Traditional Culture Encyclopedia - Photography major - The medical discovery of hexagonal water
The medical discovery of hexagonal water
In 1991, Dr. Erwineher, a German scientist who won the Nobel Prize in Medicine, discovered that there are channels with a diameter of 2 nanometers in the human cell membrane, which allow water and ionized nutrients to enter the cells together, called water channels. . Small water molecule clusters can easily pass through the cell membrane, but water molecule clusters of more than 8 have difficulty entering the cell interior. People who are thirsty need to drink water. After drinking water into the body, whether it is large molecular cluster water or small molecular cluster water, it still exists in the form of molecular clusters.
In 2000, American scientist Peter Agre used special microphotography to successfully take the world's first high-definition three-dimensional photo of cell membrane aquaporin and released it to the world. He won the 2003 Nobel Prize in Chemistry. This great discovery revealed that there are water channels in the cell membrane, which only allow small molecules of water to pass through. The cell water channel is 2 nanometers, and a single water molecule is 0.2 nanometers, which can accommodate up to 10 water molecules. If there are more than 10 water molecule groups, it will require the body's own energy to be absorbed and metabolized.
This photo reveals why human cells age prematurely due to blocked water exchange. This great discovery revealed that the cell wall is not a closed shell but is penetrated by many water channels. Life absorbs water through cell membrane water channels—these gap junction channels are hexagonal channels surrounded by six protein subunits. They are trumpet-shaped and very narrow. Under the action of the electrostatic force of the protein, water molecules move one by one. Pass through the channels and enter the cells for hydration, absorption and excretion of nutrients and metabolites. It confirms that only small molecular cluster water is needed for absorption and physiological activities of human cells. Only small molecular cluster water can be absorbed by cells and function as a carrier for material metabolism, energy metabolism, and information metabolism.
The size of water molecule clusters is generally based on the size of water molecule clusters in human cells. Scientists have discovered that human cell water is "hexagonal water", which is a molecular cluster composed of six molecules. Usually, the water we refer to as small molecular clusters is water with a molecular cluster size close to that of cell water. It is considered that a molecular cluster composed of 5-8 water molecules is small molecular cluster water. Ordinary water is composed of 15-17 water molecules, which is called macromolecular water (also known as polymerized water).
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