Creatine: The Next Great Antioxidant?

Muscle damage is a natural consequence of exercise. A small amount of muscle damage is not a terrible thing and, in fact, is necessary to stimulate new muscle growth. If, on the other hand, the amount of damage you inflict upon your muscles with exercise exceeds their capacity to repair and rebuild, then you’re in big trouble. You then have a scenario of net muscle breakdown, otherwise known as catabolism. Situating yourself in a catabolic holding pattern by continually overdoing it in the weight room will eventually lead to overall loses in muscle mass and diminished athletic performance. This article focuses one aspect of overtraining and how to minimize its effects.

Two principal forms of muscle damage arise from physical exertion:

The first is mechanical and occurs immediately. In response to the physical stress of exercise, your muscles and associated capillary beds become slightly damaged. These microscopic foci of damage may then prime a robust phase of increased micro-vascularization and new muscle growth (aka, anabolism). That is, conditions permitting, capillary beds will reform to increase blood flow and new muscle tissue will be laid down to replace damaged tissue. The end result, increased blood flow to larger, more efficiently, working muscles. If, on the other hand, the initial amount of damage is too great or insufficient time is given for your muscles to fully recover from the insult, you will lose strength and mass!

The second form of muscle damage is a downstream consequence of the first and is, in actuality, the initiation of the rebuilding process discussed previously. This form of muscle damage results from reactive molecular species produced in response to strenuous exercise, but that exert their degenerative effects a few days later.

Rising from the ashes …

Following the initial insult of exercise, damaged muscle tissue must be cleared away before rebuilding can commence. This process begins with the leakage of chemical agents from damaged cells that attract specialized cells known as phagocytes (neutrophils and macrophages) to sites of damage. Here, phagocytes accumulate, greatly increase in number, and build an appetite. Next, commences a voracious phase of cell eating, otherwise known as phagocytosis (hence, their name), whereby damaged muscle tissue is literally eaten away. The process of phagocytosis is initiated with the release of agents from macrophages that serve to breakdown, or digest, damaged cells in preparation for absorption. Following the removal of all dead tissue, the stage is then set for new muscle growth. New muscle is formed from the fusion of hundreds of progenitor cells that were previously laying dormant waiting for the appropriate signal to act. From start to finish, this entire process takes about 3-4 days.

Free Radicals

To assist in their removal of dead tissue phagocytes release digestive enzymes, toxins, and, most importantly, Reactive Oxygen Species, or ROS, for short. ROS are produced in the burst of metabolic activity known as a “respiratory burst“. One of the most powerful of ROS produced by phagocytes is the Superoxide Radical. Superoxide greatly weakens the integrity of the muscle membrane causing small tears that allow calcium ions to leak into the muscle cell. It is a rise in intramuscular calcium that activates a class of enzyme known as proteases that cause the muscle cell to disintegrate. Obviously, a small amount of superoxide plays an essential role in the absorption of damaged cells. On the other hand, overproduction of superoxide surpasses its usefulness and can actually be counterproductive as its destructive capacity becomes unleashed without warrant..

Oxidative stress

Exercise also directly produces ROS. That is, independently of neutrophils and macrophages. Normally, most of the oxygen consumed during cell metabolism is converted into water. A small amount of the consumed oxygen (2-4%), however, is converted into superoxide. Given the fact that exercise can increase muscle oxygen consumption by as much as 200-fold, superoxide levels also increase tremendously with intense exercise, easily surpassing the body’s capacity to neutralize it. This gives rise to a dangerous scenario known as oxidative stress, which slows muscle recovery and increases the chances of injury. In fact, some experts believe that the overproduction of ROS may also accelerate the normal aging process as well as eventually lead to states of disease.

Antioxidants

Our bodies possess a natural line of defense against oxidative stress; special molecules known as antioxidants that neutralize ROS. Vitamins A, C and E are examples of vitamins that can act as antioxidants. Vitamin E is a particularly potent antioxidant, since it is able to act in both aqueous (within the cell) and lipid (within membranes) environments, and is hence very effective at protecting our cellular membranes from degradation following oxidative stress. Our bodies also come equipped with their own antioxidant molecular complexes. Some of the most important enzymatic antioxidants are Superoxide Dismutase, Glutathione Peroxidase, and Catalase. Glutathione is one of our principle non-enzymatic antioxidants.

Athletes are now paying closer attention to their antioxidant status in an attempt to better assist muscle recovery. Proactive measures one can take to enhance the body’s capacity to cope with oxidative stress include eating foods rich in antioxidants, supplementing with antioxidant vitamins, limiting alcohol intake, especially following exercise and getting plenty of rest. It now turn’s out that some athletes were improving their antioxidant defenses in a way they hadn’t previously imagined…

Is creatine an antioxidant?

A study was recently released suggesting that creatine might act as a superoxide scavenger in its own right. This would be an additional benefit of creatine, independent of its better-understood capacity to increase ATP availability during exercise. It is thus possible that part of the benefit we obtain from creatine derives from its capacity to act as an antioxidant.

The salient points of the study were as follows:

  1. The creatine levels used in this study were within physiological limits. In other words, the concentrations of creatine found by this study to be effective at scavenging free radicals were comparable to those found within muscle (20-60 mM, for those interested). This gave relevancy to the study.
  2. Creatine, although not as effective as glutathione at neutralizing superoxide, was an effective antioxidant, nonetheless.
  3. Creatine’s ability to neutralize superoxide was measured in a test tube, not in an exercising person. And, although it’s reasonable to assume that creatine should behave similarly within athletes, subtle differences may exist. For all we know, creatine may be an even more efficacious antioxidant inside the body! Only further experimentation will tell.

Take Home

This report indicates that creatine possess’ antioxidant properties and is able to effectively neutralize Superoxide, one of the more insidious free radicals produced by exercise. Since these findings where obtained in a test tube, however, it remains to be shown if creatine has the same antioxidant properties within an exercising person. Although preliminary, this result is surely worth pursuing and has important practical implications for muscle recovery following strenuous exercise.

Scientific References

1. Lawler, J. M., Barnes, W. S., Wu G., Song, W., and Demaree, S. (January 2002) Direct antioxidant properties of creatine. Biochemical and Biophysical Research Communications Volume 290 (1): pages 47-52.

 

This article was written by Dr. Alfredo Franco-Obregón, research scientist, author, and owner of the Creatine Information Center and NSN Publishing.

Dr. Alfredo Franco-Obregón has had over 20 years of in depth research experience in major laboratories world-wide. His principal scientific interest is the understanding of the cellular mechanisms leading to muscle cell death.

Dr. Franco-Obregón is also the author of Creatine: A practical guide. Creatine: A practical guide clearly teaches you how to best combine exercise, nutrition, and intelligent creatine use for optimal muscle growth, improved athletic performance, and overall good health. Find out more about this must-read book.

A little bit of Exercise Motivation

Many people know how important exercise is as an integral part of their weight loss and health plan but still have a difficult time fitting it into their busy lives.  

One possible reason could be that, yes, exercise can be challenging when you first begin your program or you just give yourself the excuse “I just don’t have the time.”

What I have figured out for myself and for hundreds of my clients that no matter which exercise program they choose, it must be something they enjoy.  Especially when it comes to the setting and location.

For me, I have converted the 2nd bedroom of my house into my “home gym”.

NO, home gym does not mean I have the most expensive, high tech equipment. To be honest, the only items that make up my home gym are: an exercise ball, 2 adjustable weights, an exercise mat, and an old Spinning bike that I bought used from a local YMCA. That’s it! Nothing expensive or high tech about it.

Many times in the past I have joined gyms and told myself I was going to go.  But like many other gym members, I never go!  Now, I do really enjoy exercising so why wouldn’t I actually use my gym membership?

I figured out that I really love my exercise room. It’s my private time to myself and I don’t have to worry about who else needs the equipment or who’s lurking around the gym. I get an hour to myself and it’s a great way to start my day.

I asked myself if this could possibly be what’s stopping many people from exercising. “Is this most people’s problem? Do they not like where they work out so they just don’t want to go?” So it’s really not the actual workout but the environment that they’re in.

Now maybe for you the situation is just the opposite. You don’t like working out in your home and you would much rather get out and be motivated by other healthy people. Whatever the case may be, choose something you enjoy! You will never make a lifestyle change to include exercise on a consistent basis if you don’t enjoy it. Who wants to do something that feels like torture? Not me. I love my morning exercise time and if it felt like torture, I just wouldn’t do it.

My question to you is: What do you have to do to make your workout time enjoyable? Or (heaven forbid) something you actually look forward to? Join an adult sports league?  Start your own exercise group?  Join a new gym? Set up a home gym? Find a workout partner?  The choices are endless.

Try many different options and figure out which activity you would enjoy best and I assure you, exercise never has to be a drag.

Get started on a new healthy nutrition and exercise plan right now with the meal plans and exercise programs in The Diet Solution Program.

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Skinny Guy’s Guide To Creatine

What is creatine? How do I take creatine? What are the side effects of creatine? What is the best creatine? Unless you just arrived from another planet, you should know that when it comes to muscle building supplements, creatine is the king!

To date, creatine has proven to be the most research-proven sport supplement on the market to day. Creatine has collected hundreds of clinical studies that show increased lean muscle mass, improved energy levels, increased muscle strength and size and improved exercise performance. There is even a new batch of research showing creatine supplementation having a significant effect on memory and intelligence, as well as immune function. Bigger, smarter and healthier, not that’s a solid combo!
What is creatine?

Creatine acts by supporting the reproduction of ATP (fancy term for energy) in muscle tissue resulting in cell volumization which can create a more optimistic cellular environment for muscle growth. By having more energy reserves in the muscle tissue, you now have the ability to train harder at higher intensities. This means more reps, more sets, heavier loads, more explosive power and quicker recovery. Each of these stimulus are key requirements for continual muscle growth. Creatine is simply a mechanism that allows you to work harder and out do your previous workouts.

How do I take creatine?

To load or not to load, that is the question! You have three research-proven options to choose from. Each method will appeal depending on a variety of reasons:

· Method 1: Six day load at 20 grams a day plus a maintenance of 2-3 grams a day afterward.

· Method 2: 3-5 grams a day for the long term.

It was once thought, that a loading phase was required to maximize the effects of creatine but there is countless research that shows you don’t have to go through all the hassle of loading. This will appeal to the individual who experiences gastrointestinal upset, diarrhea and other problems with higher dosages.

Personally, I have found the best time to take creatine is 15 minutes BEFORE a workout and AFTER a workout with a liquid protein and carbohydrate drink. As well as first thing in the morning on non-training days.

What kind of creatine should I buy?

With all the fancy bell and whistle creatine supplements out there, a lot of people of forgotten about simple, powdered creatine. All you need to know that the best creatine manufactured is sold to companies in the form of Creapure. So as long as you see the that the creatine bottle you have bought, as Creapure as their source of creatine, that’s the good stuff.

There has much debate about creatine purity and it is not accepted that not all creatine is created equal.

Creatine ethyl ester is a new form of creatine. It is made up of a creatine, alcohol and acid meaning the absorption rate into the tissue is better. Manufacturers claim it does not cause bloating, cramping or stomach discomfort and gets into the muscle faster resulting in better results. Due to it’s chemical structure, it might result in greater stress on the liver. Although it does seem to have potential, wait for more research and rely on the time-tested powdered creatine.

Should I take creatine with sugar?

Stimulating insulin release by consuming high amounts of sugar has been shown to enhance the transport and uptake of of creatine into the muscle tissue. However, insulin is also responsible for fat storage. Therefore my recommendation would be to only consume your creatine with simple carbohydrates if it is before or after your workout. On non-training days, creatine would be be better shuttled using insulin mimicking compounds like alpha lipoic acid and D-pintol which can help improve creatine transport and retention without the excess sugars.

Conclusion

Creatine, is by far the king of the jungle when it comes to muscle building supplements. I have only included the information I believe to be the most critical and useful. Your take home message is to use powdered creatine, year round before and after your training workout and in the morning on your non-training days. Make sure your creatine says Creapure and don’t get caught up wasting any more time or sleep on the academic debate associated with creatine use. Just do it!

Everything you need to know about muscle building