoting a thermogenic effect: converting fat calories into heat.

Compared to other proteins, such as casein and soy, whey has a greater thermogenic effect, which is attributed to the rapid protein synthesis it triggers, as mentioned above. The rate of protein synthesis produced by whey is twice that of casein, again because of whey’s rapid release of amino acids. The branched-chain amino acid leucine is considered the key amino in muscle protein synthesis, and whey contains 50 to 75 percent more leucine than other protein sources.

Whey may also aid fat loss through its effect on insulin. Many people are confused about insulin. Some worry that it can trigger excess fat production in the presence of excess calories, especially from carbohydrates, but insulin has other properties that are beneficial. It’s also required for cellular uptake of glucose, the elemental form of sugar in the blood. Without proper insulin function, you would have diabetes. Also on the plus side, insulin is known to favor amino acid uptake in muscle and prevent catabolism. In addition, it stimulates the activity of enzymes that produce glycogen from carbs and other sources. Glycogen is required for full muscle recovery after training and also powers anaerobic training, which includes bodybuilding workouts.

Milk protein is a potent stimulus for insulin release, but it’s not a bad thing. The release is within physiological limits and so does not encourage bodyfat synthesis. One study found that only 20 grams of whey protein stimulated enough insulin release to significantly lower elevated blood glucose. In another involving diabetics—who lack proper insulin activity—the subject were fed meals high in rapidly absorbed and digested carbohydrates, but some also got whey at the same meal. Adding whey to the carb meal led to a 57 percent greater insulin release and a smaller drop in glucose after the meal.

Although it isn’t precisely known how whey favors an insulin release, its amino acid content, particularly the high leucine mentioned above, is a chief suspect. Leucine alone is known to stimulate insulin release in the pancreas through at least two mechanisms, one of which involves a metabolite of leucine.

More recent research shows that whey also affects insulin release by promoting the release of gut peptides known as “incretins.” In one study, consuming a whey drink stimulated an 80 percent greater release of gastric inhibitory peptide, which itself encourages insulin release. Whey also promotes the release of another gut peptide called glucagon-like peptide-1 that encourages insulin release and has the side benefit of curtailing appetite. That may explain how whey helps suppress appetite during a diet. Both of the peptides are degraded in the gut via an enzyme that is blunted by whey protein. Recently, a few drugs that treat diabetes were released, all of which block the same enzyme. Unlike whey, however, the drugs are linked to pancreatitis, an inflammation of the pancreas, as well as possible pancreatic cancer, the most deadly cancer of all.

In relation to appetite, it’s once again the fast amino release induced by whey that produces an appetite-suppressive effect. Studies with animals show that leucine can rapidly enter the brain, where it induces appetite suppression. The mechanism is thought to involve a blunting of the release of appetite-stimulating peptides in the brain. The release of insulin induced by whey also potently depresses appetite, mostly because whey blunts the release of ghrelin, a protein that is the most potent appetite-stimulating substance in the body. Ghrelin rises a few hours after a meal and produces intense hunger sensations. It’s not hard to understand how controlling it would aid dieting efforts.

So the combination of a controlled insulin release, the stimulation of gut peptides that promote insulin and the blunting of proteins in the brain that trigger appetite make whey a valuable asset if you’re looking to build muscle and lose excess bodyfat.

—Jerry Brainum


©,2015 Jerry Brainum. Any reprinting in any type of media, including electronic and foreign is expressly prohibited


Have you been ripped off  by supplement makers whose products don’t work as advertised? Want to know the truth about them? Check out Jerry Brainum's book Natural Anabolics, available at JerryBrainum.com.

 

The Applied Ergogenics blog is a collection of articles written and published by Jerry Brainum over the past 20 years. These articles have appeared in Muscle and Fitness, Ironman, and other magazines. Many of the posts on the blog are original articles, having appeared here for the first time. For Jerry’s most recent articles, which are far more in depth than anything that appears on this blog site, please subscribe to his Applied Metabolics Newsletter, at www.appliedmetabolics.com. This newsletter, which is more correctly referred to as a monthly e-book, since its average length is 35 to 40 pages, contains the latest findings about nutrition, exercise science, fat-loss, anti-aging, ergogenic aids, food supplements, and other topics. For 33 cents a day you get the benefit of Jerry’s 53 years of writing and intense study of all matters pertaining to fitness,health, bodybuilding, and disease prevention.

 

See Jerry's book at  http://www.jerrybrainum.com

 

Want more evidence-based information on exercise science, nutrition and food supplements, ergogenic aids, and anti-aging research? Check out Applied Metabolics Newsletter at www.appliedmetabolics.com

 

  Please share this article on facebook