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Vitamin B5 For Acne - Scientifically Proven
By Nick Bell
Below is a scientific research study that was conducted on the effects of Vitamin B5 for acne. The results were quite amazing! Of the 100 patients in the study, all of them experienced a near 100% remission of their acne! The relationship between Vitamin B5 and is unquestionable.

Pantothenic Acid in the Treatment of Vulgaris

"A Medical Hypothesis"

by Lit-Hung Leung, M.D.

This article originally appeared in the scientifically prestigious Journal of Orthromolecular Medicine Vol. 12 Number 2, 1997. The version below is from a reprint of the original article and revisions were made in December 1998.

The Pathogenesis of Vulgaris: A Medical Hypothesis

Over the years the pathogenesis of vulgaris has been extensively studied including, the structure and function of the pilosebaceous follicle, the physiology of sebum, microflora in vulgaris, and abnormal follicular keratinization, considered to be one of the earliest events in formation. Despite the concerted effort of many scientists, internists, pathologists and dermatologists, the pathogenesis of vulgaris remains largely elusive.

In this paper, I would like to approach this problem from a different perspective. My clinical observations suggest that vulgaris may be closely related to the consumption of diets, which are rich in fat content. This impression is by no means novel. Textbooks do briefly mention this correlation though, more often than not, it is dismissed as irrelevant. However, my observations have led to quite the contrary conclusions. Not only is the fat content of food closely related to vulgaris but it forms some sort of linear relationship with the disease process. The more fat the patient consumes, the more severe will be the process. This observation is in line with the opinion of many dermatologists that chocolate, which is composed mainly of the creamy part of milk, and has a high degree of fat content, is bad for acne. Significantly, in this group of patients, any deliberate attempt in trying to avoid a fatty diet over a period of weeks, if not days, will often result in important compound, cholesterol, which in turn is basically synthesized from units of acetyl-CoA. In the synthetic process, the body naturally is always trying not only to reach for a normal level of androgens, but an optimal level, so as to allow the body to function at its best. However, this is not always possible, and the normal level reached may not represent the optimal level. This is natures flexible way of dealing with shortage of essential dietary elements in any form to achieve a level that is just enough to manage the present situation, leaving a variable degree of shortage from the optimal level. In the present instance, in the two groups of boys, one group may have a normal level of androgens that is falling short of the optimum. One possible explanation for this is that there is a lack of basic building blocks, the acetyl-CoAs, which deter the body from operating at peak efficiency. If this is a viable possibility, it suggests that a plentiful supply or a deficiency of acetyl-CoA in the body may play a role in the process. this is certainly possible. Aside from its role in the synthesis of the sex hormones, acetyl-CoA, of which Coenzyme-A is the important component, it is also important in fatty acid metabolism as an acyl carrier in the lengthening and degradation of long chain fatty acids by adding or removing acyl groups in the metabolic process.

The Importance of Coenzyme-A

In trying to link vulgaris to Coenzyme-A, it is important to have a hypothesis supporting some basic facts. A closer look at Coenzyme-A may provide the evidence.

A Sharing scenario; As a coenzyme active in both fatty acid metabolism and sex hormone synthesis, Coenzyme-A is shared between two different metabolic processes. This is not uncommon in biochemical reactions in metabolism, where a coenzyme is often shared among a number of reactions. Coenzyme-A is arguably the most important coenzyme in the body, and when a coenzyme is involved in the metabolic process to such an extent as this, it becomes legitimate to ask if a shortage and deficiency is possible. To answer this, a brief look at the structure of Coenzyme-A is warranted.

Coenzyme-A is formed from adenosine triphosphate, cysteine, and pantothenic acid. Of these pantothenic acid is the only component that is a vitamin, and must be provided from our dietary intake. Could there be an insufficient intake of pantothenic acid resulting in a deficiency in Coenzyme-A, which would leave the body unable to cope with all the reactions, that it has to perform with that all-important coenzyme? Conventional wisdom does not think so. It is suggested that pantothenic acid, being ubiquitous, can be had from whatever kind of food that is taken in, and that there is no question as to its deficiency in our body. However, a deficiency is still possible. After all, when so many reactions are dependent on the same agent, its demand must be tremendous. Shortage under such circumstances is not entirely impossible.

The Mystery Revealed

The mechanism proposed above may be the reason why two groups of adolescent boys both with a normal blood level of androgen may exhibit differences in the incidence of acne. The group with is the one that has not enough pantothenic acid in the body, whereas in the other group, pantothenic acid levels are not deficient.

This new theory seems to work well here, and can be tested in other metabolic situations. In the case in which endogenous androgen stimulates acne, whereas exogenous does not, the reasoning for the observation is the same. Any endogenous androgen synthesis will require the participation of extra amount of pantothenic acid. This will channel off some of those that are doing the work of fatty acid metabolism. Consequently, fatty acid metabolism becomes less efficient and the individual is more prone to have acne.

Today, the percentage of adult women that have is increasing. Some of these women may not have had as teenagers, and are surprised to find



that they have to deal with this unpleasant problem during their adult years. can have profound psychological and social effects on adults, just as it does in teenagers.

Many women in their 30s and 40s experience high levels of life stress because they shoulder the multiple burdens of career, child rearing, and housework, and often the responsibility of caring for their own aging parents. Perhaps this increasing level of stress has contributed to the rising incidence of in adult women.

Stress Related Acne

It is perhaps relevant here to consider stress as another common factor that is known to affect adversely. Stress in many forms poses as an aggravating factor in lesions. Lack of sleep at night, pre-examination tension, any psychological problem that may worry the patient will bring on new lesions. To understand this, one should recall that in combating stress, the body will secrete glucocorticoids from the adrenal glands as a means to adapt to stress, what is commonly known as the fight-or-flight reaction. The glucocorticoids, like the sex hormones, are derivatives of cholesterol, and increased demand for this hormone will draw on the pantothenic acid pool. Lipid metabolism may therefore be compromised, rendering the body more prone to acne.

If pantothenic acid deficiency is indeed the main causative agent in the pathogenesis of vulgaris, it is logical to ask how much pantothecic acid patients are lacking in absolute amounts.

How Much Pantothenic Acid?

In trying to determine the amount of pantothinic acid necessary to relieve patients of their symptoms, Pauling's experience with vitamin C provides a good guideline. Pauling had for a long time recommended vitamin C in high dosages to achieve optimal health. Radically different from what is recommended by the Food and Nutrition Board of the National Research Council (who recommended 60 mg daily). Pauling's recommended daily intake of vitamin C amounts to several grams a day. The recommendation was stepped up to 15-20 grams a day in his later years. Using these recommendations as a background, it becomes somewhat easier to arrive at a proper dosage for pantothentic acid in the treatment of vulgaris.

Pantothenic acid, which acquires its name from the Greek word meaning ubiquitous, is present in all tissues. Its universal presence is an indication of its importance. This is further reflected by the many reactions that it catalyzes. It should not come as a surprise then, that the amount of pantothenic acid required for optimal health, is of the same order of that of vitamin C. Based on this argument, the dose of pantothenic acid administered to the patients was up to 10 grams a day, and the result of these studies were first reported in Medical Hypotheses.

The Effect of Pantothenic Acid on Vulgaris

One hundred patients of Chinese descent were included in the study, 45 males and 55 females. The age ranged from 10 to 30, and with about 80% between 13 and 23. The severity of the disease process varied. They were given 10 grams of pantothenic acid a day in four divided doses. To enhance the effect, the patients were also asked to apply a cream consisting of 20% by weight of pantothenic acid to the affected area, four to six tines a day. With this treatment regimen, the response is as prompt as it is impressive. There is a noticeable decrease in sebum secretion on the face usually 2-3 days after initiation of therapy. The face becomes less oily. After two weeks, existing lesions start to regress while the rate of eruption of new lesions begins to slow down. In cases with moderate severity, the condition is normally in complete control in about eight weeks, with most of the lesions gone and new lesions only to erupt occasionally. In those patients with severe lesions, complete control may take months, sometimes up to six months or longer. In some of these cases, in order to get a more immediate response, it may even be necessary to step up the dose to 15-20 grams a day. In any event, the improvement is normally a gradual and steady process, with perhaps minor interruptions by premenstrual flare or excessive intakes of oily food. With this form of treatment, another striking feature is the size of the facial skin pore.

The pore size becomes noticeably smaller within one to two weeks, very often much sooner. Like sebum excretion, the pores will continue to shrink until the skin becomes much finer, giving the patient a much more beautiful skin.

This decrease in skin pore size is presumably related to sebum excretion. When an lesion is formed, there is in the epithelial cell of the hair follicle an accumulation of lipids, leaving the epithelial cells bulky and the lumen of the gland narrowed. When there is a concomitant increase in sebum flow, the follicle has no choice but to hypertrophy to accommodate the changes, resulting in an enlarged skin pore and coarse skin. With the administration of pantothenic acid, the whole process is reversed. Lipid metabolism becomes normal and efficient. The epithelium is no longer laden with fat droplets, there is a decrease in sebum excretion, the hypertrophy process is not required. The skin pores revert to a much smaller size and the skin becomes smooth and fine.

As lesions tend to subside spontaneously after puberty, some patients do not need a maintenance dose. But, if a patient is in his mid-teens, when the sexual characteristics have yet to fully develop, it may be necessary for replacement therapy to be implemented. This maintenance dose, can be lowered, or increased with the clinical symptoms. A maintenance dose will not only act as a preventive measure against sporadic eruption, but the extra pantothenic acid will help to ease the relative deficiency state, and likely improve the general health of the patient.

Article Source: http://articlecrazy.com

Nick Bell- former suffererwww.skinb5.com




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