Dangers of Dehydration – And The Importance of Kidney Cleansing
The human body is composed of 75 percent water and 25 percent solid matter. To provide nourishment, eliminate waste and regulate all the functions in the body, we need water. Most modern societies, however, no longer stress the importance of drinking water as the most important “nutrient” among all nutrients. Entire population groups are substituting water with tea, coffee, alcohol and other manufactured beverages. Many people don’t realize that the natural thirst signal of the body is a sign that it requires pure, plain drinking water. Instead, they opt for other beverages in the belief that this would satisfy the body’s water requirements. This is a false belief.
It is true that beverages such as tea, coffee, wine, beer, soft drinks and juices contain water but they also contain caffeine, alcohol, sugar, artificial sweeteners or other chemicals that act as strong dehydrators. The more you drink these beverages, the more dehydrated you become because the effects they create in the body are exactly opposite to the ones that are produced by water. Caffeine containing beverages, for example, trigger stress responses that have strong diuretic effects (causing increased urination, at first). Beverages with added sugar drastically raise blood sugar levels, which uses up large quantities of cellular water, too. Regular consumption of such beverages results in chronic dehydration, which is a common factor in every toxicity crisis.
There is no practical or rational reason to treat an illness (toxicity crisis) with synthetic drugs or even with natural medications and methods unless the body’s need for hydration has been met first. Drugs and other forms of medical intervention can be dangerous for the human physiology largely because of their dehydrating effects. Most patients today are suffering from “thirst disease,” a progressive state of dehydration in certain areas of the body. Unable to remove toxins from these parts due to insufficient water supply, the body is faced with the consequences of their destructive effects. The lack of recognition of the most basic aspects of water metabolism in our body can be held responsible for seeing a disease when it really is the body’s urgent cry for water.
Recognizing Dehydration
Those who have lived for many years without proper water intake are the most likely to succumb to the build-up of toxins in the body. Chronic disease is always accompanied by dehydration and, in many cases, caused by dehydration. The longer a person lives on a low water ration and/or on a high ration of stimulating beverages or foods, the more severe and long lasting is the toxicity crisis. Heart disease, obesity, diabetes, rheumatoid arthritis, stomach ulcers, hypertension, cancer, MS, Alzheimer’s, and many other chronic forms of disease are precipitated by years of “body drought.” Infectious agents such as bacteria and viruses cannot thrive in a well-hydrated body. Drinking enough water is therefore one of the most important preventives for any disease.
People who do not drink enough water or unduly deplete their body’s water reserves through overstimulation for a period of time gradually lower the ratio of the volume of water that exists inside the cells to the ratio of volume of water that is found outside the cells. Under dehydrated conditions, the cells may lose up to 28% or more of their water volume. This certainly undermines all cellular activities, whether they occur in skin cells, stomach cells, liver cells, kidney cells or heart cells. Whenever there is cellular dehydration, metabolic waste products are retained, causing symptoms that resemble disease but in truth are nothing but signs of disturbed water metabolism. Since more and more water begins to accumulate outside the cells, the dehydration may not be apparent to the afflicted person; he may in fact notice that he retains water, leading to swelling of his legs, feet, arms and face. Also his kidneys may begin to hold on to water, markedly reducing urinary secretion and causing retention of harmful waste material. Even the enzymes and proteins living in the dehydrated cells become so inefficient that they are no longer able to recognize the dehydrated state of the body; they fail to set off the “thirst alarm.”
Demetria, a 53-year-old Greek woman consulted me to find relief for a painful condition of gallbladder disease. Her skin was dark gray, indicating a high concentration of toxins in her liver and throughout her body. Seeing how dehydrated (and swollen) her body was, I offered her a glass of water. She said: “I never drink water, it makes me sick!” I told her that her natural thirst signals no longer worked because of cellular dehydration and that without drinking water her body could not return to balance. Any water she would drink would instantly be used to remove some of the toxins lurking in her stomach, giving rise to nausea. In her case, any other therapy than drinking water would have been a waste of time and money.
A dehydrated person may also suffer from lack of energy. Due to the shortage of water inside the cell the normal osmotic flow of water through the cell membrane becomes disrupted or severely disturbed. Like in a stream, the movement of water into the cells generates “hydroelectric” energy, which is subsequently stored in form of ATP molecules (the main source of cellular energy). Normally, the water we drink keeps the cell volume balanced and the salt we eat maintains the balanced volume of water that is held outside the cells and in circulation; this generates the right osmotic pressure necessary for cellular nourishment and energy production. During dehydration, this basic process is undermined.
The Pain Connection
Another major indicator of dehydration in the body is pain. In response to increasing water shortage, the brain activates and stores the important neurotransmitter histamine, which directs certain subordinate water regulators to redistribute the amount of water that is in circulation. This system helps move water to areas where it is needed for basic metabolic activity and survival (from drought). When histamine and its subordinate regulators for water intake and distribution come across pain-sensing nerves in the body, they cause strong and continual pain. These pain signals, as they manifest, for example, in rheumatoid arthritis, angina, dyspepsia, low back problems, neuralgia, migraine, and hangover headaches, etc., are necessary to alert the person to attend to the problem of general or local dehydration.
Taking analgesics or other pain relieving medications such as antihistamines or antacids can cause irreversible damage in the body. They not only fail to address the real problem (which may be dehydration) but they also cut the connection between the neurotransmitter histamine and its subordinate regulators such as vasopressin, Renin-Angiotensin (RA), prostaglandin (PG), and kinins. Although
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