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Written by Dr. Welsh, Article reviewed and edited by Dr. Fine M.D..
Published on 12 September 2012

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There is now a way to extend the lifespan of organisms so that humans could conceivably live to be 800 years old. In an amazing development, scientists at the University of Southern California have announced that they've extended the lifespan of yeast bacteria tenfold -- and the recipe they used to do it might easily translate into humans. It involves tinkering with two genes, and cutting down your calorie intake. Tests have already started on people in Ecuador. Source: io9.com


Written by Dr. Welsh, Article reviewed and edited by Dr. Fine M.D..
Published on 18 January 2013

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What is Human Growth Hormone?

By the Conscious Evolution Institute

HGH is one of the many vital hormones produced by the endocrine system to keep our minds and bodies running at full capacity. Like many other vital hormones, such as testosterone, progesterone, estrogen, and DHEA, endogenous Human Growth Hormone production begins to decline as we get older. HGH deficiency is one of the primary culprits which speed up the aging process, and for this reason, Human Growth Hormone shots are one of the most effective means by which to slow, and in many cases even reverse, the slow degradation associated with the aging process.

Clinical Anti-Aging physicians and scientists have provided evidence that HGH Hormone Therapy has the ability to reverse the physiological symptoms of aging to such an extent to where in the best cases, Human Growth Hormone is capable of reducing the body's physical age by as many as twenty years just with a single year of injection.

How is Human Growth Hormone produced by the body?

HGH is produced by our pituitary gland by means of physiological structures known as somatotrophs. The hormone is then released into the body in short, quick bursts which are then distributed throughout the body via the blood stream. The hypothalamus is the control-center which tells the pituitary when to release these bursts of HGH.

One of the primary ways that Human Growth Hormone functions in the body is that it is converted into a hormone known as Insulin-like Growth Factor 1 in the liver. IGF-1 is also referred to by its alternate name Somatomedin-C in many cases. IGF-1 is a close relative to insulin, and its primary purpose is to break down fatty tissue and convert it into energy which is then used by the muscles and various organs around the body to speed up metabolic and rejuvenative processes.

IGF-1 is also the primary means by which HGH Deficiency is diagnosed. Human Growth Hormone is released in short bursts which are difficult to monitor effectively. After Human Growth Hormone is quickly converted into IGF-1, the levels of this hormone remain relatively constant in the blood stream and are directly correlated with Human Growth Hormone production.

HGH Peak Production

Human Growth Hormone is secreted at its highest rate while we are in our adolescence during the growth spurt of puberty. During the teen and preteen years, this is the primary function of Human Growth Hormone. It increases cell reproduction and heavily targets bone tissue, causing the bones to grow and the body to therefore reach its final adult height. HGH levels drop from these peak levels after the epiphyseal plates of the long bones harden, preventing further growth.

Although it is unhealthy to restore this peak level of Human Growth Hormone, it is important for physical and mental health to maintain the HGH levels present in the body during our late teens and twenties, because these levels are the most effective for preserving the body and preventing premature aging.

Growth Hormone in Other Animals

In all species of animal, Growth Hormone levels have been shown to decline with age. This is an undeniable evolutionary fact that, at least to this point, has never been confronted with any source of contention in the scientific community. Although this seems like an unfortunate, yet unavoidable constant, it is possible to subvert this process of HGH decline through the use of Human Growth Hormone therapy in order to preserve healthy HGH levels associated with youth and vitality.

The rate at which GH production declines in different animals varies, but in human beings, Human Growth Hormone levels drop by about 1 to 2 percent each year after the age of thirty. The average rate of decline per decade is around 14 percent. Although the year to year change in HGH production might not seem like much, over time, it begins to accumulate and the body begins its precipitous decline into old age.

HGH Decline

To put the rate of hormone decline in a different context, at our adult peak around the age of twenty, the human body produces around five hundred micrograms of HGH per day. By the time we reach age forty, this level drops down to around two hundred. When we get to the ripe age of eighty, it declines to just a miniscule twenty-five micrograms! From twenty to forty this represents a sixty percent decline. From twenty to eighty, the effect is breath-takingwe produce just over six percent of the HGH we circulated in our prime. No wonder we look and feel so old! As Human Growth Hormone declines, so does its derivative IGF-1. With lower levels of IGF-1 in the blood stream, rates of metabolism drop, and one of our body's primary means of renewal is disrupted.

Cause of HGH Deficiency

At this point, scientists have not pinpointed exactly why this process of HGH Deficiency develops over time, although they understand the basic effects of that decline. By the time men reach their late thirties and early forties, the decline in Human Growth Hormone becomes symptomatic, and the effects of deficiency become more and more apparent. The skin droops, and muscle tone starts to decline.

It becomes harder to maintain a healthy weight, and fatigue makes the days become more of a struggle. Medical studies have shown that even as the somatotroph cells which produce Human Growth Hormone age, they still have the capability to produce adequate levels of HGH if properly stimulated. In a landmark study, scientists manually administered GH-RH (Growth Hormone-Releasing Hormone) to the pituitary glands of aging laboratory rats. The somatotrophs responded by pumping out youthful levels of Human Growth Hormone.

This research, and other studies which have corroborated the findings, have led scientists and physicians to theorize that the mechanism for HGH deficiency is tied to the factors which lead to the release of the hormone, and not the health and age of the pituitary gland, itself.

Theories about HGH Deficiency

There are three competing theories today about what factors may cause this genetic decline in Human Growth Hormone levels. It is likely that all three theories play some role in HGH Deficiency, but it is unclear which theory is more dominant than its peers.

Theory One: HGH and Somatostatin Production

The first theory is that one of the issues which hinder Human Growth Hormone production is an inhibitory hormone known as somatostatin. This hormone functions as a negative feedback mechanism which blocks GH-RH Receptors on the pituitary gland and slows the production of Human Growth Hormone. As we age, it is believed that these HGH-Blockers eventually begin to prevent humans from producing adequate levels of Growth Hormone. In animal research studies, scientists blocked the production of somatostatins in the brains of aging rats and found that their Human Growth Hormone production returned to youthful levels.

Theory Two: HGH and the Hypothalamus

The second theory revolves around the hypothalamus, which signals the pituitary to release Human Growth Hormone. Research has shown that as we age, the hypothalamus becomes less sensitive to triggers which would normally cause it lead to the secretion of GH-RH. This decline in GH-RH production then creates a cascade of deficiency, leading to depressed levels of HGH production as well as IGF-1 conversion in the liver.

Theory Three: IGF-1 and Insulin

Another final theory quickly gaining support blames HGH and IGF-1 receptors throughout the body. There is evidence that leads researchers to believe that as we age, various receptors for these two important hormones become desensitized to the stimulation of Human Growth Hormone and its derivatives. This theory equates HGH Deficiency with insulin resistance. The body slowly loses its ability to respond to hormonal triggers and the body ages drastically as a result. If this is true, then this form of Human Growth Hormone Deficiency is very similar to diabetes.

When is HGH Produced?

Human Growth Hormone is produced mainly during two different periods. HGH is released in its highest amounts during the hours of deep sleep. This is why proper sleeping habits are vital to the efficient release of Human Growth Hormone, and why many HGH shots are delivered at night before bed, in order to simulate the natural release by the body. HGH is also produced during periods of intense physical activity such as cardiovascular exercise and weightlifting. Human Growth Hormone release during exercise helps the body perform better and helps the body recover more effectively after exercise is complete.

Symptoms of Human Growth Hormone Deficiency

Various clinical and scientific studies have linked HGH Deficiency to a number of different symptoms of aging. Most of these symptoms have been revealed in younger patients who suffer from HGH Deficiency at an early age as well. These symptoms include:

  • Cardiovascular disease Lowered metabolism leads to higher levels of fat and unhealthy triglycerides and LDL cholesterol in the blood stream, leading to issues such as blot clots, heart blockages, and hypertension. Human Growth Hormone breaks down unhealthy fatty tissue and restores a healthy balance of HDL and LDL cholesterol in addition to reducing Triglyceride levels.

  • Fatigue HGH Deficiency reduces the body's ability to respond to vigorous exercise effectively. Without the energy provided by IGF-1, the body doesnt have the energy it needs to maximize the benefits of exercise. In addition to this, low levels of Human Growth Hormone can make it hard to get out of bed in the morning or even make it through a work day without succumbing to various symptoms of generalized exhaustion. HGH shots help patients maintain high levels of energy during exercise which helps maximize the benefits of both aerobic and anaerobic exercise.

  • Trouble sleeping The release of Human Growth Hormone at night plays a major role in maintaining a healthy circadian rhythm If you are deficient in HGH, there is an increased chance that you will have issues sleeping, or be able to sleep for a full eight hours. This issue causes a vicious feedback loop because poor sleeping habits further exacerbate HGH Deficiency. Hormone Replacement Therapy helps restore healthy rhythms and patterns of sleep, helping you wake up more well-rested and refreshed.

  • Changes in hair color and hair thickness Human Growth Hormone Deficiency produces generalized effects of reduced rejuvenation throughout the body. Without proper levels of HGH, the hair begins to degrade. Color slowly begins to fade until the hair turns grey or white. Once lush and healthy hair has a tendency to become thin and wispy and prone to falling out. Human Growth Hormone Replacement Therapy has the ability to restore healthy hair to a significant percentage of patients.

  • The development of fine lines, wrinkles, and sagging skin Human Growth Hormone Deficiency is most noticeable in its early stages in the effect that it has on the structure and health of the skin. Human Growth Hormone Deficiency leads to weakened muscles under the skin which contribute to sagging skin on the face and neck. It also reduces fluid retention in the skin cells which leads to the formation of deep lines and wrinkles, because the individual skin cells are no longer as robust and healthy as they once were.

This combines with weakened muscle structure underneath the skin and makes wrinkles more noticeable and distracting. Human Growth Hormone shots restore the intracellular fluid which makes the skin look flush and healthy. It also tightens the skin, reducing that unwanted sagging which droops the face and makes a person look far older than he or she should.

  • Decreased muscle mass and strength As was mentioned earlier, Human Growth Hormone Deficiency reduces the ability of the body to withstand rigorous exercise. In addition to this, deficiency also diminishes the gains made when exercising as well. In addition to providing the energy and fuel needed to perform strenuous exercise, HGH also provides the muscles with the tools they need to repair themselves and become stronger as a result of exercise.

This is one of the primary reasons why bodybuilders and athletes utilize Human Growth Hormonebecause it vastly increases the gains made in terms of both strength and physical aesthetic as a result of exercise. Although Human Growth Hormone is illegal in the United States for performance enhancement, it is perfectly legal to experience these physical gains as a benefit of treating legitimate Human Growth Hormone Deficiency.

  • Increased adipose fat deposits and obesity Human Growth Hormone deficiency plays a major role in the development of weight gain and obesity in patients over the age of thirty. HGH is a central player in basic human metabolism, and as HGH levels start to decline, this is directly correlated with a decrease in metabolism. Are you eating the same food you did in your twenties and still intake the same number of calories, but you find that you are putting on the pounds all of a sudden? This is likely the result of Human Growth Hormone Deficiency, and initiating HGH Hormone Replacement Therapy can help you reverse this trend and lose the weight.

HGH shots naturally reduce body fat percentage by increasing metabolism and breaking down adipose tissue which is predominantly located around the hips, stomach, waist, and thighs. This fat is then converted into energy that the body needs to perform day-to-day activity. The benefits of this increased metabolism create a positive feedback loop in which enhanced energy allows one to work out harder and longer and burn more fat.

  • Bone health Human Growth Hormone plays a major role in the maintenance of bone health and, although natural, the decline in Human Growth Hormone production weakens the bones and greatly increases the risk of bone fractures and breaks as well as osteoporosis. Similar in some ways to how IGF-1 effects muscle tissue, this hormone provides the bones with the necessary tools and nutrients needed to maintain a healthy skeletal system. In addition to this, IGF-1 increases the metabolism of cells within the bones, causing repair and maintenance to occur more quickly and efficiently, preventing dangerous bone disorders such as osteoporosis when used appropriately.

  • Decreased Libido and Sexual Ability Much like Testosterone and Estrogen deficiency, HGH Deficiency in some cases weakens the sex drive. This is due to a number of factors. Low energy and fatigue make one less interested in sex for example. Poor body image as a result of weight gain and muscle loss can also make it difficult to get in the mood. In addition to this, Human Growth Hormone plays a key role in a man or womans functional ability to perform as well.

In men, HGH deficiency can lead to erectile dysfunction or premature ejaculation. In women, HGH Deficiency can lead to vaginal dryness or other symptoms of female sexual dysfunction. HGH Hormone Replacement Therapy has been shown to be quite effective at restoring sexual function even without the use of sexual aids such as Cialis or Viagra.

  • Depression and mood swings HGH Deficiency has been linked to a number of mood disorders which are associated with aging. As with decreased libido, some of the reasons why these mental disruptions occur are because of the influence of the other symptoms of Human Growth Hormone deficiency on the human psyche. As the aging process begins to create a physical and mental decline, it is only natural to have feelings of anxiety and depression. Fatigue and low energy create a perpetual system where nothing ever seems to get done correctly and you have no motivation. Weight gain and muscle atrophy cause you to have poor physical perception which makes you just not feel attractive anymore.

In addition to this, depression and mood disorders are exacerbated by Human Growth Hormone decline itself. The mental and physiological roots of HGH induced depression and anxiety magnify one another and can put a person in a rut that can be incredibly difficult to escape without the help of medication or therapy. If you feel that your depression may be the result of HGH Deficiency, it may be better for your mental health to try HGH Hormone Replacement Therapy before turning to Anti-Depressants and Anti-Anxiety medications, because these medications can sometimes have side-effects which adversely impact your mental health in other ways.

  • Memory and cognitive issues HGH Deficiency has been linked to a number of different cognitive issues that occur as the result of the aging process. When using HGH for general Anti-Aging purposes, a significant percentage of individuals who used the therapy were able to perform more effectively at memory-oriented tasks and were confident that their memory had improved as a result of therapy. In addition to this, focus and mental sharpness were found to increase as well, allowing many patients to perform better on the job, as well as help them think critically in other aspects of their daily life.

So what can HGH Hormone Replacement Therapy do for me?

There is a bounty of evidence, both in theory and in clinical practice, that Human Growth Hormone injections have the ability to alleviate or even reverse the symptoms listed in the previous section. By utilizing HGH Hormone Replacement Therapy it is possible to improve ones overall mental and physical condition in order to live life fully and with vitality.

There is simply no other Hormone or medication which can produce the full plethora of benefits and positive results that are provided by this natural product of the human body. HGH Hormone Replacement Therapy is delivered via Bio-Identical Human Growth Hormone Shots. Although prepared in a laboratory, this BioIdentical HGH is the functional and biological equivalent of internally produced natural Human Growth Hormone and provides identical results.

The Conscious Evolution Institute Your best option for quality Hormone Replacement Products

Human Growth Hormone Replacement is one of the core therapies used by the Conscious Evolution Institute. Our physicians and associates have seen with their own eyes the amazing benefits provided by this fantastic and natural treatment option.

If you feel that premature aging or the natural aging process is inhibiting your ability to live your life the way you have always intended to live it, we firmly believe we can set you back on your feet and set you back on the path to golden years full of energy, happiness, and adventure.

Although it may seem like Human Growth Hormones benefits are too good to be true, mounting scientific and clinical evidence suggests the opposite.

If you are interested in HGH Hormone Replacement Therapy, or any of the other therapy options we provide, such as Testosterone and Sermorelin Acetate Therapy, contact us today to learn more about the medical procedures and treatments that we provide with confidence to men and women all across the United States who are just like you.


Written by Dr. Welsh, Article reviewed and edited by Dr. Fine M.D..
Published on 15 March 2014

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Theories on Aging

Aging is a complex process which has a variety of working parts. Medical scientists and biological researchers continue to study aging in order to give humanity a more complete understanding of the mechanisms by which it occurs, and they also try to learn ways to slow down or even reverse some aspects of the aging process.

There are three primary mechanisms that control how we age: Genetic Aging, Biochemical Aging, and Physiological Aging.

Genetic Aging

One of the three mechanisms by which human beings age is genetic. There are many forms of genetic aging, but all revolve around the idea that genetic breakdown causes the body to age over time. As we grow older, the genes become more prone to mutate. These mutations can cause a variety of issues to occur, one of which is cancer.

If a gene alters in a way that encourages endless replication, this significantly increases mortality risk, for example. Genetic mutations can also lead to other, less severe, genetic issues which simply impede the body's ability to perform the functions necessary to maintain a healthy and optimally functional body.

Small formations on the ends of our genes known as Telomeres also have an impact on aging. Telomeres are sections of junk genes at the end of our chromosomes which keep the active genetic code intact. As we age, these Telomeres become shorter and shorter, increasing the risk of genetic malfunction and mutation.

Finally, there are certain genes that only seem to express themselves later in life or when certain negative pressures are applied. And these negative pressures cause the aging process to occur more quickly.

Biochemical Aging

Biochemical Aging is a precursor of many forms of Physiological Aging. Biochemical Aging refers to intracellular and extracellular processes which contribute to aging in some way. In some cases, this is the result of natural chemical processes which cause our body to slowly break down over time, such as the inevitable oxidization which occurs as a natural side-effect of the chemical processes which keep us alive.

Other symptoms of biological aging are the result of changes in the way that our body functions, often for reasons that we are just beginning to understand. The way that our bodies produce Human Growth Hormone and Testosterone are good examples of this form of Biochemical Aging.

When we are young, our bodies produce ample levels of these hormones, and it encourages growth during adolescence and supports good health during early adulthood. Around the age of thirty, however, these hormones start to decline because the brain sends fewer and fewer signals for them. Also, hormones which control stress are produced in lower concentrations with age, which can increase the influence of psychological and physiological stress, which can cause other issues related to aging to become much more dangerous and severe.

Physiological Aging

Physiological aging refers to the physical changes that take place as a result of aging. Our teeth represent one of the most noticeable markers of physiological aging. Our teeth grow into place after our baby teeth fall out when we are young. After your teeth fully develop, your body has no mechanism to rebuild them and they slowly degrade over time, at a rate dependent upon how well you take care of them.

Graying hair is another type of physiological aging. Hair color is actually produced by tiny cellular organs known as Melanocytes. The color of your hair is dependent upon the type of pigment that these cells create, as well as the quantity and concentration at which they are produced. The more melanin that the Melanocytes produce, the darker your hair will be.

People get gray hair because the older that they get, the less pigment that Melanocytes secrete over time. There are actually scientific studies being performed regarding how to influence these cells to continue producing pigment later in life, potentially allowing aging men and women to naturally maintain their natural hair color.

Other Physiological aging changes are more than cosmetic, however. There are certain processes that occur regardless of how you take care of yourself as you grow older. Your baseline blood pressure will slowly go up over time, and your heart muscles will slowly harden, a condition known as atherosclerosis. Many physiological signs of aging can be alleviated with medication or a healthy lifestyle, but the general trends will continue over time without particular forms of treatment (many of which don't exist today).

How We Age Does Not Explain Why We Age

These three concepts, Physiological Aging, Biochemical Aging, and Genetic Aging, only serve to explain the processes by which we age. These processes do not answer the ultimate question of Why We Age, however. There are a number of theories associated with answering the question of why we age, but all of these theories belong to two distinct classes: Program Theory and Error Theory.

Program Theory assumes that aging occurs for evolutionary reasons, as a means to improve the effective viability of the species. There are a number of means by which this can be true, and it assumes that from the day that we are born, we are designed to progress down a set path from birth to death which maximizes the long term survival of the species. These programmed theories can be considered like a series of stages of life that eventually leads to death.

Error Theory, on the other hand, assumes that we are not genetically designed to self-destruct, but it is the result of a potential multitude of malfunctions which slowly reduce the viability of an organism until it eventually dies. There are a wide variety of forces that pressure an organism to break down and reach the end of its lifespan. It is incredibly important to note that the reality is likely much messier than a single theory, and there are inevitably a multitude of pressures which lead to aging, which are likely related to hypotheses of both Program Theory and Error Theory.

Below is a collection of some of the theories associated with Why We Age:

Program Theories of Aging

Programmed Senescence

This theory behind aging centers around the idea that we are programmed to age from a genetic level. It assumes that there are certain genes that turn on at a certain stage of the lifespan which change the way that our body works at a cellular level. This creates a cascade of change which causes our bodies to slowly deteriorate over time.

There are a number of cellular processes in the human body that involve programmed cell death, which is also known as apoptosis. Advanced theories regarding Programmed Senescence hypothesize that the genetic code of all animal species induces aging as a form of organism-wide apoptosis which makes way for the newer, younger generations.

Endocrine Theory

This Programmed Aging Theory hypothesizes that the endocrine system has the ability to control the rate at which an organism ages based off of both a natural biological clock as well as outside influences which may induce or postpone aging. This theory is also known as the Hormone Theory of Aging.

There are many insects, for example, that have the ability to live much longer lives if the conditions are not ideal for reproduction and procreation. If it is excessively cold, there is not enough food, or there are not enough partners, many insect species will release hormones which halt or slow down aging until conditions are more ripe to create offspring.

In human beings and other mammals, Growth Hormone and Sex Hormone production declines around midlife until the end of the lifespan. There is powerful evidence that these hormones have a positive impact on health and longevity, and there are those that argue that the body reduces production of these Anti-Aging Hormones over time so that the older generation can make way for the new generation.

Immunological Theory

This aging theory makes the hypothesis that immune systems weaken over time as a result of evolutionary pressures to encourage the organism to eventually become ill and die. This theory is also known as Immunosenescence. When we are young we are incredibly resilient to disease, but the older that we get, the less able our bodies are to fend off illness.

There is some evidence that an organism's ability to fight disease drops over time without regard to external factors, which leads some to suggest that this is an evolutionary strategy to encourage the young and healthy to acquire dominance over time. This change isn't exclusively the result of exterior factors, but as a result of changes which are deeply embedded in our genetic code.

Error Theories of Aging

Wear and Tear

This theory is quite straight forward. Our bodies grow and develop through childhood and adolescence, but after our bodies reach a point of peak performance, certain parts of our body start to age and decline in function because they do not have the capacity to heal themselves or have a limited ability to heal themselves.

One example of wear and tear is the scarring deterioration of the skin. When you receive a cut, your body has the ability to seal itself up and maintain a closed system, but if scars don't heal properly they will remain on the skin the rest of your life, because the body does not have a means to make the marks associated with these old wounds disappear once they are fully healed.

Another example of wear and tear involves the liver. The liver is an organ that has a limited ability to heal itself. Liver damage can result from a number of different lifestyle choices, including alcoholism, obesity, and drug abuse. The liver expends a lot of energy filtering impurities out of the body, and if too much is consumed for too long, the liver starts to become overwhelmed by fat tissue and cirrhosis.

Rate of Living

This form of aging is based on the hypothesis that, regardless of any evolutionary benefit, animal organisms have a lifespan which is highly correlated with their metabolism throughout their lives.

For example, rabbits and other small animals with very fast heartbeats tend to have very short lifespans. Animals like turtles, whales, and elephants have slow metabolisms which are associated with very slow heart beats, and they tend to have very long lifespans.

Although metabolism does seem to play a certain correlative factor with regard to the average lifespan of various species, it is not a hard rule, and evidence suggests that it does not apply effectively to humans. Low Metabolism in humans is associated with a shorter lifespan, and is correlated with health issues such as obesity and cardiovascular disease.


Crosslinking is a theory of aging that assumes that the older that we get, the more links that the proteins in our body make, causing them to no longer function as effectively. One example of crosslinking which leads to physical aging is skin elasticity.

When we are born, our skin is soft and returns to position quickly if pulled or compressed. This is because the collagen in our skin is optimally linked. The older that we get, the more crosslinkages that are made among the collagen of our skin, which causes the skin to tighten and become less optimized. These links eventually start to cause skin cells to function ineffectively or even die off because the protein links are so tight that nutrients are not delivered efficiently.

Crosslinking is also one reason why the immune system loses its function over time. The body loses its ability to successfully process glucose from the blood. This causes blood sugar to increase which has a toxic effect on the cardiovascular system. Sugars in the blood react with protein, increasing the prevalence of free radicals which can do major damage to the body over time.

Free Radicals

Free Radicals are the result of the very chemical processes of the human body which sustain us. As our bodies react with oxygen to create energy, they release spare atoms which travel haphazardly through the body causing chemical reactions and reaction cascades that can do harm to the body.

One of the body's primary lines of defense against Free Radicals are nutrients known as Antioxidants. The human body has the ability to produce some forms of antioxidant naturally, but others must be consumed in the diet. Omega-Three Fatty Acids, L-Carnitine, and Vitamin-C are some examples of antioxidants.

Free Radicals cause aging because the incremental damage caused by these chemical reactions slowly degrades the body, causing organs and cells to lose their ability to properly function and this slowly leads to declining health and vastly increased mortality risk.

Error Catastrophe

This form of Error Theory is associated with the way that our bodies utilize proteins. As a result of various other interferences, the cellular organs which generate necessary proteins in our body can malfunction, causing them to produce damaged proteins which can negatively impact health and normal function.

One of the most well-known forms of Error Catastrophe is actually Alzheimer's Disease. Alzheimer's Disease is caused when our brains become overloaded with prions, which are proteins which the body has folded improperly. These prions have the ability to convert other healthy proteins into the same form, spreading damage throughout the brain, deteriorating normal function over time until eventually inevitably leading to death.

Error Catastrophe also refers to the point at which mutations in proteins or genes reach a point at which the cell can no longer survive and propagate under normal circumstances. Eventually, the organism dies because cellular function breaks down at organ level and finally at a universal level.

Somatic Mutation

This form of Error Theory is related to Error Catastrophe, but is explicitly related to genetic function. A number of different factors can eventually cause genetic function to alter, which causes aging and eventually can lead to death.

Cancer is often the result of Somatic Mutation. A gene can mutate, causing it to reproduce indefinitely. This genetic mutation alters the healthy function of the body, and over time, the cancer can spread to other areas of the body and flood the entire organism with replicating cancer cells, which will inevitably lead to death. Cancers can usually be treated effectively if caught early, but if allowed to spread, they often become almost universally lethal.

Somatic Mutations can occur at any time from conception to the end of the lifespan. Sometimes, these mutations lie dormant for many years, perhaps even through the entire lifespan, but other times, they eventually lead to cancer or other physiological malfunctions.

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The solution is to add a drug called Arimidex. It's called an aromatase inhibitor, which essentially blocks the conversion of testosterone to estrogen. It has the effect of increasing testosterone levels, while keeping your estrogen low.

Once you have your testosterone and estrogen solved, it's time to stop the next inevitable decline? Shrinking testicles.

This is where HCG (human chorionic gonadotropin) comes in. It prevents both infertility and testicle shrinkage. Your testicles shrink because your body thinks it doesn't need to make testosterone anymore.

For some, small testicles may seem like just a cosmetic problem. But HGC does more than increase testicle size, it also increases adrenal function, which can have positive effects on well-being, libido, and energy.

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